Crystallography Open Database

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1574330 CIFC12 H10 N2P 1 21/c 112.064; 5.5054; 10.545
90; 115.46; 90
632.4Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574331 CIFC12 H10 N2P 1 21/c 112.013; 5.5124; 10.539
90; 115.68; 90
629Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574332 CIFC12 H10 N2P 1 21/c 112.24; 5.4747; 10.639
90; 114.84; 90
647Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574333 CIFC12 H10 N2P 1 21/c 113.162; 5.1734; 10.885
90; 113.15; 90
681.5Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574334 CIFC12 H10 N2P 1 21/c 114.71; 5.5772; 11.759
90; 112.39; 90
892Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574335 CIFC12 H10 N2P 1 21/c 112.162; 5.4949; 10.602
90; 115.15; 90
641.4Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574336 CIFC12 H10 N2P 1 21/c 115.088; 5.7289; 12.059
90; 112.42; 90
963.6Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574337 CIFC12 H10 N2P 1 21/c 113.22; 5.175; 10.904
90; 113.08; 90
686.3Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574338 CIFC12 H10 N2P 1 21/c 113.261; 5.1782; 10.915
90; 113.01; 90
689.9Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574339 CIFC12 H10 N2P 1 21/c 113.08; 5.1368; 10.777
90; 112.98; 90
666.6Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574340 CIFC12 H10 N2P 1 21/c 114.998; 5.694; 11.992
90; 112.43; 90
946.6Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574341 CIFC12 H10 N2P 1 21/c 113.111; 5.1676; 10.86
90; 113.15; 90
676.5Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574342 CIFC12 H10 N2P 1 21/c 114.455; 5.4916; 11.591
90; 112.41; 90
850.6Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574343 CIFC12 H10 N2P 1 21/c 113.319; 5.18; 10.928
90; 112.91; 90
694.5Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574344 CIFC12 H10 N2P 1 21/c 112.32; 5.4498; 10.697
90; 114.6; 90
653Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574345 CIFC12 H10 N2P 1 21/c 112.23; 5.4789; 10.62
90; 114.88; 90
645.6Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574346 CIFC12 H10 N2P 1 21/c 111.918; 5.5121; 10.502
90; 115.9; 90
620.6Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574347 CIFC12 H10 N2P 1 21/c 111.882; 5.5101; 10.49
90; 116.01; 90
617.2Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574348 CIFC12 H10 N2P 1 21/c 111.945; 5.518; 10.526
90; 115.9; 90
624.1Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574349 CIFC12 H10 N2P 1 21/c 111.814; 5.5065; 10.466
90; 116.17; 90
611.1Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574350 CIFC12 H10 N2P 1 21/c 111.979; 5.5148; 10.53
90; 115.74; 90
626.6Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574351 CIFC12 H10 N2P 1 21/c 114.547; 5.5258; 11.659
90; 112.4; 90
866.5Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574352 CIFC12 H10 N2P 1 21/c 111.834; 5.51; 10.478
90; 116.14; 90
613.3Agati, Milo; Romi, Sebastiano; Fanetti, Samuele; Radacki, Krzysztof; Hanfland, Michael; Braunschweig, Holger; Marder, Todd B.; Clark, Stewart J.; Friedrich, Alexandra; Bini, Roberto
Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
Chemical Science, 2025, 16, 9240-9254
1574353 CIFC27 H25 Er2 N3 O20C 1 c 124.29; 19.873; 7.4327
90; 104.998; 90
3465.7Maciel, Jhonny W.; Kalinke, Lucas H. G.; Rabelo, Renato; Alvarenga, Meiry E.; Martins, Felipe Terra; Moliner, Nicolás; Cangussu, Danielle
Slow Relaxation of Magnetization and Magnetocaloric Effects in One-Dimensional Oxamato-Based Lanthanide(III) Coordination Polymers
Magnetochemistry, 2025, 11, 23
1574354 CIFC29 H28 Fe O4P -19.5599; 11.2459; 13.3652
67.299; 87.272; 70.734
1246.08Forté, Jérémy; Pigeon, Pascal
Ethyl 4-Ene-4-ferrocenyl-5,5-bis-(4-hydroxyphenyl)-pentanoate
Molbank, 2025, 2025, M1980
1574355 CIFC56 H49 Cl N6 P2 RuP 1 21/c 112.8637; 24.5322; 18.1868
90; 109.991; 90
5393.5Nath, Shambhu; Singh, Amrendra K.
Substrate-assisted product release in hydrogenation of LOHCs facilitated by hemilabile pyridine in Ru(ii)–NNC pincer complexes and enhanced activity of proton-responsive protic-NHC ligands
Catalysis Science & Technology, 2025, 15, 2999-3008
1574356 CIFC56 H50 N6 O P2 RuP -113.4509; 14.0264; 14.305
102.178; 107.581; 95.342
2479.06Nath, Shambhu; Singh, Amrendra K.
Substrate-assisted product release in hydrogenation of LOHCs facilitated by hemilabile pyridine in Ru(ii)–NNC pincer complexes and enhanced activity of proton-responsive protic-NHC ligands
Catalysis Science & Technology, 2025, 15, 2999-3008
1574357 CIFC3 H I O S2P 14.09358; 5.63601; 6.64675
103.946; 91.017; 91.983
148.687Shukla, Rahul; Aubert, Emmanuel; Brezgunova, Mariya; Lebègue, Sébastien; Fourmigué, Marc; Espinosa, Enrique
The origin of synthons and supramolecular motifs: beyond atoms and functional groups.
IUCrJ, 2025, 12
1574358 CIFC56 H102 As8 K N2 O9 Ta2P -115.0711; 15.7076; 17.5064
109.325; 108.365; 101.944
3480.31Riesinger, Christoph; Scheer, Manfred
Redox mediated dimerisation of a cyclo-As8 complex
Chemical Science, 2025, 16, 8807-8811
1574359 CIFC88.5 H90 Al As12.5 F49.5 O3 Sb0.5 Ta3C 1 2/c 124.4761; 36.8173; 28.1239
90; 100.641; 90
24907.9Riesinger, Christoph; Scheer, Manfred
Redox mediated dimerisation of a cyclo-As8 complex
Chemical Science, 2025, 16, 8807-8811
1574360 CIFC50.5 H52 Al As7.09 F38 O4 Ta2P -111.4386; 18.7072; 19.1356
63.108; 88.564; 76.688
3539.01Riesinger, Christoph; Scheer, Manfred
Redox mediated dimerisation of a cyclo-As8 complex
Chemical Science, 2025, 16, 8807-8811
1574361 CIFC118 H104 N6 O14P -114.7673; 16.6167; 20.5716
71.702; 89.043; 88.782
4791.3D'Addio, Adriano; Kroonen, Camiel C. E.; Fuhr, Olaf; Fenske, Dieter; Häussinger, Daniel; Mayor, Marcel
Series of Geländer oligomers with orthogonal rungs
Chemical Science, 2025, 16, 8092-8098
1574362 CIFC22 H24 O2P 21 21 217.7868; 10.9259; 21.3967
90; 90; 90
1820.38Ke, Miaolin; Zheng, Jinying; Zong, Jiayi; Tang, Keshuang; Wang, Jiahao; Zheng, Guohui; Zhang, Boxuan; Cheng, Dang; Ju, Zhiran; Chen, Fener
Enantioselective [5 + 1] cycloaddition of sulfur ylides and vinylethylene carbonates via synergistic palladium/chiral phosphonic acid catalysis
Chemical Science, 2025, 16, 8108-8113
1574363 CIFC21 H24 O6P 1 21/n 18.7571; 19.7605; 11.2657
90; 105.491; 90
1878.65Ding, Yiming; Long, Xianwen; Zhang, Jingwei; Qu, Chunlei; Wang, Peng; Yang, Xiaodong; Puno, Pema-Tenzin; Deng, Jun
Asymmetric total synthesis of penicilfuranone A through an NHC-catalyzed umpolung strategy
Chemical Science, 2025, 16, 8302-8308
1574364 CIFC21 H24 O6P 1 21/n 18.707; 19.1093; 11.7941
90; 92.103; 90
1961.04Ding, Yiming; Long, Xianwen; Zhang, Jingwei; Qu, Chunlei; Wang, Peng; Yang, Xiaodong; Puno, Pema-Tenzin; Deng, Jun
Asymmetric total synthesis of penicilfuranone A through an NHC-catalyzed umpolung strategy
Chemical Science, 2025, 16, 8302-8308
1574365 CIFC21 H24 O6P 1 21/n 18.9343; 19.9249; 11.1682
90; 106.262; 90
1908.57Ding, Yiming; Long, Xianwen; Zhang, Jingwei; Qu, Chunlei; Wang, Peng; Yang, Xiaodong; Puno, Pema-Tenzin; Deng, Jun
Asymmetric total synthesis of penicilfuranone A through an NHC-catalyzed umpolung strategy
Chemical Science, 2025, 16, 8302-8308
1574366 CIFC17 H17 Au2 Fe N7 OI b c a12.6866; 15.4013; 22.1817
90; 90; 90
4334.1Wu, Si-Guo; Cui, Wen; Ruan, Ze-Yu; Ni, Zhao-Ping; Tong, Ming-Liang
Switchable colossal anisotropic thermal expansion in a spin crossover framework
Chemical Science, 2025, 16, 8845-8852
1574367 CIFC18 H19 Au2 Fe N7 OI b c a12.1277; 16.8526; 22.9813
90; 90; 90
4696.99Wu, Si-Guo; Cui, Wen; Ruan, Ze-Yu; Ni, Zhao-Ping; Tong, Ming-Liang
Switchable colossal anisotropic thermal expansion in a spin crossover framework
Chemical Science, 2025, 16, 8845-8852
1574368 CIFC17 H17 Au2 Fe N7 OI b c a12.7477; 15.3811; 22.2404
90; 90; 90
4360.8Wu, Si-Guo; Cui, Wen; Ruan, Ze-Yu; Ni, Zhao-Ping; Tong, Ming-Liang
Switchable colossal anisotropic thermal expansion in a spin crossover framework
Chemical Science, 2025, 16, 8845-8852
1574369 CIFC17 H17 Au2 Fe N7 OI b c a11.5562; 17.2475; 22.9494
90; 90; 90
4574.2Wu, Si-Guo; Cui, Wen; Ruan, Ze-Yu; Ni, Zhao-Ping; Tong, Ming-Liang
Switchable colossal anisotropic thermal expansion in a spin crossover framework
Chemical Science, 2025, 16, 8845-8852
1574370 CIFC17 H17 Au2 N7 O ZnI b c a11.96862; 16.947; 22.7781
90; 90; 90
4620.13Wu, Si-Guo; Cui, Wen; Ruan, Ze-Yu; Ni, Zhao-Ping; Tong, Ming-Liang
Switchable colossal anisotropic thermal expansion in a spin crossover framework
Chemical Science, 2025, 16, 8845-8852
1574371 CIFC17 H17 Au2 Fe N7 OI b c a11.8527; 17.0385; 22.9573
90; 90; 90
4636.3Wu, Si-Guo; Cui, Wen; Ruan, Ze-Yu; Ni, Zhao-Ping; Tong, Ming-Liang
Switchable colossal anisotropic thermal expansion in a spin crossover framework
Chemical Science, 2025, 16, 8845-8852
1574372 CIFC18 H19 Au2 Fe N7 OI b c a12.465; 15.754; 22.263
90; 90; 90
4372Wu, Si-Guo; Cui, Wen; Ruan, Ze-Yu; Ni, Zhao-Ping; Tong, Ming-Liang
Switchable colossal anisotropic thermal expansion in a spin crossover framework
Chemical Science, 2025, 16, 8845-8852
1574373 CIFC17 H17 Au2 N7 O ZnI b c a11.2926; 17.4255; 22.7813
90; 90; 90
4482.9Wu, Si-Guo; Cui, Wen; Ruan, Ze-Yu; Ni, Zhao-Ping; Tong, Ming-Liang
Switchable colossal anisotropic thermal expansion in a spin crossover framework
Chemical Science, 2025, 16, 8845-8852
1574374 CIFC17 H20 N2 O4 SP 1 21 14.9904; 10.6896; 16.6446
90; 94.504; 90
885.17Guo, Cui-Mei; Zhang, Fang-Yuan; Tian, Yin; Xie, Ming-Sheng; Guo, Hai-Ming
Pyridine-N-oxide catalyzed asymmetric N-acylative desymmetrization of sulfonimidamides
Chemical Science, 2025, 16, 8812-8819
1574375 CIF
Paper
C36 H24 Ag F6 N O2 P2P 1 21/n 114.3478; 13.5179; 17.9803
90; 111.215; 90
3250.98Malan, Frederick P.; Potgieter, Kariska; Meijboom, Reinout
(Nitrito-κ2 O:O′)bis[tris(4-fluorophenyl)phosphine-κP]silver(I)
IUCrData, 2025, 10, x250296
1574376 CIFC17 H14 F N3P 1 21/c 113.1473; 6.2052; 18.1878
90; 106.936; 90
1419.4Gao, Chi; Liu, Yang; Li, Cheng-Sheng; Guo, He; Wang, Sheng-Han; Xu, Cong; Wang, Mang
O-Trifluoromethylation of ketones: an alternative straightforward route to alkenyl trifluoromethyl ethers
Chemical Science, 2025, 16, 8561-8568
1574377 CIFC28 H21 F3 OP 1 21/n 111.7028; 5.5202; 33.5271
90; 94.414; 90
2159.49Gao, Chi; Liu, Yang; Li, Cheng-Sheng; Guo, He; Wang, Sheng-Han; Xu, Cong; Wang, Mang
O-Trifluoromethylation of ketones: an alternative straightforward route to alkenyl trifluoromethyl ethers
Chemical Science, 2025, 16, 8561-8568
1574378 CIFC12 H17 Cl3 N4 ZnP 1 21/n 17.4537; 14.2418; 15.4069
90; 91.025; 90
1635.24Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574379 CIFC6 H9.01 Cl3 N2 Zn1.01C 1 c 19.909; 63.672; 6.3765
90; 127.717; 90
3182.4Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574380 CIFC7 H11 Br3 N2 ZnP 1 21/n 17.7054; 12.3265; 12.5814
90; 92.11; 90
1194.18Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574381 CIFC7 H12 Br4 N2 ZnP 1 21/n 19.5132; 14.134; 10.4282
90; 104.052; 90
1360.21Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574382 CIFC12 H18 Br4 N4 ZnC 1 2/c 114.4961; 7.8886; 16.379
90; 93.194; 90
1870.09Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574383 CIFC8 H13 Cl3 N2 ZnP 1 21/n 18.0104; 11.5319; 13.8196
90; 105.667; 90
1229.16Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574384 CIFC7 H12 Cl4 N2 ZnP 1 21/n 19.3199; 13.5559; 10.0752
90; 105.093; 90
1228.99Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574385 CIFC7 H11 Cl3 N2 ZnP 1 21/n 17.4173; 12.0708; 12.3184
90; 92.933; 90
1101.46Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574386 CIFC8 H14 Cl4 N2 ZnP 1 21/c 111.5216; 9.1377; 13.3073
90; 101.747; 90
1371.66Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574387 CIFC8 H14 Br4 N2 ZnC 1 2/c 125.8746; 7.9515; 13.9583
90; 93.801; 90
2865.49Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574388 CIFC8 H13 Br3 N2 ZnP 1 21/n 18.2015; 11.6705; 13.9617
90; 104.989; 90
1290.88Cui, Yibo; Lin, Jiawei; Liu, Kunjie; Shao, Yuhe; Zhao, Dong; Guo, Zhongnan; Zhao, Jing; Xia, Zhiguo; Liu, Quanlin
Tuning covalent bonding in zinc-based hybrid halides towards tunable room-temperature phosphorescence
Chemical Science, 2025, 16, 8291-8301
1574389 CIFC24 H22 Cl2 Fe N10 O8P 1 21 19.057; 9.1234; 18.0236
90; 97.553; 90
1476.38Sephton, Holly E.; Watson, Rhiannon L.; Shahid, Namrah; Vasili, Hari Babu; Baker, Daniel L.; Saha, Dipankar; Capel Berdiell, Izar; Pask, Christopher M.; Cespedes, Oscar; Halcrow, Malcolm A.
The impact of whole-molecule disorder on spin-crossover in a family of isomorphous molecular crystals
Chemical Science, 2025, 16, 9203-9212
1574390 CIFC22 H16 B2 Br2 F8 Fe N10P 1 21 19.5177; 9.3657; 16.524
90; 93.848; 90
1469.6Sephton, Holly E.; Watson, Rhiannon L.; Shahid, Namrah; Vasili, Hari Babu; Baker, Daniel L.; Saha, Dipankar; Capel Berdiell, Izar; Pask, Christopher M.; Cespedes, Oscar; Halcrow, Malcolm A.
The impact of whole-molecule disorder on spin-crossover in a family of isomorphous molecular crystals
Chemical Science, 2025, 16, 9203-9212
1574391 CIFC24 H22 Cl2 Fe N10 O8P 1 21 19.1111; 9.1607; 18.1574
90; 97.194; 90
1503.56Sephton, Holly E.; Watson, Rhiannon L.; Shahid, Namrah; Vasili, Hari Babu; Baker, Daniel L.; Saha, Dipankar; Capel Berdiell, Izar; Pask, Christopher M.; Cespedes, Oscar; Halcrow, Malcolm A.
The impact of whole-molecule disorder on spin-crossover in a family of isomorphous molecular crystals
Chemical Science, 2025, 16, 9203-9212
1574392 CIFC24 H22 Cl2 Fe N10 O8P 1 21 19.0949; 9.0814; 18.745
90; 93.755; 90
1544.9Sephton, Holly E.; Watson, Rhiannon L.; Shahid, Namrah; Vasili, Hari Babu; Baker, Daniel L.; Saha, Dipankar; Capel Berdiell, Izar; Pask, Christopher M.; Cespedes, Oscar; Halcrow, Malcolm A.
The impact of whole-molecule disorder on spin-crossover in a family of isomorphous molecular crystals
Chemical Science, 2025, 16, 9203-9212
1574393 CIFC24 H22 Cl2 Fe N10 O8P 1 21 19.0959; 9.1543; 18.09
90; 97.453; 90
1493.57Sephton, Holly E.; Watson, Rhiannon L.; Shahid, Namrah; Vasili, Hari Babu; Baker, Daniel L.; Saha, Dipankar; Capel Berdiell, Izar; Pask, Christopher M.; Cespedes, Oscar; Halcrow, Malcolm A.
The impact of whole-molecule disorder on spin-crossover in a family of isomorphous molecular crystals
Chemical Science, 2025, 16, 9203-9212
1574394 CIFC14 H13 N O2P 1 21/c 16.6579; 22.13; 7.8468
90; 101.462; 90
1133.08Paramanik, Krishnendu; Bandopadhyay, Nilaj; Agrawalla, Suraj Kumar; Purohit, Chandra Shekhar; Biswas, Bhaskar; Das, Hari Sankar
Highly efficient phenalenyl–copper bifunctional photoredox catalyst for direct C–H bond arylation of arenes and heteroarenes
Catalysis Science & Technology, 2025, 15, 3325-3331
1574395 CIFC16 H22 N2 OP -16.6423; 13.8452; 16.6714
79.252; 85.493; 83.62
1494.31Paramanik, Krishnendu; Bandopadhyay, Nilaj; Agrawalla, Suraj Kumar; Purohit, Chandra Shekhar; Biswas, Bhaskar; Das, Hari Sankar
Highly efficient phenalenyl–copper bifunctional photoredox catalyst for direct C–H bond arylation of arenes and heteroarenes
Catalysis Science & Technology, 2025, 15, 3325-3331
1574396 CIFC29 H22.33333 Cl Cu N2 O3.66667P -111.9198; 13.4831; 22.5889
84.99; 84.584; 82.389
3572.03Paramanik, Krishnendu; Bandopadhyay, Nilaj; Agrawalla, Suraj Kumar; Purohit, Chandra Shekhar; Biswas, Bhaskar; Das, Hari Sankar
Highly efficient phenalenyl–copper bifunctional photoredox catalyst for direct C–H bond arylation of arenes and heteroarenes
Catalysis Science & Technology, 2025, 15, 3325-3331
1574397 CIFC58 H54 Cl6P 1 21/c 120.8136; 6.0124; 21.4653
90; 116.226; 90
2409.6Erchinger, Johannes E.; Okumura, Tsubasa; Nakata, Kanami; Shimizu, Daisuke; Daniliuc, Constanstin G.; Amaike, Kazuma; Glorius, Frank; Itami, Kenichiro; Ito, Hideto
Functionalization and solubilization of polycyclic aromatic compounds by sulfoniumization
Chemical Science, 2025, 16, 8262-8267
1574398 CIFC23 H17 B Cl2 F4 S2P -110.3623; 10.749; 11.4494
65.158; 86.14; 73.882
1110.01Erchinger, Johannes E.; Okumura, Tsubasa; Nakata, Kanami; Shimizu, Daisuke; Daniliuc, Constanstin G.; Amaike, Kazuma; Glorius, Frank; Itami, Kenichiro; Ito, Hideto
Functionalization and solubilization of polycyclic aromatic compounds by sulfoniumization
Chemical Science, 2025, 16, 8262-8267
1574399 CIFC28 H19 B F4 S2C 1 2/c 115.1406; 10.3948; 32.4934
90; 100.849; 90
5022.5Erchinger, Johannes E.; Okumura, Tsubasa; Nakata, Kanami; Shimizu, Daisuke; Daniliuc, Constanstin G.; Amaike, Kazuma; Glorius, Frank; Itami, Kenichiro; Ito, Hideto
Functionalization and solubilization of polycyclic aromatic compounds by sulfoniumization
Chemical Science, 2025, 16, 8262-8267
1574400 CIFC22 H15 B F4 S2P 1 21/n 110.6757; 15.4534; 11.9779
90; 109.437; 90
1863.44Erchinger, Johannes E.; Okumura, Tsubasa; Nakata, Kanami; Shimizu, Daisuke; Daniliuc, Constanstin G.; Amaike, Kazuma; Glorius, Frank; Itami, Kenichiro; Ito, Hideto
Functionalization and solubilization of polycyclic aromatic compounds by sulfoniumization
Chemical Science, 2025, 16, 8262-8267
1574401 CIFC17 H20 N2 O4 SP 21 21 218.083; 11.2048; 18.8269
90; 90; 90
1705.12Jung, Eunsong; Rizzo, Antonio; Ryu, Hanseul; Cho, Minyoung; Choi, Tae-Lim
Controlled polymerization of levoglucosenone-derived enynes to give bio-based polymers with tunable degradation rates and high glass transition temperatures
Chemical Science, 2025, 16, 8435-8442
1574402 CIFC23 H24 N2 O5 S2P 21 21 218.4134; 14.6866; 18.7432
90; 90; 90
2316Jung, Eunsong; Rizzo, Antonio; Ryu, Hanseul; Cho, Minyoung; Choi, Tae-Lim
Controlled polymerization of levoglucosenone-derived enynes to give bio-based polymers with tunable degradation rates and high glass transition temperatures
Chemical Science, 2025, 16, 8435-8442
1574403 CIFC17 H15 N OP 21 21 216.1916; 7.5616; 27.676
90; 90; 90
1295.7Tan, Hao-Chong; Shing, Ka-Pan; Wang, Hua-Hua; Liu, Yungen; Che, Chi-Ming
Chiral iron porphyrin (+)-D4-(por)FeCl catalyzes highly enantioselective cyclopropanation of alkenes using in situ generated diazoacetonitrile with up to 35 000 product turnover
Chemical Science, 2025, 16, 7191-7202
1574404 CIFC10 H8 N2 O2P 1 21 19.2102; 6.6977; 14.702
90; 98.797; 90
896.3Tan, Hao-Chong; Shing, Ka-Pan; Wang, Hua-Hua; Liu, Yungen; Che, Chi-Ming
Chiral iron porphyrin (+)-D4-(por)FeCl catalyzes highly enantioselective cyclopropanation of alkenes using in situ generated diazoacetonitrile with up to 35 000 product turnover
Chemical Science, 2025, 16, 7191-7202
1574405 CIFC11 H8 F3 NP 21 21 217.186; 10.3981; 12.9161
90; 90; 90
965.1Tan, Hao-Chong; Shing, Ka-Pan; Wang, Hua-Hua; Liu, Yungen; Che, Chi-Ming
Chiral iron porphyrin (+)-D4-(por)FeCl catalyzes highly enantioselective cyclopropanation of alkenes using in situ generated diazoacetonitrile with up to 35 000 product turnover
Chemical Science, 2025, 16, 7191-7202
1574406 CIFC14 H13 Fe NP 1 21 110.4077; 7.4147; 14.8363
90; 92.504; 90
1143.8Tan, Hao-Chong; Shing, Ka-Pan; Wang, Hua-Hua; Liu, Yungen; Che, Chi-Ming
Chiral iron porphyrin (+)-D4-(por)FeCl catalyzes highly enantioselective cyclopropanation of alkenes using in situ generated diazoacetonitrile with up to 35 000 product turnover
Chemical Science, 2025, 16, 7191-7202
1574407 CIFC10 H8 Br NP 21 21 217.0173; 9.839; 12.9563
90; 90; 90
894.54Tan, Hao-Chong; Shing, Ka-Pan; Wang, Hua-Hua; Liu, Yungen; Che, Chi-Ming
Chiral iron porphyrin (+)-D4-(por)FeCl catalyzes highly enantioselective cyclopropanation of alkenes using in situ generated diazoacetonitrile with up to 35 000 product turnover
Chemical Science, 2025, 16, 7191-7202
1574408 CIFC25.5 H32 As B N2 OP 1 21/n 17.5069; 18.7077; 17.6728
90; 90.683; 90
2481.7Jürgensen, Malte; Kunz, Tanja; Arrowsmith, Merle; Dietz, Maximilian; Hagspiel, Stephan; Braunschweig, Holger
Synthesis and reactivity of a parent phosphathioethynolato-borane and a boraarsaketene
Chemical Science, 2025, 16, 8870-8877
1574409 CIFC31 H37 B F3 N2 O3 SC 1 2 116.551; 8.9942; 20.2775
90; 93.55; 90
3012.78Jürgensen, Malte; Kunz, Tanja; Arrowsmith, Merle; Dietz, Maximilian; Hagspiel, Stephan; Braunschweig, Holger
Synthesis and reactivity of a parent phosphathioethynolato-borane and a boraarsaketene
Chemical Science, 2025, 16, 8870-8877
1574410 CIFC25 H31 B N2 P SP 1 21/n 17.5149; 19.1431; 17.1323
90; 90.562; 90
2464.51Jürgensen, Malte; Kunz, Tanja; Arrowsmith, Merle; Dietz, Maximilian; Hagspiel, Stephan; Braunschweig, Holger
Synthesis and reactivity of a parent phosphathioethynolato-borane and a boraarsaketene
Chemical Science, 2025, 16, 8870-8877
1574411 CIFC37 H49 B12 N2 P SP 1 21/c 120.8665; 8.2701; 23.3283
90; 90.258; 90
4025.68Jürgensen, Malte; Kunz, Tanja; Arrowsmith, Merle; Dietz, Maximilian; Hagspiel, Stephan; Braunschweig, Holger
Synthesis and reactivity of a parent phosphathioethynolato-borane and a boraarsaketene
Chemical Science, 2025, 16, 8870-8877
1574412 CIFC55 H53 As B2 N2P -113.8895; 14.0251; 14.5748
61.329; 73.845; 64.999
2247.48Jürgensen, Malte; Kunz, Tanja; Arrowsmith, Merle; Dietz, Maximilian; Hagspiel, Stephan; Braunschweig, Holger
Synthesis and reactivity of a parent phosphathioethynolato-borane and a boraarsaketene
Chemical Science, 2025, 16, 8870-8877
1574413 CIFC41 H44 B F3 N5 P SP 1 21 119.026; 24.2587; 9.7105
90; 121.337; 90
3828.05Jürgensen, Malte; Kunz, Tanja; Arrowsmith, Merle; Dietz, Maximilian; Hagspiel, Stephan; Braunschweig, Holger
Synthesis and reactivity of a parent phosphathioethynolato-borane and a boraarsaketene
Chemical Science, 2025, 16, 8870-8877
1574414 CIFC63 H61 B2 N2 P SP 21 21 219.4437; 20.1987; 26.6309
90; 90; 90
5079.86Jürgensen, Malte; Kunz, Tanja; Arrowsmith, Merle; Dietz, Maximilian; Hagspiel, Stephan; Braunschweig, Holger
Synthesis and reactivity of a parent phosphathioethynolato-borane and a boraarsaketene
Chemical Science, 2025, 16, 8870-8877
1574415 CIF
Paper
Mg9 Ru2C 1 2/c 19.8976; 22.3449; 8.6049
90; 105.549; 90
1833.42Li, Junhui; Liu, Huizi; Liu, Yibo; Wen, Bin; Zhang, Lifeng; Fan, Changzeng
Nonamagnesium diruthenium, Mg9Ru2
IUCrData, 2025, 10, x250305
1574416 CIFC14 H15 N O4P 1 21 17.41048; 6.29241; 28.7488
90; 94.1631; 90
1337.01Dai, Ling; Chen, Ying-Ying; Wang, Jing-Jun; Chen, Jun-Jia; Zhou, Qi-Lin
Photoinduced copper-catalysed enantioselective amination of allylic and propargylic C–H bonds
Chemical Science, 2025, 16, 9213-9219
1574417 CIFC24 H26P -18.7615; 10.5013; 17.8315
84.768; 83.36; 85.557
1619.11Toyama, Yoshifumi; Nakamura, Takumu; Horikawa, Yushin; Morinaka, Yuta; Ono, Yohei; Yagi, Akiko; Itami, Kenichiro; Ito, Hideto
Rh-catalyzed mechanochemical transfer hydrogenation for the synthesis of periphery-hydrogenated polycyclic aromatic compounds
Chemical Science, 2025, 16, 9117-9124
1574418 CIFC42 H36C c c a :225.7173; 13.4757; 8.5134
90; 90; 90
2950.4Toyama, Yoshifumi; Nakamura, Takumu; Horikawa, Yushin; Morinaka, Yuta; Ono, Yohei; Yagi, Akiko; Itami, Kenichiro; Ito, Hideto
Rh-catalyzed mechanochemical transfer hydrogenation for the synthesis of periphery-hydrogenated polycyclic aromatic compounds
Chemical Science, 2025, 16, 9117-9124
1574419 CIFC22 H32C 1 2/c 19.5878; 17.3304; 20.2331
90; 102.886; 90
3277.3Toyama, Yoshifumi; Nakamura, Takumu; Horikawa, Yushin; Morinaka, Yuta; Ono, Yohei; Yagi, Akiko; Itami, Kenichiro; Ito, Hideto
Rh-catalyzed mechanochemical transfer hydrogenation for the synthesis of periphery-hydrogenated polycyclic aromatic compounds
Chemical Science, 2025, 16, 9117-9124
1574420 CIFC325 H377 Ag4 Cl32 Cu28 P8 S16I 4/m26.5679; 26.5679; 23.7512
90; 90; 90
16764.9Nag, Abhijit; Butt, Abdul Mannan; Yang, Moon Young; Managutti, Praveen B.; Pirzada, Bilal Masood; H Mohideen, M Infas; Abdelhady, Ahmed L.; Abu Haija, Mohamed; Mohamed, Sharmarke; Merinov, Boris V.; GoddardIII, William A; Qurashi, Ahsanulhaq
An atomically precise alloy AgCu cuboid nanocluster with a cubic core: gram scale synthesis, total structure, electronic structure, and catalytic performance.
Materials horizons, 2025, 12, 5252-5258
1574421 CIF
Paper
Ca Cu1.42 Fe0.58 Si2I 4/m m m4.041; 4.041; 10.01
90; 90; 90
163.5Dai, Yangkun; Liu, Yibo; Mihalkovic, Marek; Wen, Bin; Zhang, Lifeng; Fan, Changzeng
CaCu1.424Fe0.576Si2
IUCrData, 2025, 10, x250325
1574422 CIFC168 H132 N4 O8 P4P -117.3151; 19.776; 24.0152
104.281; 99.666; 110.711
7152.9Yang, Bo; Yan, Suqiong; Ban, Shirong; Ma, Hui; Zhang, Yuan; Feng, Fanda; Huang, Wei
Customizing circularly polarized afterglow by stepwise chiral amplification in BINAPs/BINAPOs
Chemical Science, 2025, 16, 9393-9405
1574423 CIFC12 H8 S2P 1 21/c 111.8295; 6.0362; 14.3214
90; 109.685; 90
962.86Zeng, Huiwen; Li, Hualiu; Zhen, Peng; Zhou, Jiadong; Xu, Bingjia; Shi, Guang; Zhang, Yujian; Chi, Zhenguo; Liu, Cong
Tuning intramolecular charge transfer and suppressing rotations in thianthrene derivatives for enhancement of room-temperature phosphorescence
Chemical Science, 2025, 16, 9169-9177
1574424 CIFC26 H16 S2P -17.8218; 8.1282; 16.4591
84.174; 77.024; 63.829
915.16Zeng, Huiwen; Li, Hualiu; Zhen, Peng; Zhou, Jiadong; Xu, Bingjia; Shi, Guang; Zhang, Yujian; Chi, Zhenguo; Liu, Cong
Tuning intramolecular charge transfer and suppressing rotations in thianthrene derivatives for enhancement of room-temperature phosphorescence
Chemical Science, 2025, 16, 9169-9177
1574425 CIFC18 H12 S2P 1 21/n 111.4034; 11.4007; 21.3464
90; 97.826; 90
2749.33Zeng, Huiwen; Li, Hualiu; Zhen, Peng; Zhou, Jiadong; Xu, Bingjia; Shi, Guang; Zhang, Yujian; Chi, Zhenguo; Liu, Cong
Tuning intramolecular charge transfer and suppressing rotations in thianthrene derivatives for enhancement of room-temperature phosphorescence
Chemical Science, 2025, 16, 9169-9177
1574426 CIFC22 H14 S2P 1 21/n 120.081; 11.1282; 29.075
90; 91.588; 90
6494.8Zeng, Huiwen; Li, Hualiu; Zhen, Peng; Zhou, Jiadong; Xu, Bingjia; Shi, Guang; Zhang, Yujian; Chi, Zhenguo; Liu, Cong
Tuning intramolecular charge transfer and suppressing rotations in thianthrene derivatives for enhancement of room-temperature phosphorescence
Chemical Science, 2025, 16, 9169-9177
1574427 CIFC54 H66 Cl2 P2 PdP 1 21/c 123.9383; 10.5614; 31.7091
90; 111.457; 90
7461.1Qadir, Muhammad I.; Chacón-Rosales, Gustavo; Ebersol, Camila P.; Abarca, Gabriel; Matias, Pedro H. F.; de Oliveira, Heibbe Cristhian B.; Pontes, Renato B.; Stieler, Rafael; Dupont, Jairton
Surface palladium nanoparticles in ionic liquids modified with phosphorus ligands for enhanced catalytic semi-hydrogenation.
Nanoscale, 2025, 17, 16705-16712
1574428 CIFCl In14 K5 Se23P 19.0671; 12.1162; 12.1238
93.193; 94.436; 98.838
1309.06Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574429 CIFBa Cl In18 Rb5 Se30P 63 c m14.0681; 14.0681; 19.7774
90; 90; 120
3389.77Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574430 CIFBa Cl5 In22 K13 Se38C 1 2 125.552; 11.5176; 20.3164
90; 125.12; 90
4890.6Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574431 CIFBa Cl In18 K5 Se30P 63 c m14.0037; 14.0037; 19.6844
90; 90; 120
3343.02Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574432 CIFCl5 In22 K14 Li Se38C 1 2 125.4344; 11.4919; 20.2696
90; 125.124; 90
4845.8Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574433 CIFCl In14 Rb5 Se23P 19.1426; 12.176; 12.2109
93.231; 94.496; 98.854
1335.76Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574434 CIFC17 H14 N2 O4C 1 2/c 125.4599; 4.8787; 23.7344
90; 107.608; 90
2810Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574435 CIFC48 H50 N8 O16P 1 21 19.6893; 16.7367; 15.0094
90; 99.937; 90
2397.51Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574436 CIFC14 H14 N2 O6P -15.198; 7.7142; 16.8659
85.429; 88.957; 83.901
670.3Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574437 CIFC17 H19 N4 O5P -18.2386; 9.1933; 12.2557
109.346; 104.319; 92.86
839.76Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574438 CIFC13 H12 N2 O5P -15.7882; 8.051; 13.3821
96.039; 91.946; 94.003
618.11Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574439 CIFC12 H8 N3 O6P 1 21/n 16.2329; 22.008; 9.4129
90; 99.411; 90
1273.8Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574440 CIFC26 H20 N3 O3P -19.7342; 10.4465; 10.8557
77.28; 86.238; 72.443
1026.64Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574441 CIFC19 H18 N4 O5P 1 21/c 19.0412; 24.4254; 8.6209
90; 116.71; 90
1700.65Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574442 CIFC49 H51 N7 O13C 1 c 19.4553; 17.6614; 28.0494
90; 93.143; 90
4677.03Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574443 CIFC15 H18 N4 O7P -17.1718; 8.5853; 13.748
90.289; 100.961; 106.499
795.26Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574444 CIFC17 H12 N4 O6P 1 21/c 113.6498; 7.3982; 16.4817
90; 106.994; 90
1591.71Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574445 CIFC17 H14 N O3P 1 21/c 110.6221; 11.3226; 11.5995
90; 107.861; 90
1327.83Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574446 CIFC21 H20 N2 O3P -17.4821; 9.4572; 13.6078
83.084; 78.243; 68.6
876.57Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574447 CIFC13 H18 N4 O6P 1 21/c 113.0056; 6.5779; 17.0942
90; 97.832; 90
1448.76Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574448 CIFC14 H18 N2 O2P 1 21/c 17.6282; 9.2277; 10.0237
90; 111.011; 90
658.66Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574449 CIFC16 H18 N4 O7P 1 21/n 16.9229; 10.1175; 23.0844
90; 91.161; 90
1616.56Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574450 CIFC14 H16 N2 O6P -17.239; 7.5083; 15.0443
77.229; 80.117; 65.746
724.07Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574451 CIFC15 H16 N2 O4P 1 21/c 15.5588; 9.9773; 50.1061
90; 92.693; 90
2775.91Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574452 CIFC44 H40 N6 O4P -18.7799; 10.0344; 11.9985
67.885; 77.744; 69.42
912.91Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574453 CIFC15 H15 N4 O3P 1 21/n 15.2125; 27.0087; 10.3421
90; 102.312; 90
1422.5Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574454 CIFC16 H12 N O3P 1 21/c 18.9136; 11.3523; 12.4921
90; 98.27; 90
1250.93Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574455 CIFC14 H14 N4 O8P 1 21/c 17.0215; 22.3185; 20.2612
90; 92.304; 90
3172.6Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574456 CIFC9 H11 N4 O4P 1 21/c 14.4079; 14.7459; 15.8719
90; 96.239; 90
1025.54Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574457 CIFC15 H14 N6 O8P 21 21 219.0637; 29.4253; 12.6604
90; 90; 90
3376.56Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574458 CIFC17 H14 N2 O4P 1 21/c 16.5495; 10.7984; 20.6573
90; 97.076; 90
1449.84Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574459 CIFC18 H19 N2 O6.5P -19.5205; 12.1056; 16.1549
99.092; 97.39; 105.51
1742.73Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574460 CIFC15 H15 N4 O3P 1 21/c 17.244; 11.3576; 17.2682
90; 97.939; 90
1407.11Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574461 CIFC16 H18 N2 O4 SP 1 2/n 111.3891; 4.8402; 15.7088
90; 110; 90
813.73Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574462 CIFC11 H14 N2 O5P -15.4572; 7.3636; 15.1899
99.538; 94.453; 104.74
577.54Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574463 CIFC13 H11 N2 OP -17.8241; 8.6299; 9.2154
112.063; 109.788; 94.584
527.1Metherall, Jessica P.; Corner, Philip A.; McCabe, James F.; Probert, Michael R.; Hall, Michael J.
High-throughput encapsulated nanodroplet screening for accelerated co-crystal discovery
Chemical Science, 2025, 16, 9843-9853
1574464 CIFC50 H52 Dy N5 O11 P2 Se2P -19.6729; 11.1667; 25.6156
90.315; 92.411; 112.001
2562.4Ma, Xiu-Fang; Hou, Xin-Lan; Qin, Ye-Hui; Teng, Qian; Bao, Song-Song; Tian, Yu-Xi; Zheng, Li-Min
A thermally and photoresponsive luminescent single-molecule magnet based on dysprosium–anthracene: effect of temperature on anthracene photocycloaddition
Chemical Science, 2025, 16, 10340-10348
1574465 CIFC50 H52 Dy N5 O11 P2 Se2P 1 21/m 19.585; 25.97; 11.34
90; 112.62; 90
2606Ma, Xiu-Fang; Hou, Xin-Lan; Qin, Ye-Hui; Teng, Qian; Bao, Song-Song; Tian, Yu-Xi; Zheng, Li-Min
A thermally and photoresponsive luminescent single-molecule magnet based on dysprosium–anthracene: effect of temperature on anthracene photocycloaddition
Chemical Science, 2025, 16, 10340-10348
1574466 CIFC50 H52 Dy N5 O11 P2 Se2P -19.7055; 11.1138; 25.416
90.469; 92.518; 112.134
2536.1Ma, Xiu-Fang; Hou, Xin-Lan; Qin, Ye-Hui; Teng, Qian; Bao, Song-Song; Tian, Yu-Xi; Zheng, Li-Min
A thermally and photoresponsive luminescent single-molecule magnet based on dysprosium–anthracene: effect of temperature on anthracene photocycloaddition
Chemical Science, 2025, 16, 10340-10348
1574467 CIFC50 H52 Dy N5 O11 P2 Se2P 1 21/m 19.7539; 25.787; 11.2182
90; 111.587; 90
2623.7Ma, Xiu-Fang; Hou, Xin-Lan; Qin, Ye-Hui; Teng, Qian; Bao, Song-Song; Tian, Yu-Xi; Zheng, Li-Min
A thermally and photoresponsive luminescent single-molecule magnet based on dysprosium–anthracene: effect of temperature on anthracene photocycloaddition
Chemical Science, 2025, 16, 10340-10348
1574468 CIFC50 H52 Dy N5 O11 P2 Se2P 1 21/m 19.5847; 25.809; 11.2751
90; 112.946; 90
2568.4Ma, Xiu-Fang; Hou, Xin-Lan; Qin, Ye-Hui; Teng, Qian; Bao, Song-Song; Tian, Yu-Xi; Zheng, Li-Min
A thermally and photoresponsive luminescent single-molecule magnet based on dysprosium–anthracene: effect of temperature on anthracene photocycloaddition
Chemical Science, 2025, 16, 10340-10348
1574469 CIFC20 H19 D2 N O4P 1 21/c 15.8735; 17.634; 17.716
90; 95.82; 90
1825.4Wu, Yuanqing; Peng, Chuxiong; Zhan, Qichen; Lou, Xudong; Liu, Shijie; Lin, Xiaofeng; Han, Yulin; Cao, Peng; Cao, Tao
Towards trans-dual deuterated cyclopropanes via photoredox synergistic deuteration with D2O
Chemical Science, 2025, 16, 9535-9542
1574470 CIFC20 H32.03 Fe2 K2 N16 O4F m -3 m11.9108; 11.9108; 11.9108
90; 90; 90
1689.8Lv, Hui-Peng; Hu, Sheng-Qian; Bai, Yong-Ju; Zhou, Jun-Si; Ji, Luan-Ying; Wang, Zhong-Xia; Ai, Yong; Qin, Yan; Chen, Xiao-Gang
Giant mechanical tunability by a coordination bond strategy in a 3D hybrid cyanide double perovskite ferroelastic with reconstructive phase transition
Chemical Science, 2025, 16, 9109-9116
1574471 CIFC10 H16 Fe K N8 O2P 1 21/n 111.8245; 11.7157; 11.9825
90; 91.798; 90
1659.15Lv, Hui-Peng; Hu, Sheng-Qian; Bai, Yong-Ju; Zhou, Jun-Si; Ji, Luan-Ying; Wang, Zhong-Xia; Ai, Yong; Qin, Yan; Chen, Xiao-Gang
Giant mechanical tunability by a coordination bond strategy in a 3D hybrid cyanide double perovskite ferroelastic with reconstructive phase transition
Chemical Science, 2025, 16, 9109-9116
1574472 CIFC10 H16 Fe K N8 O2P 1 21/n 19.1365; 11.702; 15.6616
90; 102.667; 90
1633.71Lv, Hui-Peng; Hu, Sheng-Qian; Bai, Yong-Ju; Zhou, Jun-Si; Ji, Luan-Ying; Wang, Zhong-Xia; Ai, Yong; Qin, Yan; Chen, Xiao-Gang
Giant mechanical tunability by a coordination bond strategy in a 3D hybrid cyanide double perovskite ferroelastic with reconstructive phase transition
Chemical Science, 2025, 16, 9109-9116
1574473 CIFC10 H16 Fe K N8 O2P 1 21/n 111.7784; 11.6709; 11.9663
90; 92.024; 90
1643.92Lv, Hui-Peng; Hu, Sheng-Qian; Bai, Yong-Ju; Zhou, Jun-Si; Ji, Luan-Ying; Wang, Zhong-Xia; Ai, Yong; Qin, Yan; Chen, Xiao-Gang
Giant mechanical tunability by a coordination bond strategy in a 3D hybrid cyanide double perovskite ferroelastic with reconstructive phase transition
Chemical Science, 2025, 16, 9109-9116
1574474 CIFC10 H16 Fe K N8 O2P 1 21/n 111.6613; 11.5994; 11.9561
90; 92.675; 90
1615.47Lv, Hui-Peng; Hu, Sheng-Qian; Bai, Yong-Ju; Zhou, Jun-Si; Ji, Luan-Ying; Wang, Zhong-Xia; Ai, Yong; Qin, Yan; Chen, Xiao-Gang
Giant mechanical tunability by a coordination bond strategy in a 3D hybrid cyanide double perovskite ferroelastic with reconstructive phase transition
Chemical Science, 2025, 16, 9109-9116
1574475 CIFC320 H248 N16 O136 P10 Si4 W40P b c n32.9135; 34.9741; 51.0599
90; 90; 90
58776.1Yamaguchi, Masahiro; Yonesato, Kentaro; Shioya, Kaito; Li, Chifeng; Murata, Kei; Ishii, Kazuyuki; Yamaguchi, Kazuya; Suzuki, Kosuke
Engineering cofacial porphyrin dimers using lacunary polyoxotungstates
Chemical Science, 2025, 16, 9178-9185
1574476 CIFC100 H68 N20 O124 Si4 W36P -128.75606; 31.5544; 34.30222
66.2043; 85.0443; 69.9358
26701.7Yamaguchi, Masahiro; Yonesato, Kentaro; Shioya, Kaito; Li, Chifeng; Murata, Kei; Ishii, Kazuyuki; Yamaguchi, Kazuya; Suzuki, Kosuke
Engineering cofacial porphyrin dimers using lacunary polyoxotungstates
Chemical Science, 2025, 16, 9178-9185
1574477 CIFC28 H28 Cu F6 N8 SiP -112.7494; 13.2904; 13.4525
107.357; 101.738; 118.165
1750.18Song, Bai-Qiao; Gao, Mei-Yan; Mercene van Wyk, Lisa; Deng, Cheng-Hua; Eaby, Alan C.; Wang, Shi-Qiang; Darwish, Shaza; Li, Dan; Qin, Shao-Jie; Peng, Yun-Lei; Yang, Qing-Yuan; Barbour, Leonard J.; Zaworotko, Michael J.
A new type of C2H2 binding site in a cis-bridging hexafluorosilicate ultramicroporous material that offers trace C2H2 capture
Chemical Science, 2025, 16, 9010-9019
1574478 CIFC28 H28 Cu F6 N8 SiP -112.5516; 13.1903; 13.4732
61.077; 77.461; 62.358
1729.48Song, Bai-Qiao; Gao, Mei-Yan; Mercene van Wyk, Lisa; Deng, Cheng-Hua; Eaby, Alan C.; Wang, Shi-Qiang; Darwish, Shaza; Li, Dan; Qin, Shao-Jie; Peng, Yun-Lei; Yang, Qing-Yuan; Barbour, Leonard J.; Zaworotko, Michael J.
A new type of C2H2 binding site in a cis-bridging hexafluorosilicate ultramicroporous material that offers trace C2H2 capture
Chemical Science, 2025, 16, 9010-9019
1574479 CIFC31 H29 Cu F6 N8 SiP -112.5344; 13.1083; 13.456
60.939; 77.661; 62.396
1712.38Song, Bai-Qiao; Gao, Mei-Yan; Mercene van Wyk, Lisa; Deng, Cheng-Hua; Eaby, Alan C.; Wang, Shi-Qiang; Darwish, Shaza; Li, Dan; Qin, Shao-Jie; Peng, Yun-Lei; Yang, Qing-Yuan; Barbour, Leonard J.; Zaworotko, Michael J.
A new type of C2H2 binding site in a cis-bridging hexafluorosilicate ultramicroporous material that offers trace C2H2 capture
Chemical Science, 2025, 16, 9010-9019
1574480 CIFC28 H28 Cu F6 N8 SiP -112.9047; 13.317; 13.4147
107.942; 101.071; 118.191
1769.51Song, Bai-Qiao; Gao, Mei-Yan; Mercene van Wyk, Lisa; Deng, Cheng-Hua; Eaby, Alan C.; Wang, Shi-Qiang; Darwish, Shaza; Li, Dan; Qin, Shao-Jie; Peng, Yun-Lei; Yang, Qing-Yuan; Barbour, Leonard J.; Zaworotko, Michael J.
A new type of C2H2 binding site in a cis-bridging hexafluorosilicate ultramicroporous material that offers trace C2H2 capture
Chemical Science, 2025, 16, 9010-9019
1574481 CIFC28 H26 Cu F6 N8 SiP -112.5027; 13.1215; 13.376
61.138; 77.684; 62.477
1704.18Song, Bai-Qiao; Gao, Mei-Yan; Mercene van Wyk, Lisa; Deng, Cheng-Hua; Eaby, Alan C.; Wang, Shi-Qiang; Darwish, Shaza; Li, Dan; Qin, Shao-Jie; Peng, Yun-Lei; Yang, Qing-Yuan; Barbour, Leonard J.; Zaworotko, Michael J.
A new type of C2H2 binding site in a cis-bridging hexafluorosilicate ultramicroporous material that offers trace C2H2 capture
Chemical Science, 2025, 16, 9010-9019
1574482 CIFC28 H28 Cu F6 N8 SiP -112.7993; 13.3073; 13.4067
107.373; 101.567; 118.29
1752.9Song, Bai-Qiao; Gao, Mei-Yan; Mercene van Wyk, Lisa; Deng, Cheng-Hua; Eaby, Alan C.; Wang, Shi-Qiang; Darwish, Shaza; Li, Dan; Qin, Shao-Jie; Peng, Yun-Lei; Yang, Qing-Yuan; Barbour, Leonard J.; Zaworotko, Michael J.
A new type of C2H2 binding site in a cis-bridging hexafluorosilicate ultramicroporous material that offers trace C2H2 capture
Chemical Science, 2025, 16, 9010-9019
1574483 CIFC28 H28 Cu F6 N8 SiP -112.6837; 13.3315; 13.4082
107.043; 101.918; 118.388
1738.32Song, Bai-Qiao; Gao, Mei-Yan; Mercene van Wyk, Lisa; Deng, Cheng-Hua; Eaby, Alan C.; Wang, Shi-Qiang; Darwish, Shaza; Li, Dan; Qin, Shao-Jie; Peng, Yun-Lei; Yang, Qing-Yuan; Barbour, Leonard J.; Zaworotko, Michael J.
A new type of C2H2 binding site in a cis-bridging hexafluorosilicate ultramicroporous material that offers trace C2H2 capture
Chemical Science, 2025, 16, 9010-9019
1574484 CIFC110 H92 N8 O4.5P -19.7465; 10.1714; 21.346
89.847; 85.104; 75.293
2038.95Cai, Xian-Bao; Liang, Dong; Zhang, Deng-Chao; Jia, Ji-Hui; Wu, Xiao-Yuan; Lu, Can-Zhong
Achieving dual emission of thermally activated delayed fluorescence and ultralong room-temperature phosphorescence by controlling excited state dynamics through metal coordination
Chemical Science, 2025, 16, 9802-9808
1574485 CIFC94 H74 Ag B F4 N4 O P2P -112.9145; 15.9498; 19.2708
77.098; 81.031; 77.688
3755.75Cai, Xian-Bao; Liang, Dong; Zhang, Deng-Chao; Jia, Ji-Hui; Wu, Xiao-Yuan; Lu, Can-Zhong
Achieving dual emission of thermally activated delayed fluorescence and ultralong room-temperature phosphorescence by controlling excited state dynamics through metal coordination
Chemical Science, 2025, 16, 9802-9808
1574486 CIFC47 H34 Cl10 F12 Sb2P -111.056; 12.0361; 12.1017
105.769; 104.054; 116.448
1257.78Kai, Nobushige; Kono, Hideya; Stünkel, Timo; Imoto, Daiki; Zanasi, Riccardo; Monaco, Guglielmo; Summa, Francesco F.; Scott, Lawrence T.; Yagi, Akiko; Itami, Kenichiro
Stable cationic nanobelts synthesized by chemical oxidation of methylene-bridged [6]cycloparaphenylene
Chemical Science, 2025, 16, 9195-9202
1574487 CIFC17 H24 B10 OP -110.2082; 10.3206; 10.8736
95.963; 114.424; 96.569
1021.64Cao, Hou-Ji; Li, Jia-Xin; Yan, Jia-Hui; Liu, Miao-Xin; Zhao, Qianyi; Zhang, Jie; Zhang, Ju; Yan, Hong
Post-coordination of Ru(ii) controlled regioselective B(4)–H acylmethylation of o-carboranes with sulfoxonium ylides
Chemical Science, 2025, 16, 9406-9412
1574488 CIFC24 H38 B20 O5 RuP b c a20.4669; 12.00586; 28.6857
90; 90; 90
7048.73Cao, Hou-Ji; Li, Jia-Xin; Yan, Jia-Hui; Liu, Miao-Xin; Zhao, Qianyi; Zhang, Jie; Zhang, Ju; Yan, Hong
Post-coordination of Ru(ii) controlled regioselective B(4)–H acylmethylation of o-carboranes with sulfoxonium ylides
Chemical Science, 2025, 16, 9406-9412
1574489 CIFC16 H21 B10 N O3P -110.0973; 10.5194; 10.8504
103.664; 111.893; 96.953
1010.78Cao, Hou-Ji; Li, Jia-Xin; Yan, Jia-Hui; Liu, Miao-Xin; Zhao, Qianyi; Zhang, Jie; Zhang, Ju; Yan, Hong
Post-coordination of Ru(ii) controlled regioselective B(4)–H acylmethylation of o-carboranes with sulfoxonium ylides
Chemical Science, 2025, 16, 9406-9412
1574490 CIFC16 H21 B10 Br OP 1 21/n 110.5191; 10.8321; 18.0396
90; 98.262; 90
2034.17Cao, Hou-Ji; Li, Jia-Xin; Yan, Jia-Hui; Liu, Miao-Xin; Zhao, Qianyi; Zhang, Jie; Zhang, Ju; Yan, Hong
Post-coordination of Ru(ii) controlled regioselective B(4)–H acylmethylation of o-carboranes with sulfoxonium ylides
Chemical Science, 2025, 16, 9406-9412
1574491 CIFC20 H22 N2 SiC 1 2/c 130.145; 15.0646; 21.593
90; 132.881; 90
7185.4Saadi, Lamine; Valade, Loïc; Chauvier, Clément
Catalytic alkoxysilylation of C–H bonds with tert-butyl-substituted alkoxysilyldiazenes
Chemical Science, 2025, 16, 9794-9801
1574492 CIFC18 H23 F O SiP -16.8159; 10.7178; 12.2818
78.849; 85.474; 86.837
876.79Saadi, Lamine; Valade, Loïc; Chauvier, Clément
Catalytic alkoxysilylation of C–H bonds with tert-butyl-substituted alkoxysilyldiazenes
Chemical Science, 2025, 16, 9794-9801
1574493 CIFC20 H31 Cl4 N4 P3P 1 21/n 110.7944; 14.744; 17.168
90; 108.135; 90
2596.61LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574494 CIFC20 H31 Cl4 N4 P3 SeC 1 c 112.298; 14.467; 15.947
90; 101.842; 90
2776.8LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574495 CIFC20 H31 Au Cl5 N4 P3P 1 21/n 18.9486; 16.9933; 18.8866
90; 90.791; 90
2871.74LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574496 CIFC20 H31 Cl4 N4 P3 SC 1 c 112.3147; 14.3846; 15.9115
90; 101.938; 90
2757.6LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574497 CIFC40 H62 Cl2 N5 P3P -19.5514; 14.4875; 16.241
93.285; 93.598; 109.054
2112.83LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574498 CIFC30 H46 Cl5 N4 P3 RuP b c a20.7075; 16.7414; 21.1042
90; 90; 90
7316.2LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574499 CIFC40 H61 Cl4 N4 P3 Ru2P -111.5068; 15.2965; 16.8157
115.819; 91.208; 106.688
2515.2LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574500 CIFC30 H46 Cl N RuP 1 21/c 122.017; 14.1311; 20.335
90; 117.405; 90
5616.7LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574501 CIFC40 H62 Cl2 N5 P3 Se2C 1 2/c 117.9105; 9.9902; 25.0966
90; 100.54; 90
4414.8LaPierre, Etienne A.; Suvinen, Roope A.; Patrick, Brian O.; Tuononen, Heikki M.; Manners, Ian
Multi-site reduction of hexachlorophosphazene to low-valent PN heterocycles and extension to the reduction of poly-chlorophosphazene
Chemical Science, 2025, 16, 9820-9832
1574502 CIFC22 H22 N2P 1 21/c 16.3548; 7.1946; 19.21
90; 91.006; 90
878.2Uva, Azalea; Kim, Yaejin; Michailovich, Sofia; Hsu, Nathan S. Y.; Bain, David C.; Huang, Shine H.; Musser, Andrew J.; Tran, Helen
Impact of imine bonds on the electronic properties of degradable carotenoid-based conjugated polymers
Polymer Chemistry, 2025, 16, 2817-2828
1574503 CIF
Paper
C31 H28 Cl2 F2 N4 O4P 1 21/c 110.867; 15.2671; 19.1569
90; 97.463; 90
3151.4Nyapola, Carren; Zamisa, Sizwe J.; Omondi, Bernard; Njogu, Eric M.
5-Acetyl-2-amino-4-(2-fluorophenyl)-6-methyl-4H-pyran-3-carbonitrile dichlomethane hemisolvate
IUCrData, 2025, 10, x250337
1574504 CIF
Paper
C22 H18 N2 OP -19.43; 9.997; 10.203
99.833; 107.559; 106.866
841.7Islam, Izarul; Kanti Roy, Pijush; Zangrando, Ennio; Gopal Karmaker, Pran; Nath Roy, Harendra
4,4-Dimethyl-2-phenyl-4,5-dihydropyrrolo[2,3,4-kl]acridin-1(2H)-one
IUCrData, 2025, 10, x250361
1574505 CIFC10 H15 B N2 O SiP b c a8.2351; 12.2203; 24.1907
90; 90; 90
2434.44Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574506 CIFC12 H15 B N2 O3P 1 21/n 112.7968; 5.9025; 17.2316
90; 103.002; 90
1268.19Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574507 CIFC18 H21 B N2P 1 21/n 18.3573; 10.356; 17.9111
90; 94.531; 90
1545.33Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574508 CIFC59 H70 Ag3 B3 N6 O2P 1 21 111.843; 19.898; 12.41
90; 107.45; 90
2789.9Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574509 CIFC7 H7 B N2 OP 1 21/c 17.6003; 7.2677; 12.3523
90; 96.378; 90
678.08Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574510 CIFC35 H41 B3 Li N7 O3P 1 21/c 118.1164; 12.6662; 17.0662
90; 118.098; 90
3454.57Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574511 CIFC52 H43 B6 K4 N17 O2P 1 2/c 113.2068; 15.3061; 14.4664
90; 106.609; 90
2802.3Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574512 CIFC17 H19 B N2P -112.2579; 14.7917; 14.9932
119.224; 97.468; 92.874
2332Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574513 CIFC20 H27 B N2 SiP -16.7806; 19.1991; 22.5503
83.564; 85.956; 83.743
2894.7Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574514 CIFC60 H63 Au3 B3 N6P -112.05; 14.853; 15.153
82.33; 87.07; 83.93
2671Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574515 CIFC86 H112 B4 Br2 Mg4 N8 O3P -115.0166; 16.5087; 19.7579
70.547; 74.162; 76.507
4388.02Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574516 CIFC50 H68 B2 Li2 N4 O4P -112.1298; 14.725; 19.7956
89.493; 81.215; 81.463
3455.18Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574517 CIFC64 H62 B4 N4 O4P 1 21/n 114.941; 18.7016; 20.4482
90; 110.607; 90
5348.07Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574518 CIFC68 H72 B4 N8 Na4P -4 21 c22.5318; 22.5318; 24.2167
90; 90; 90
12294.4Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574519 CIFC79 H90 B4 Li4 N8P -113.503; 14.233; 21.0535
83.073; 73.678; 66.26
3554.45Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574520 CIFC68 H72 B4 K4 N8P -4 21 c22.279; 22.279; 25.8166
90; 90; 90
12814.2Wüst, Leonie; Scheuring, Lea; Wellnitz, Tim; Radacki, Krzysztof; Braunschweig, Holger
Alkali metal salts of 1,2,3-benzodiazaborines: platforms for late-stage N-functionalization and metal complexation
Chemical Science, 2025, 16, 9934-9942
1574521 CIFC358 H312 Ag22 Cl8 F40 O42 P14 Pt2 S10P -119.063; 19.742; 27.214
79.311; 78.555; 63.042
8894Tan, Dong; Ding, Tengfei; Shen, Kaidong; Xu, Chang; Jin, Shan; Hu, Daqiao; Sun, Song; Zhu, Manzhou
Icosahedron kernel defect in Pt1Agx series of bimetallic nanoclusters enhances photocatalytic hydrogen evolution
Chemical Science, 2025, 16, 9326-9336
1574522 CIFC27 H35 O4P 1 21/n 114.2241; 11.8676; 14.8052
90; 111.477; 90
2325.7Hyun, Young Eum; Kweon, Jeonguk; Linh Phan, Thi Hieu; Kim, Dongwook; Han, Sunkyu
α-N-phthalimido-oxy isobutyrate-mediated deoxygenative arylation: total synthesis of alanenses A and B
Chemical Science, 2025, 16, 9943-9950
1574523 CIFC16 H22 O3P 1 21/c 113.05; 15.376; 7.436
90; 103.521; 90
1450.7Hyun, Young Eum; Kweon, Jeonguk; Linh Phan, Thi Hieu; Kim, Dongwook; Han, Sunkyu
α-N-phthalimido-oxy isobutyrate-mediated deoxygenative arylation: total synthesis of alanenses A and B
Chemical Science, 2025, 16, 9943-9950
1574524 CIFC22 H19 F3 O4P 1 21/c 16.6232; 15.1691; 18.739
90; 91.374; 90
1882.1Hyun, Young Eum; Kweon, Jeonguk; Linh Phan, Thi Hieu; Kim, Dongwook; Han, Sunkyu
α-N-phthalimido-oxy isobutyrate-mediated deoxygenative arylation: total synthesis of alanenses A and B
Chemical Science, 2025, 16, 9943-9950
1574525 CIFC23 H25 Cl3 O3P -18.6471; 11.616; 11.779
91.132; 107.559; 99.486
1109.5Hyun, Young Eum; Kweon, Jeonguk; Linh Phan, Thi Hieu; Kim, Dongwook; Han, Sunkyu
α-N-phthalimido-oxy isobutyrate-mediated deoxygenative arylation: total synthesis of alanenses A and B
Chemical Science, 2025, 16, 9943-9950
1574526 CIFC3 H7 N O2P 21 21 215.79932; 5.94057; 12.2815
90; 90; 90
423.113Hayashi, Mibuki; Nishioka, Takashi; Kasai, Hidetaka; Nishibori, Eiji
Accurate temperature dependence of structure factors of L-alanine and taurine for quantum crystallography.
IUCrJ, 2025, 12
1574527 CIFC3 H7 N O2P 21 21 215.8033; 5.95953; 12.2978
90; 90; 90
425.32Hayashi, Mibuki; Nishioka, Takashi; Kasai, Hidetaka; Nishibori, Eiji
Accurate temperature dependence of structure factors of L-alanine and taurine for quantum crystallography.
IUCrJ, 2025, 12
1574528 CIFC3 H7 N O2P 21 21 215.80343; 5.98084; 12.3143
90; 90; 90
427.422Hayashi, Mibuki; Nishioka, Takashi; Kasai, Hidetaka; Nishibori, Eiji
Accurate temperature dependence of structure factors of L-alanine and taurine for quantum crystallography.
IUCrJ, 2025, 12
1574529 CIFC3 H7 N O2P 21 21 215.803; 6.0038; 12.333
90; 90; 90
429.68Hayashi, Mibuki; Nishioka, Takashi; Kasai, Hidetaka; Nishibori, Eiji
Accurate temperature dependence of structure factors of L-alanine and taurine for quantum crystallography.
IUCrJ, 2025, 12
1574530 CIFC2 H7 N O3 SP 1 21/c 15.27398; 11.655; 7.8107
90; 93.993; 90
478.94Hayashi, Mibuki; Nishioka, Takashi; Kasai, Hidetaka; Nishibori, Eiji
Accurate temperature dependence of structure factors of L-alanine and taurine for quantum crystallography.
IUCrJ, 2025, 12
1574531 CIFC2 H7 N O3 SP 1 21/c 15.274; 11.6462; 7.8849
90; 94.073; 90
483.08Hayashi, Mibuki; Nishioka, Takashi; Kasai, Hidetaka; Nishibori, Eiji
Accurate temperature dependence of structure factors of L-alanine and taurine for quantum crystallography.
IUCrJ, 2025, 12
1574532 CIFC2 H7 N O3 SP 1 21/c 15.2794; 11.6513; 7.9226
90; 94.112; 90
486.08Hayashi, Mibuki; Nishioka, Takashi; Kasai, Hidetaka; Nishibori, Eiji
Accurate temperature dependence of structure factors of L-alanine and taurine for quantum crystallography.
IUCrJ, 2025, 12
1574533 CIFC24 H14 F2 N2 O2 PtP b c a12.49474; 7.51825; 40.9329
90; 90; 90
3845.18Shi, Yingshuang; Tang, Ke; Zhang, Jincheng; Hu, Ping; Wang, Bi-Qin; Zhao, Ke-Qing; Zhou, Yuqiao; Xiang, Haifeng; Song, Jintong
Building metal-induced inherent chirality: chiral stability/phosphorescence enhancement via a ring expansion strategy of Pt(ii) complexes
Chemical Science, 2025, 16, 9135-9142
1574534 CIFC39 H31 F2 N3 P PtP 1 21/m 111.297; 11.9689; 12.4494
90; 107.362; 90
1606.62Shi, Yingshuang; Tang, Ke; Zhang, Jincheng; Hu, Ping; Wang, Bi-Qin; Zhao, Ke-Qing; Zhou, Yuqiao; Xiang, Haifeng; Song, Jintong
Building metal-induced inherent chirality: chiral stability/phosphorescence enhancement via a ring expansion strategy of Pt(ii) complexes
Chemical Science, 2025, 16, 9135-9142
1574535 CIFC36 H24 F2 N3 O P PtP -111.2485; 13.3692; 13.834
67.612; 80.744; 65.92
1756.2Shi, Yingshuang; Tang, Ke; Zhang, Jincheng; Hu, Ping; Wang, Bi-Qin; Zhao, Ke-Qing; Zhou, Yuqiao; Xiang, Haifeng; Song, Jintong
Building metal-induced inherent chirality: chiral stability/phosphorescence enhancement via a ring expansion strategy of Pt(ii) complexes
Chemical Science, 2025, 16, 9135-9142
1574536 CIFC38 H27 F3 N2 O3 P PtP -111.7209; 12.2296; 12.3631
80.842; 74.977; 72.509
1626.08Shi, Yingshuang; Tang, Ke; Zhang, Jincheng; Hu, Ping; Wang, Bi-Qin; Zhao, Ke-Qing; Zhou, Yuqiao; Xiang, Haifeng; Song, Jintong
Building metal-induced inherent chirality: chiral stability/phosphorescence enhancement via a ring expansion strategy of Pt(ii) complexes
Chemical Science, 2025, 16, 9135-9142
1574537 CIFC38 H27 F3 N3 O P Pt SP -112.1153; 12.2147; 13.0461
75.692; 73.659; 61.642
1615.52Shi, Yingshuang; Tang, Ke; Zhang, Jincheng; Hu, Ping; Wang, Bi-Qin; Zhao, Ke-Qing; Zhou, Yuqiao; Xiang, Haifeng; Song, Jintong
Building metal-induced inherent chirality: chiral stability/phosphorescence enhancement via a ring expansion strategy of Pt(ii) complexes
Chemical Science, 2025, 16, 9135-9142
1574538 CIFC50 H45 F3 N3 O3 P PtP 1 21/n 112.972; 22.815; 14.119
90; 91.864; 90
4176.4Shi, Yingshuang; Tang, Ke; Zhang, Jincheng; Hu, Ping; Wang, Bi-Qin; Zhao, Ke-Qing; Zhou, Yuqiao; Xiang, Haifeng; Song, Jintong
Building metal-induced inherent chirality: chiral stability/phosphorescence enhancement via a ring expansion strategy of Pt(ii) complexes
Chemical Science, 2025, 16, 9135-9142
1574539 CIFC37 H26 Cl2 F2 N3 P Pt SP -112.223; 14.921; 18.193
101.507; 97.929; 95.935
3190.8Shi, Yingshuang; Tang, Ke; Zhang, Jincheng; Hu, Ping; Wang, Bi-Qin; Zhao, Ke-Qing; Zhou, Yuqiao; Xiang, Haifeng; Song, Jintong
Building metal-induced inherent chirality: chiral stability/phosphorescence enhancement via a ring expansion strategy of Pt(ii) complexes
Chemical Science, 2025, 16, 9135-9142
1574540 CIFC137.5 H141 Cl5 O2P 21 21 234.8651; 29.9134; 11.7879
90; 90; 90
12294Li, Zhi-Ao; Zhu, Ke-Lin; Yao, Nai-Te; Liang, Jiaqi; Shang, Yi-Ling; Zhang, Ye; Gong, Han-Yuan
Enantiomer-enriched π-extended helicenes with a perylene core from binaphthol: axial-to-helical chirality transfer with a stepwise Scholl reaction mechanism
Chemical Science, 2025, 16, 9978-9987
1574541 CIFC135.75 H143 Cl1.5 O4.75P 21 21 235.148; 30.1006; 11.795
90; 90; 90
12478.8Li, Zhi-Ao; Zhu, Ke-Lin; Yao, Nai-Te; Liang, Jiaqi; Shang, Yi-Ling; Zhang, Ye; Gong, Han-Yuan
Enantiomer-enriched π-extended helicenes with a perylene core from binaphthol: axial-to-helical chirality transfer with a stepwise Scholl reaction mechanism
Chemical Science, 2025, 16, 9978-9987
1574542 CIFC145 H168 O7P -115.0587; 16.355; 25.5956
85.232; 78.91; 88.617
6164.5Li, Zhi-Ao; Zhu, Ke-Lin; Yao, Nai-Te; Liang, Jiaqi; Shang, Yi-Ling; Zhang, Ye; Gong, Han-Yuan
Enantiomer-enriched π-extended helicenes with a perylene core from binaphthol: axial-to-helical chirality transfer with a stepwise Scholl reaction mechanism
Chemical Science, 2025, 16, 9978-9987
1574543 CIFC136.12 H142.25 Cl2.25 O2P -114.4766; 26.96; 32.5283
95.858; 100.307; 99.533
12204.1Li, Zhi-Ao; Zhu, Ke-Lin; Yao, Nai-Te; Liang, Jiaqi; Shang, Yi-Ling; Zhang, Ye; Gong, Han-Yuan
Enantiomer-enriched π-extended helicenes with a perylene core from binaphthol: axial-to-helical chirality transfer with a stepwise Scholl reaction mechanism
Chemical Science, 2025, 16, 9978-9987
1574544 CIFC135.25 H144.75 Cl3 O4.88P 1 21/n 123.0691; 30.9414; 33.7278
90; 95.416; 90
23967.1Li, Zhi-Ao; Zhu, Ke-Lin; Yao, Nai-Te; Liang, Jiaqi; Shang, Yi-Ling; Zhang, Ye; Gong, Han-Yuan
Enantiomer-enriched π-extended helicenes with a perylene core from binaphthol: axial-to-helical chirality transfer with a stepwise Scholl reaction mechanism
Chemical Science, 2025, 16, 9978-9987
1574545 CIFC8 H11 N OP 1 c 19.1243; 9.6491; 8.7744
90; 104.232; 90
748.8Grabowski, Szymon; Nowakowska, Klaudia; Butkiewicz, Helena; Hoser, Anna; Wesełucha-Birczyńska, Aleksandra; Seidler, Tomasz; Moskal, Paulina; Gryl, Marlena
Additive-driven microwave crystallization of tyramine polymorphs and salts: a quantum crystallography perspective.
IUCrJ, 2025, 12
1574546 CIFC8 H11 N OP -15.4977; 8.9826; 14.6789
85.742; 89.93; 81.52
714.96Grabowski, Szymon; Nowakowska, Klaudia; Butkiewicz, Helena; Hoser, Anna; Wesełucha-Birczyńska, Aleksandra; Seidler, Tomasz; Moskal, Paulina; Gryl, Marlena
Additive-driven microwave crystallization of tyramine polymorphs and salts: a quantum crystallography perspective.
IUCrJ, 2025, 12
1574547 CIFC32 H47 N5 O7P 1 21 19.1192; 19.0384; 10.0172
90; 95.648; 90
1730.69Grabowski, Szymon; Nowakowska, Klaudia; Butkiewicz, Helena; Hoser, Anna; Wesełucha-Birczyńska, Aleksandra; Seidler, Tomasz; Moskal, Paulina; Gryl, Marlena
Additive-driven microwave crystallization of tyramine polymorphs and salts: a quantum crystallography perspective.
IUCrJ, 2025, 12
1574548 CIFC16.67 H24 N3.33 O4R -3 c :H17.23677; 17.23677; 62.5877
90; 90; 120
16103.9Grabowski, Szymon; Nowakowska, Klaudia; Butkiewicz, Helena; Hoser, Anna; Wesełucha-Birczyńska, Aleksandra; Seidler, Tomasz; Moskal, Paulina; Gryl, Marlena
Additive-driven microwave crystallization of tyramine polymorphs and salts: a quantum crystallography perspective.
IUCrJ, 2025, 12
1574549 CIFC13 H14 O3P 1 21 16.5249; 7.7533; 11.3333
90; 103.142; 90
558.33Fan, Zhoulong; Cai, Xinpei; Sheng, Tao; Yu, Jin-Quan
Synthesis of bicyclo[3.2.0]heptane lactones via a ligand-enabled Pd-catalyzed C(sp3)–H activation cascade
Chemical Science, 2025, 16, 9436-9440
1574550 CIFC12 H11 F O2P 1 21/c 18.1406; 5.8085; 19.8674
90; 92.646; 90
938.42Fan, Zhoulong; Cai, Xinpei; Sheng, Tao; Yu, Jin-Quan
Synthesis of bicyclo[3.2.0]heptane lactones via a ligand-enabled Pd-catalyzed C(sp3)–H activation cascade
Chemical Science, 2025, 16, 9436-9440
1574551 CIFC47 H54 O10 P2 S2P -110.742; 19.392; 24.568
112.731; 90.393; 102.666
4581Gu, Haoran; Tong, Yao; Xu, Hongli; Wang, Cheng; Xu, Bowei; Geng, Dongling; Bu, Laju; Ye, Long; Deng, Yunfeng; Geng, Yanhou
A cathode interlayer based on an indandione-terminated quinoidal compound enables 19% efficiency in binary organic solar cells.
Materials horizons, 2025, 12, 5380-5387
1574552 CIF
Paper
C9 H9 Cl OP 1 21/c 15.4485; 20.347; 7.486
90; 102.123; 90
811.4Sonneck, Marcel; Spannenberg, Anke; Wohlrab, Sebastian; Peppel, Tim
3-Chloropropiophenone
IUCrData, 2025, 10, x250349
1574553 CIFC21 H23 Br N2 O2P 1 21/n 19.43; 9.489; 21.189
90; 93.651; 90
1892.2Casselman, Tyler D.; Madhusudhanan, Mithun C.; Mai, Binh Khanh; Liu, Peng; Stoltz, Brian M.
Potassium tert-butoxide mediated stereoselective/direct Mannich reaction of α-substituted-γ-lactams with in situ generated aryl N-silyl imines
Chemical Science, 2025, 16, 9863-9871
1574554 CIFC27 H27 Br N2 O2P 1 21/c 111.85; 49.858; 8.0771
90; 90.083; 90
4772.1Casselman, Tyler D.; Madhusudhanan, Mithun C.; Mai, Binh Khanh; Liu, Peng; Stoltz, Brian M.
Potassium tert-butoxide mediated stereoselective/direct Mannich reaction of α-substituted-γ-lactams with in situ generated aryl N-silyl imines
Chemical Science, 2025, 16, 9863-9871
1574555 CIFC26 H26 N2 O2P 1 21/c 119.64; 6.144; 17.135
90; 94.127; 90
2062.3Casselman, Tyler D.; Madhusudhanan, Mithun C.; Mai, Binh Khanh; Liu, Peng; Stoltz, Brian M.
Potassium tert-butoxide mediated stereoselective/direct Mannich reaction of α-substituted-γ-lactams with in situ generated aryl N-silyl imines
Chemical Science, 2025, 16, 9863-9871
1574556 CIFC14 H9 N3 O6 SeP 1 2/c 111.3555; 9.1502; 7.1692
90; 99.648; 90
734.38Zhang, Yu; Sun, Xiaotian; Wang, Weizhou
Strong supramolecular synthons assembled by hydrogen bonds and chalcogen bonds
CrystEngComm, 2025, 27, 3439-3443
1574557 CIFC12 H8 N2 O4 S SeP 1 21/c 13.8144; 22.357; 15.964
90; 93.581; 90
1358.7Zhang, Yu; Sun, Xiaotian; Wang, Weizhou
Strong supramolecular synthons assembled by hydrogen bonds and chalcogen bonds
CrystEngComm, 2025, 27, 3439-3443
1574558 CIFC14 H9 Br N2 O4 SeP 1 2/c 111.154; 9.184; 7.3865
90; 99.177; 90
747Zhang, Yu; Sun, Xiaotian; Wang, Weizhou
Strong supramolecular synthons assembled by hydrogen bonds and chalcogen bonds
CrystEngComm, 2025, 27, 3439-3443
1574559 CIFC14 H11 N3 O4 SeP 1 21/m 16.8417; 12.3348; 8.5209
90; 102.207; 90
702.83Zhang, Yu; Sun, Xiaotian; Wang, Weizhou
Strong supramolecular synthons assembled by hydrogen bonds and chalcogen bonds
CrystEngComm, 2025, 27, 3439-3443
1574560 CIFC15 H12 N2 O4 SeP 1 21/m 17.4596; 12.3445; 8.6525
90; 112.155; 90
737.94Zhang, Yu; Sun, Xiaotian; Wang, Weizhou
Strong supramolecular synthons assembled by hydrogen bonds and chalcogen bonds
CrystEngComm, 2025, 27, 3439-3443
1574561 CIFC11 H6 Br N O4 Se0.5P 1 21/m 13.8992; 37.6399; 7.7471
90; 95.702; 90
1131.38Zhang, Yu; Sun, Xiaotian; Wang, Weizhou
Strong supramolecular synthons assembled by hydrogen bonds and chalcogen bonds
CrystEngComm, 2025, 27, 3439-3443
1574562 CIFC24 H25 Cl N2 O7P 1 21/n 114.6695; 8.4232; 19.7536
90; 108.105; 90
2319.99Hirayama, Yuto; Ito, Akitaka; Ochi, Rika
Crystal structures of sandwich-type potassium cation complexes formed from benzo-15-crown-5-based ligand containing a chloromaleimide moiety
CrystEngComm, 2025, 27, 3214-3218
1574563 CIFC49.75 H61.3 Cl3 K N4 O18.15P -112.0536; 14.4733; 17.464
90.685; 105.563; 108.209
2772.69Hirayama, Yuto; Ito, Akitaka; Ochi, Rika
Crystal structures of sandwich-type potassium cation complexes formed from benzo-15-crown-5-based ligand containing a chloromaleimide moiety
CrystEngComm, 2025, 27, 3214-3218
1574564 CIFC48 H56 Cl3 K N4 O19.6P 1 21/n 115.1444; 23.9026; 15.8158
90; 103.663; 90
5563.2Hirayama, Yuto; Ito, Akitaka; Ochi, Rika
Crystal structures of sandwich-type potassium cation complexes formed from benzo-15-crown-5-based ligand containing a chloromaleimide moiety
CrystEngComm, 2025, 27, 3214-3218
1574565 CIFC14 H24 N6 O7 S2P -17.294; 7.2975; 11.5957
100.092; 95.3125; 118.993
520.1Spencer, Rochelle B.; Yusov, Anna; Dillon, Alexandra M.; Tiwari, Akash; Arteaga, Oriol; Sburlati, Sophia; Whittaker, St John; Wu, Wantong; Chen, Sixian; Shtukenberg, Alexander G.; Ward, Michael D.; Kahr, Bart; Lee, Stephanie S.
Guest removal from ring-banded guanidinium organosulfonate hydrogen-bonded frameworks.
Nanoscale, 2025, 17, 13727-13736
1574566 CIFC35 H57 N9 O10P 1 21 116.67; 6.012; 40.37
90; 91.8; 90
4044Morimoto, Jumpei; Yokomine, Marin; Shiratori, Yota; Ueda, Takumi; Nakamuro, Takayuki; Takaba, Kiyofumi; Maki-Yonekura, Saori; Umezawa, Koji; Miyanishi, Koichiro; Fukuda, Yasuhiro; Watanabe, Takumu; Suga, Mayuko; Inayoshi, Ayumi; Yoshida, Takuya; Mizukami, Wataru; Takeuchi, Koh; Yonekura, Koji; Nakamura, Eiichi; Sando, Shinsuke
Bottom-up design of peptide shapes in water using oligomers of N-methyl-l/d-alanine
Chemical Science, 2025, 16, 10512-10522
1574567 CIFC15 H27 N3 O4P 1 21 16.4996; 10.573; 12.7837
90; 93.148; 90
877.17Morimoto, Jumpei; Yokomine, Marin; Shiratori, Yota; Ueda, Takumi; Nakamuro, Takayuki; Takaba, Kiyofumi; Maki-Yonekura, Saori; Umezawa, Koji; Miyanishi, Koichiro; Fukuda, Yasuhiro; Watanabe, Takumu; Suga, Mayuko; Inayoshi, Ayumi; Yoshida, Takuya; Mizukami, Wataru; Takeuchi, Koh; Yonekura, Koji; Nakamura, Eiichi; Sando, Shinsuke
Bottom-up design of peptide shapes in water using oligomers of N-methyl-l/d-alanine
Chemical Science, 2025, 16, 10512-10522
1574568 CIFC19 H34 N4 O5P 21 21 216.3004; 12.6013; 31.7505
90; 90; 90
2520.8Morimoto, Jumpei; Yokomine, Marin; Shiratori, Yota; Ueda, Takumi; Nakamuro, Takayuki; Takaba, Kiyofumi; Maki-Yonekura, Saori; Umezawa, Koji; Miyanishi, Koichiro; Fukuda, Yasuhiro; Watanabe, Takumu; Suga, Mayuko; Inayoshi, Ayumi; Yoshida, Takuya; Mizukami, Wataru; Takeuchi, Koh; Yonekura, Koji; Nakamura, Eiichi; Sando, Shinsuke
Bottom-up design of peptide shapes in water using oligomers of N-methyl-l/d-alanine
Chemical Science, 2025, 16, 10512-10522
1574569 CIFC38 H68 N8 O10P 21 21 215.9846; 22.8259; 31.5688
90; 90; 90
4312.42Morimoto, Jumpei; Yokomine, Marin; Shiratori, Yota; Ueda, Takumi; Nakamuro, Takayuki; Takaba, Kiyofumi; Maki-Yonekura, Saori; Umezawa, Koji; Miyanishi, Koichiro; Fukuda, Yasuhiro; Watanabe, Takumu; Suga, Mayuko; Inayoshi, Ayumi; Yoshida, Takuya; Mizukami, Wataru; Takeuchi, Koh; Yonekura, Koji; Nakamura, Eiichi; Sando, Shinsuke
Bottom-up design of peptide shapes in water using oligomers of N-methyl-l/d-alanine
Chemical Science, 2025, 16, 10512-10522
1574570 CIFC4 H8 Br4 Cu5 N O8C 1 2/m 111.4744; 11.478; 12.5186
90; 103.243; 90
1604.9Abusa, Yao; Greenfield, Joshua; Viswanathan, Gayatri; Goswami, Smitakshi; Ross, Emma; Yox, Philip; Oppong, Richeal; Ojo, Iyanu; Liu, Jifeng; Ozarowski, Andrew; Kovnir, Kirill
A competition between 2D and 3D magnetic orderings in novel mixed valent copper frameworks
Chemical Science, 2025, 16, 11027-11038
1574571 CIFC4 H4 Br4 Cu5 K O8C 1 2/m 111.3847; 11.3964; 12.3227
90; 103.363; 90
1555.52Abusa, Yao; Greenfield, Joshua; Viswanathan, Gayatri; Goswami, Smitakshi; Ross, Emma; Yox, Philip; Oppong, Richeal; Ojo, Iyanu; Liu, Jifeng; Ozarowski, Andrew; Kovnir, Kirill
A competition between 2D and 3D magnetic orderings in novel mixed valent copper frameworks
Chemical Science, 2025, 16, 11027-11038
1574572 CIFC8 H8 Br8 Cu10 O16 Rb2C 1 2/m 111.4433; 11.455; 12.605
90; 103.207; 90
1608.6Abusa, Yao; Greenfield, Joshua; Viswanathan, Gayatri; Goswami, Smitakshi; Ross, Emma; Yox, Philip; Oppong, Richeal; Ojo, Iyanu; Liu, Jifeng; Ozarowski, Andrew; Kovnir, Kirill
A competition between 2D and 3D magnetic orderings in novel mixed valent copper frameworks
Chemical Science, 2025, 16, 11027-11038
1574573 CIFC4 H4 Br4 Cu5 Na O8P 1 21/c 112.1357; 11.1746; 11.1684
90; 103.214; 90
1474.46Abusa, Yao; Greenfield, Joshua; Viswanathan, Gayatri; Goswami, Smitakshi; Ross, Emma; Yox, Philip; Oppong, Richeal; Ojo, Iyanu; Liu, Jifeng; Ozarowski, Andrew; Kovnir, Kirill
A competition between 2D and 3D magnetic orderings in novel mixed valent copper frameworks
Chemical Science, 2025, 16, 11027-11038
1574574 CIFC32 H26 N6P b c a9.0736; 14.8909; 19.28
90; 90; 90
2605Seinfeld, Mathilde; Rouillon, Jean; Rullan, Raphael; Jeanneau, Erwann; Steinmann, Stephan N.; Andraud, Chantal; Le Bahers, Tangui; Monnereau, Cyrille
Stereoselective synthesis of heterocyclic tetraphenylethylene analogues with configuration-dependent solid-state luminescence
Chemical Science, 2025, 16, 10523-10531
1574575 CIFC68 H68 N8P -17.7794; 9.85; 18.6746
78.986; 81.955; 71.468
1326.95Seinfeld, Mathilde; Rouillon, Jean; Rullan, Raphael; Jeanneau, Erwann; Steinmann, Stephan N.; Andraud, Chantal; Le Bahers, Tangui; Monnereau, Cyrille
Stereoselective synthesis of heterocyclic tetraphenylethylene analogues with configuration-dependent solid-state luminescence
Chemical Science, 2025, 16, 10523-10531
1574576 CIFC42 H44 N6 O4C 1 2 172.2732; 9.2167; 24.9319
90; 92.577; 90
16590.9Li, Zhipeng; Zhang, Jingyang; Zhu, Wanmeng; Wang, Tianyi; Tang, Yefeng; Wang, Jian
N-Heterocyclic carbene-catalyzed enantioselective (dynamic) kinetic resolution for the assembly of inherently chiral macrocycles
Chemical Science, 2025, 16, 11021-11026
1574577 CIFC83 H76 Cl3 F6 N2 O6 P2 Rh2 S2P -113.6732; 15.7373; 17.8565
91.328; 91.152; 102.706
3746Litle, Elishua D.; Bedajna, Shantabh; Gabbaï, François P.
L/Z-ligand type amphoterism of an acridinium unit
Chemical Science, 2025, 16, 10852-10856
1574578 CIFC33 H25 Cl F3 N O3 P Rh SC 1 2/c 127.264; 9.5891; 22.664
90; 93.997; 90
5910.8Litle, Elishua D.; Bedajna, Shantabh; Gabbaï, François P.
L/Z-ligand type amphoterism of an acridinium unit
Chemical Science, 2025, 16, 10852-10856
1574579 CIFC41 H41 Cl F3 N3 O4 P Rh SP 1 21/n 113.056; 12.3746; 25.291
90; 102.588; 90
3987.9Litle, Elishua D.; Bedajna, Shantabh; Gabbaï, François P.
L/Z-ligand type amphoterism of an acridinium unit
Chemical Science, 2025, 16, 10852-10856
1574580 CIFC18 H31 N30 Na2 O13 PuP -19.559; 14.5429; 14.775
88.144; 74.108; 79.653
1943.02Bai, Zhuanling; Martelles, Madeline C.; Sperling, Joseph M.; Albrecht, Thomas E.
Unveiling the covalency of versatile Pu(iii)-N bonds in a unique plutonium(iii) complex
Chemical Science, 2025, 16, 10424-10431
1574581 CIFC91 H72 Cl N8 O3 ReP -120.0184; 21.3728; 22.6375
83.5455; 74.0558; 79.746
9143.4Varghese, Eldhose V.; Liu, Yi-Hung; Chen, Hsing-Yin; Li, Chien-Hung; Chen, Chia-Hsiang
Rhenium coordination-induced conformational modulation in nitrogen-doped nanographene
Chemical Science, 2025, 16, 9966-9977
1574582 CIFC98 H88 Cl3 N8 O3 ReC 1 2/c 124.578; 35.7337; 21.4113
90; 102.624; 90
18350.2Varghese, Eldhose V.; Liu, Yi-Hung; Chen, Hsing-Yin; Li, Chien-Hung; Chen, Chia-Hsiang
Rhenium coordination-induced conformational modulation in nitrogen-doped nanographene
Chemical Science, 2025, 16, 9966-9977
1574583 CIFC53 H47 Br2 N3 O4C 1 2/c 138.3843; 7.1312; 33.4701
90; 97.967; 90
9073.2Zhou, Qian; Feng, Mingxia; Shi, Caihong; Qian, Mengqiu; Ma, Xiurong; He, Runying; Meng, Xian; Shi, Yonggang; Cao, Qiue; Zheng, Liyan
Multiple stimulus modulated organic crystal polymorphs with tunable luminescence behavior
Chemical Science, 2025, 16, 9988-9997
1574584 CIFC52 H37 Br2 N3C 1 2/c 138.4139; 7.1583; 33.7745
90; 98.265; 90
9190.8Zhou, Qian; Feng, Mingxia; Shi, Caihong; Qian, Mengqiu; Ma, Xiurong; He, Runying; Meng, Xian; Shi, Yonggang; Cao, Qiue; Zheng, Liyan
Multiple stimulus modulated organic crystal polymorphs with tunable luminescence behavior
Chemical Science, 2025, 16, 9988-9997
1574585 CIFC52 H37 Br2 N3C 1 2/c 138.581; 7.1035; 33.75
90; 98.022; 90
9159Zhou, Qian; Feng, Mingxia; Shi, Caihong; Qian, Mengqiu; Ma, Xiurong; He, Runying; Meng, Xian; Shi, Yonggang; Cao, Qiue; Zheng, Liyan
Multiple stimulus modulated organic crystal polymorphs with tunable luminescence behavior
Chemical Science, 2025, 16, 9988-9997
1574586 CIFC73 H56 Cl N6 Pd2P -113.1747; 15.032; 15.0828
87.387; 80.397; 77.998
2880.6Xue, Minying; To, Wai-Pong; Cheng, Gang; Zhang, Yuzhen; Tang, Zhou; Du, Lili; Low, Kam-Hung; Wan, Qingyun; Che, Chi-Ming
3MMLCT excited states of luminescent binuclear PdII complexes: excited state inner-sphere electron-transfer reactions and application
Chemical Science, 2025, 16, 10701-10713
1574587 CIFC80 H98 N6 Pt2P 1 21/c 117.465; 19.39; 20.394
90; 97.86; 90
6841Xue, Minying; To, Wai-Pong; Cheng, Gang; Zhang, Yuzhen; Tang, Zhou; Du, Lili; Low, Kam-Hung; Wan, Qingyun; Che, Chi-Ming
3MMLCT excited states of luminescent binuclear PdII complexes: excited state inner-sphere electron-transfer reactions and application
Chemical Science, 2025, 16, 10701-10713
1574588 CIFC52 H42 N10 Pd2C 1 2/c 119.9715; 17.5055; 13.1183
90; 109.737; 90
4316.9Xue, Minying; To, Wai-Pong; Cheng, Gang; Zhang, Yuzhen; Tang, Zhou; Du, Lili; Low, Kam-Hung; Wan, Qingyun; Che, Chi-Ming
3MMLCT excited states of luminescent binuclear PdII complexes: excited state inner-sphere electron-transfer reactions and application
Chemical Science, 2025, 16, 10701-10713
1574589 CIFC59 H54 Cl2 N6 Pd2P 112.4062; 12.6181; 19.276
102.182; 95.522; 118.581
2520.9Xue, Minying; To, Wai-Pong; Cheng, Gang; Zhang, Yuzhen; Tang, Zhou; Du, Lili; Low, Kam-Hung; Wan, Qingyun; Che, Chi-Ming
3MMLCT excited states of luminescent binuclear PdII complexes: excited state inner-sphere electron-transfer reactions and application
Chemical Science, 2025, 16, 10701-10713
1574590 CIFC69 H72 Cl2 N6 Pd2C 1 2/c 128.787; 14.0679; 18.2253
90; 125.365; 90
6018.9Xue, Minying; To, Wai-Pong; Cheng, Gang; Zhang, Yuzhen; Tang, Zhou; Du, Lili; Low, Kam-Hung; Wan, Qingyun; Che, Chi-Ming
3MMLCT excited states of luminescent binuclear PdII complexes: excited state inner-sphere electron-transfer reactions and application
Chemical Science, 2025, 16, 10701-10713
1574591 CIFC48 H43 N9 Pd2P 1 21/c 120.022; 13.1386; 17.551
90; 114.783; 90
4191.8Xue, Minying; To, Wai-Pong; Cheng, Gang; Zhang, Yuzhen; Tang, Zhou; Du, Lili; Low, Kam-Hung; Wan, Qingyun; Che, Chi-Ming
3MMLCT excited states of luminescent binuclear PdII complexes: excited state inner-sphere electron-transfer reactions and application
Chemical Science, 2025, 16, 10701-10713
1574592 CIFC16 H12P 21 21 216.4618; 7.8144; 22.3901
90; 90; 90
1130.59Bello-García, Jesús; Varela, Jesús A.; Saá, Carlos
Transition metal-free vs. metal-catalyzed cyclotrimerization of didehydro[8]annulenes (COTynes): a complex pathway to non-planar PAHs – Dewar benzenes vs. benzotri[8]annulenes
Chemical Science, 2025, 16, 10874-10880
1574593 CIFC24 H18P -19.4244; 9.6598; 10.1931
75.257; 82.012; 67.21
826.5Bello-García, Jesús; Varela, Jesús A.; Saá, Carlos
Transition metal-free vs. metal-catalyzed cyclotrimerization of didehydro[8]annulenes (COTynes): a complex pathway to non-planar PAHs – Dewar benzenes vs. benzotri[8]annulenes
Chemical Science, 2025, 16, 10874-10880
1574594 CIFC134 H134 Cl6 N28P -113.0765; 17.2821; 30.4781
75.352; 81.6; 71.934
6318.2Tang, Hua; Lu, Yuyang; Qian, Yongwei; Ge, Chenqi; Liu, Jiyong; Chen, Hongliang; Li, Hao
A conformationally adaptable tetrahedral cage with different guest encapsulation models
Chemical Science, 2025, 16, 10867-10873
1574595 CIFC169 H217 Cl10.02 N29 O5F d -3 :232.4774; 32.4774; 32.4774
90; 90; 90
34256.6Tang, Hua; Lu, Yuyang; Qian, Yongwei; Ge, Chenqi; Liu, Jiyong; Chen, Hongliang; Li, Hao
A conformationally adaptable tetrahedral cage with different guest encapsulation models
Chemical Science, 2025, 16, 10867-10873
1574596 CIFC155 H183 Cl3 Cs2 F12 N30 O15 S4P -115.9658; 16.1176; 33.451
81.578; 82.615; 84.009
8412.3Tang, Hua; Lu, Yuyang; Qian, Yongwei; Ge, Chenqi; Liu, Jiyong; Chen, Hongliang; Li, Hao
A conformationally adaptable tetrahedral cage with different guest encapsulation models
Chemical Science, 2025, 16, 10867-10873
1574597 CIFC18 H19 N3 SC 1 2 120.1236; 7.0187; 12.0117
90; 97.82; 90
1680.77Liu, Fayu; Guo, Yanqi; Lu, Weidong; Zhao, Xiaowei; Yin, Yanli; Jiang, Zhiyong
Precise construction of spiro stereocenters via enantioselective radical addition through modulating photocatalysis from redox to energy transfer
Chemical Science, 2025, 16, 10555-10562
1574598 CIFC22 H34 B2 O4P 1 21/c 113.1753; 15.5076; 12.1845
90; 115.425; 90
2248.4Hu, Jiefeng; Zhang, Kun; Wang, Jing; Huang, Mingming; Chen, Shuangru; Shi, Zhuangzhi; Marder, Todd B.
Synthesis of gem-di(boryl)cyclopropanes from non-activated olefins via Mn-photocatalyzed atom transfer radical addition
Chemical Science, 2025, 16, 10595-10601
1574599 CIFC26 H26 N4 O12 Zn2P 21 21 28.6082; 11.3392; 14.3006
90; 90; 90
1395.88Zheng, Hongrui; Wang, Qingqing; Wang, Fei; Li, Shangda; Zhang, Jian
Rational design of circularly polarized luminescence active chiral metal–organic frameworks for logic devices
Chemical Science, 2025, 16, 10742-10749
1574600 CIFC25 H23 N5 O12 Zn2P 21 21 28.5077; 11.3704; 14.5983
90; 90; 90
1412.18Zheng, Hongrui; Wang, Qingqing; Wang, Fei; Li, Shangda; Zhang, Jian
Rational design of circularly polarized luminescence active chiral metal–organic frameworks for logic devices
Chemical Science, 2025, 16, 10742-10749
1574601 CIFC26 H24.64 N4 O14 Zn2P 1 21 18.5192; 11.39; 15.0392
90; 92.267; 90
1458.17Zheng, Hongrui; Wang, Qingqing; Wang, Fei; Li, Shangda; Zhang, Jian
Rational design of circularly polarized luminescence active chiral metal–organic frameworks for logic devices
Chemical Science, 2025, 16, 10742-10749
1574602 CIFC2.6 H0.05 N0.4 O1.2 Zn0.2P 21 21 28.5952; 11.3099; 14.1931
90; 90; 90
1379.72Zheng, Hongrui; Wang, Qingqing; Wang, Fei; Li, Shangda; Zhang, Jian
Rational design of circularly polarized luminescence active chiral metal–organic frameworks for logic devices
Chemical Science, 2025, 16, 10742-10749
1574603 CIFC26 H24 N5 O12 Zn2P 21 21 211.3801; 8.5624; 14.6534
90; 90; 90
1427.84Zheng, Hongrui; Wang, Qingqing; Wang, Fei; Li, Shangda; Zhang, Jian
Rational design of circularly polarized luminescence active chiral metal–organic frameworks for logic devices
Chemical Science, 2025, 16, 10742-10749
1574604 CIFC24 H22 N4 O14 Zn2P 1 21 18.5446; 11.378; 14.9531
90; 92.073; 90
1452.8Zheng, Hongrui; Wang, Qingqing; Wang, Fei; Li, Shangda; Zhang, Jian
Rational design of circularly polarized luminescence active chiral metal–organic frameworks for logic devices
Chemical Science, 2025, 16, 10742-10749
1574605 CIFC172 H142 Au15 B O3 P6 S4P -116.8358; 21.2426; 24.1864
84.4; 77.881; 89.447
8416.3Zhu, Chen; Li, Bo; Li, Chen; Lu, Luyao; Li, Hao; Yuan, Xinhua; Kang, Xi; Jiang, De-en; Zhu, Manzhou
Arylation of gold nanoclusters and insights into structure-related CO2 reduction reaction performances
Chemical Science, 2025, 16, 10273-10281
1574606 CIFC172 H136 Au15 B F6 O3 P6 S4P -116.7395; 22.413; 23.67
99.314; 101.816; 97.815
8445.3Zhu, Chen; Li, Bo; Li, Chen; Lu, Luyao; Li, Hao; Yuan, Xinhua; Kang, Xi; Jiang, De-en; Zhu, Manzhou
Arylation of gold nanoclusters and insights into structure-related CO2 reduction reaction performances
Chemical Science, 2025, 16, 10273-10281
1574607 CIFC148 H120 Au15 Cl2 O3 P6 S4P -120.472; 21.4293; 22.513
115.818; 93.462; 90.36
8868.6Zhu, Chen; Li, Bo; Li, Chen; Lu, Luyao; Li, Hao; Yuan, Xinhua; Kang, Xi; Jiang, De-en; Zhu, Manzhou
Arylation of gold nanoclusters and insights into structure-related CO2 reduction reaction performances
Chemical Science, 2025, 16, 10273-10281
1574608 CIFC32 H23 B Cl PP -19.851; 10.45; 24.6569
102.218; 95.717; 90.27
2467.55Frey, Nathan C.; Sarkar, Samir Kumar; Dickie, Diane A.; Molino, Andrew; Gilliard, Robert J.
Borinine-FLP ring expansion: isolation of eight-membered B–P rings bridged by μ2 chalcogenide and chloronium ions
Chemical Science, 2025, 16, 10857-10866
1574609 CIFC32 H23 B Cl P SP -110.5356; 10.8441; 11.7844
92.322; 97.327; 107.799
1266.93Frey, Nathan C.; Sarkar, Samir Kumar; Dickie, Diane A.; Molino, Andrew; Gilliard, Robert J.
Borinine-FLP ring expansion: isolation of eight-membered B–P rings bridged by μ2 chalcogenide and chloronium ions
Chemical Science, 2025, 16, 10857-10866
1574610 CIFC32 H23 B Cl P SeP -110.2944; 11.0077; 13.5352
112.771; 99.45; 106.35
1290.76Frey, Nathan C.; Sarkar, Samir Kumar; Dickie, Diane A.; Molino, Andrew; Gilliard, Robert J.
Borinine-FLP ring expansion: isolation of eight-membered B–P rings bridged by μ2 chalcogenide and chloronium ions
Chemical Science, 2025, 16, 10857-10866
1574611 CIFC140 H115 B4 O3 P4 S2P 1 21/c 119.9273; 23.9626; 23.7599
90; 108.182; 90
10779.1Frey, Nathan C.; Sarkar, Samir Kumar; Dickie, Diane A.; Molino, Andrew; Gilliard, Robert J.
Borinine-FLP ring expansion: isolation of eight-membered B–P rings bridged by μ2 chalcogenide and chloronium ions
Chemical Science, 2025, 16, 10857-10866
1574612 CIFC32 H23 B Cl O PP -110.3156; 10.4528; 12.703
92.231; 109.039; 105.061
1238.79Frey, Nathan C.; Sarkar, Samir Kumar; Dickie, Diane A.; Molino, Andrew; Gilliard, Robert J.
Borinine-FLP ring expansion: isolation of eight-membered B–P rings bridged by μ2 chalcogenide and chloronium ions
Chemical Science, 2025, 16, 10857-10866
1574613 CIFC135 H100 B4 O2 P4C 1 2/c 121.7774; 19.7933; 25.0274
90; 98.776; 90
10661.7Frey, Nathan C.; Sarkar, Samir Kumar; Dickie, Diane A.; Molino, Andrew; Gilliard, Robert J.
Borinine-FLP ring expansion: isolation of eight-membered B–P rings bridged by μ2 chalcogenide and chloronium ions
Chemical Science, 2025, 16, 10857-10866
1574614 CIFC140 H116 B4 O3 P4 Se2P 1 21/c 119.994; 23.911; 23.8368
90; 108.362; 90
10815.6Frey, Nathan C.; Sarkar, Samir Kumar; Dickie, Diane A.; Molino, Andrew; Gilliard, Robert J.
Borinine-FLP ring expansion: isolation of eight-membered B–P rings bridged by μ2 chalcogenide and chloronium ions
Chemical Science, 2025, 16, 10857-10866
1574615 CIFC138 H97 B4 Cl2 F13 N2 O8 P4 S4P -112.9579; 14.3772; 18.444
74.792; 71.244; 63.367
2879.91Frey, Nathan C.; Sarkar, Samir Kumar; Dickie, Diane A.; Molino, Andrew; Gilliard, Robert J.
Borinine-FLP ring expansion: isolation of eight-membered B–P rings bridged by μ2 chalcogenide and chloronium ions
Chemical Science, 2025, 16, 10857-10866
1574616 CIFC63 H48 N12 O6 ZnP 1 21/n 19.5187; 20.2959; 27.6279
90; 97.854; 90
5287.4Wang, Rongqi; Wang, Ruxue; Chen, Zeqin; Li, Laiwen; Zong, Xinyu; Wang, Jing; Zong, Ziao
A stable Zn-coordination polymer for the quantitative and selective detection of biomarker phenylglyoxylic acid in urine.
Analytical methods : advancing methods and applications, 2025, 17, 4639-4645
1574617 CIFC47 H76 Al K N2 O Si2P -114.4106; 15.4214; 24.1204
101.438; 105.322; 103.955
4816.59Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574618 CIFC58 H106 Al K N2 O7 Si2P 1 21/n 116.7297; 22.5628; 17.7034
90; 104.568; 90
6467.64Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574619 CIFC94 H152 Al2 K2 N4 O2 Si4C 1 2/c 122.4566; 18.6939; 23.7291
90; 107.299; 90
9510.91Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574620 CIFC60 H102 Al K N2 O7 Si2P n m a13.527; 23.8483; 20.0037
90; 90; 90
6453.11Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574621 CIFC59 H99 Al F K N2 O7 Si2P n m a13.3496; 23.9758; 20.1328
90; 90; 90
6443.9Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574622 CIFC60.5 H112 Al K N2 O7 Si2P 1 21/n 115.8565; 22.3423; 19.5531
90; 102.317; 90
6767.6Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574623 CIFC74 H130 Al K N2 O7 Si2P 1 21/n 114.8101; 24.0778; 22.5799
90; 98.984; 90
7953.1Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574624 CIFC60 H102 Al K N2 O7 Si2P n m a13.527; 23.8483; 20.0037
90; 90; 90
6453.11Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574625 CIFC151 H177 Al2 K2 N4 O4P 1 2/n 120.4545; 14.2108; 45.7301
90; 96.745; 90
13200.6Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574626 CIFC175 H253 Al2 K2 N4 O16 Si4P -111.5727; 26.0715; 28.9632
88.405; 79.773; 89.78
8596.53Kallmeier, Fabian; Nelmes, Gareth R.; McMullin, Claire L.; Edwards, Alison J.; Hicks, Jamie
Enhancing the nucleophilicity of aluminyl anions: targeting selective C–H activation
Chemical Science, 2025, 16, 10750-10758
1574627 CIFC43 H51 Cl2 Co N3I -4 2 d22.7671; 22.7671; 14.8686
90; 90; 90
7707Wang, Yizhou; Wang, Zheng; Zhang, Qiuyue; Wang, Quanchao; Solan, Gregory A.; Duan, Xuelei; Ma, Yanping; Gao, Jiahao; Zhou, Zhe; Sun, Wen-Hua
Ultra-low-molecular-weight PE wax using a cyclohexyl-fused bis(imino)pyridine-cobalt catalyst functionalized with a remote para-phenyl group
Polymer Chemistry, 2025, 16, 2718-2731
1574628 CIFC37 H39 Cl2 Co N3F d d 233.7269; 32.778; 14.0568
90; 90; 90
15539.8Wang, Yizhou; Wang, Zheng; Zhang, Qiuyue; Wang, Quanchao; Solan, Gregory A.; Duan, Xuelei; Ma, Yanping; Gao, Jiahao; Zhou, Zhe; Sun, Wen-Hua
Ultra-low-molecular-weight PE wax using a cyclohexyl-fused bis(imino)pyridine-cobalt catalyst functionalized with a remote para-phenyl group
Polymer Chemistry, 2025, 16, 2718-2731
1574629 CIF
Paper
C18 H23 F N2 O6 SC 1 c 113.271; 13.904; 11.206
90; 105.547; 90
1992.1Abdul Manan, Mohd Abdul Fatah; Cordes, David B.
tert-Butyl [(4-fluoro-3-isopropoxyisoxazol-5-yl)methyl](phenylsulfonyl)carbamate
IUCrData, 2025, 10, x250385
1574630 CIF
Paper
C10 H15 N OP b c a9.5469; 8.983; 21.8191
90; 90; 90
1871.2Detert, Heiner; Schollmeyer, Dieter
N-[(1Z)-Cyclodec-5-yn-1-ylidene]hydroxylamine
IUCrData, 2025, 10, x250414
1574631 CIF
Paper
C16 H16 N2 O3P 1 21/n 15.5676; 33.185; 7.6949
90; 90.325; 90
1421.7Uppu, Rao M.; Agu, Ogad A.; Babu, Sainath; Mensah, Patrick F.; Fronczek, Frank R.
N,N′-[Oxybis(benzene-4,1-diyl)]diacetamide
IUCrData, 2025, 10, x250384
1574632 CIF
Paper
C10 H9 Br OP -15.5734; 8.1618; 10.6194
98.577; 96.441; 102.546
461Sonneck, Marcel; Spannenberg, Anke; Wohlrab, Sebastian; Peppel, Tim
(E)-1-(4-Bromophenyl)but-2-en-1-one
IUCrData, 2025, 10, x250415
1574633 CIF
Paper
C8 H8 N4 Se2P 1 21/n 17.2217; 15.6664; 8.4925
90; 90.11; 90
960.82Schollmeyer, Dieter; Detert, Heiner
4,12-Diselena-5,6,13,14-tetraazatricyclo[9.3.0.03,7]tetradeca-1(11),3(7),5,13-tetraene
IUCrData, 2025, 10, x250324
1574634 CIF
Paper
C21 H14 Br N3 O3P -17.4809; 10.5655; 12.0412
97.593; 104.947; 94.357
905.43Naghiyev, Farid N.; Hökelek, Tuncer; Khrustalev, Victor N.; Khalilov, Ali N.; Belay, Alebel N.
2′-Amino-5′-benzoyl-5-bromo-6′-methyl-2-oxospiro[indoline-3,4′-pyran]-3′-carbonitrile
IUCrData, 2025, 10, x250374
1574635 CIF
Paper
C48 H64 Cl4 N6 ZnP 1 21/c 114.0683; 18.4885; 17.7569
90; 93.407; 90
4610.44Ichimaru, Yoshimi; Kato, Koichi; Jin, Wanchun; Kurihara, Masaaki; Kurosaki, Hiromasa
Bis[5-(anthracen-9-ylmethyl)-1,5,9-triazacyclododecan-1-ium] tetrachloridozincate
IUCrData, 2025, 10, x250356
1574636 CIFC27 H26 Br Cl Co N7 O5P -19.1862; 12.1495; 14.5113
111.807; 96.893; 100.568
1446.42Kukreti, Prashant; Chauhan, Rahul; Ghosh, Kaushik
A passage from pincer complexes to rationally designed phosphine-free Co(iii) catalysts supported by a pentadentate ligand for activation of alcohols: studies on sp3 C–H alkylation of 9H-fluorene and quinoline synthesis
Catalysis Science & Technology, 2025, 15, 3816-3826
1574637 CIFC50 H46 Cl4 Co2 N12 O10P -18.6873; 16.7926; 18.9662
85.258; 76.904; 86.461
2683Kukreti, Prashant; Chauhan, Rahul; Ghosh, Kaushik
A passage from pincer complexes to rationally designed phosphine-free Co(iii) catalysts supported by a pentadentate ligand for activation of alcohols: studies on sp3 C–H alkylation of 9H-fluorene and quinoline synthesis
Catalysis Science & Technology, 2025, 15, 3816-3826
1574638 CIFC13 H16 O2P 1 21 18.9792; 6.2593; 11.4802
90; 111.827; 90
598.97Shao, Sufang; Yuan, Yang; Schmoll, Alban; Wu, Xiao-Feng
Copper-catalyzed asymmetric carbonylative hydroallylation of vinylarenes
Chemical Science, 2025, 16, 10951-10956
1574639 CIFC6 H14 Br3 Mn N OP 21 21 217.7707; 8.041; 19.5459
90; 90; 90
1221.31Wang, Fei; Li, Xingjun; Chen, Tianqi; Wang, Liqing; Li, Chenliang; Zhang, Wei; Yuan, Wen; Lu, Shan; Li, Lina; Chen, Xueyuan
A strategy of chiral cation coordination to achieve a large luminescence dissymmetry factor in 1D hybrid manganese halides
Chemical Science, 2025, 16, 11012-11020
1574640 CIFC6 H14 Br3 Mn N OP 21 21 217.7824; 8.0325; 19.5413
90; 90; 90
1221.57Wang, Fei; Li, Xingjun; Chen, Tianqi; Wang, Liqing; Li, Chenliang; Zhang, Wei; Yuan, Wen; Lu, Shan; Li, Lina; Chen, Xueyuan
A strategy of chiral cation coordination to achieve a large luminescence dissymmetry factor in 1D hybrid manganese halides
Chemical Science, 2025, 16, 11012-11020
1574641 CIFC9 H23 Cd5 N37 O10P 63/m m c13.099; 13.099; 13.416
90; 90; 120
1993.56Wang, Jia-Wen; Fan, Shu-Cong; Yuan, Wenyu; Wang, Ying; Zhai, Quan-Guo
Inter-cluster-linker-absence-enabled sub-Ångstrom pore modulation in a metal–organic framework for multi-scenario CO2 capture
Chemical Science, 2025, 16, 11447-11455
1574642 CIFC76 H186 Ag19 O28 P12 Rh Se24P 1 21/n 130.227; 17.3463; 33.229
90; 112.607; 90
16084Chiu, Tzu-Hao; Pillay, Michael N.; Kahlal, Samia; Saillard, Jean-Yves; Liu, C. W.
Rhodium-silver superatomic nanoclusters stabilized by diselenophosphate ligands.
Nanoscale, 2025, 17, 13502-13509
1574643 CIFC72 H169 Ag20 O24 P12 Rh Se24I 2 332.578; 32.578; 32.578
90; 90; 90
34576Chiu, Tzu-Hao; Pillay, Michael N.; Kahlal, Samia; Saillard, Jean-Yves; Liu, C. W.
Rhodium-silver superatomic nanoclusters stabilized by diselenophosphate ligands.
Nanoscale, 2025, 17, 13502-13509
1574644 CIFC72 H168 Ag21 O24 P12 Rh Se24P -116.0696; 18.3134; 29.837
81.936; 76.8308; 64.9124
7733.7Chiu, Tzu-Hao; Pillay, Michael N.; Kahlal, Samia; Saillard, Jean-Yves; Liu, C. W.
Rhodium-silver superatomic nanoclusters stabilized by diselenophosphate ligands.
Nanoscale, 2025, 17, 13502-13509
1574645 CIFC98 H104 In4 O70 Ti12P -4 21 c19.7706; 19.7706; 15.9534
90; 90; 90
6235.81Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574646 CIFC92 H112 In4 O78 Ti12P -4 21 c19.6806; 19.6806; 15.9007
90; 90; 90
6158.8Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574647 CIFC92 H68 In4 N12 O88 Ti12P 1 21/n 118.855; 16.9266; 31.0947
90; 103.552; 90
9647.6Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574648 CIFC106 H114 In4 O66 Ti12P 1 21/n 126.2798; 20.9981; 31.0613
90; 107.447; 90
16351.9Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574649 CIFC96 H87 F12 In4 O68 Ti12P 1 21/n 119.908; 22.5594; 32.932
90; 104.374; 90
14327.2Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574650 CIFC36 H41 B N2P 1 21/n 111.5762; 19.2982; 13.3269
90; 99.97; 90
2932.3Zhang, Chonghe; Dabringhaus, Philipp; Tra, Bi Youan E.; Gilliard, Robert J.; Cummins, Christopher C.
Hexamethylbenzene elimination enables the generation of transient, sterically unhindered multiply bonded boron species
Chemical Science, 2025, 16, 11841-11848
1574651 CIFC18 H15 B N4P 1 21/n 15.7579; 15.6788; 16.3799
90; 94.763; 90
1473.62Zhang, Chonghe; Dabringhaus, Philipp; Tra, Bi Youan E.; Gilliard, Robert J.; Cummins, Christopher C.
Hexamethylbenzene elimination enables the generation of transient, sterically unhindered multiply bonded boron species
Chemical Science, 2025, 16, 11841-11848
1574652 CIFC35 H44 B NP 1 21/n 110.2681; 17.857; 15.4419
90; 100.302; 90
2785.74Zhang, Chonghe; Dabringhaus, Philipp; Tra, Bi Youan E.; Gilliard, Robert J.; Cummins, Christopher C.
Hexamethylbenzene elimination enables the generation of transient, sterically unhindered multiply bonded boron species
Chemical Science, 2025, 16, 11841-11848
1574653 CIFC28 H34 B N OP 1 21/c 111.0019; 13.4954; 16.5173
90; 100.269; 90
2413.1Zhang, Chonghe; Dabringhaus, Philipp; Tra, Bi Youan E.; Gilliard, Robert J.; Cummins, Christopher C.
Hexamethylbenzene elimination enables the generation of transient, sterically unhindered multiply bonded boron species
Chemical Science, 2025, 16, 11841-11848
1574654 CIFC78 H76 B2 N6P -110.8373; 12.1312; 13.6657
84.39; 72.008; 68.497
1589.59Zhang, Chonghe; Dabringhaus, Philipp; Tra, Bi Youan E.; Gilliard, Robert J.; Cummins, Christopher C.
Hexamethylbenzene elimination enables the generation of transient, sterically unhindered multiply bonded boron species
Chemical Science, 2025, 16, 11841-11848
1574655 CIFC37 H43 B N2 OC 1 2/c 120.64; 13.099; 22.222
90; 96.787; 90
5965.9Zhang, Chonghe; Dabringhaus, Philipp; Tra, Bi Youan E.; Gilliard, Robert J.; Cummins, Christopher C.
Hexamethylbenzene elimination enables the generation of transient, sterically unhindered multiply bonded boron species
Chemical Science, 2025, 16, 11841-11848
1574656 CIFC72 H64 B3 F15 N2P -113.063; 15.942; 21.12
92.077; 107.094; 109.231
3926Zhang, Chonghe; Dabringhaus, Philipp; Tra, Bi Youan E.; Gilliard, Robert J.; Cummins, Christopher C.
Hexamethylbenzene elimination enables the generation of transient, sterically unhindered multiply bonded boron species
Chemical Science, 2025, 16, 11841-11848
1574657 CIFC45 H50 B N3P 1 21/c 117.458; 14.7741; 16.2688
90; 104.417; 90
4064Zhang, Chonghe; Dabringhaus, Philipp; Tra, Bi Youan E.; Gilliard, Robert J.; Cummins, Christopher C.
Hexamethylbenzene elimination enables the generation of transient, sterically unhindered multiply bonded boron species
Chemical Science, 2025, 16, 11841-11848
1574658 CIFC15 H16 O3C 1 2 122.8543; 7.3211; 19.097
90; 126.949; 90
2553.6Pereira, Joan; Casaretto, Nicolas; Frison, Gilles; Nay, Bastien
Bio-inspired total synthesis of daphnepapytone A
Chemical Science, 2025, 16, 11375-11380
1574659 CIFC15 H20 O3P 1 21 17.2282; 14.1294; 13.1197
90; 90.972; 90
1339.7Pereira, Joan; Casaretto, Nicolas; Frison, Gilles; Nay, Bastien
Bio-inspired total synthesis of daphnepapytone A
Chemical Science, 2025, 16, 11375-11380
1574660 CIFC15 H18 O2P 21 21 217.7579; 19.141; 7.3717
90; 90; 90
2505.7Pereira, Joan; Casaretto, Nicolas; Frison, Gilles; Nay, Bastien
Bio-inspired total synthesis of daphnepapytone A
Chemical Science, 2025, 16, 11375-11380
1574661 CIFC15 H18 O3P 327.6126; 7.6126; 18.9125
90; 90; 120
949.17Pereira, Joan; Casaretto, Nicolas; Frison, Gilles; Nay, Bastien
Bio-inspired total synthesis of daphnepapytone A
Chemical Science, 2025, 16, 11375-11380
1574662 CIFC15 H18 O2P 21 21 219.7955; 10.5156; 12.1712
90; 90; 90
1253.7Pereira, Joan; Casaretto, Nicolas; Frison, Gilles; Nay, Bastien
Bio-inspired total synthesis of daphnepapytone A
Chemical Science, 2025, 16, 11375-11380
1574663 CIFC15 H18 O2P 1 21 19.4319; 5.7056; 23.0001
90; 95.478; 90
1232.09Pereira, Joan; Casaretto, Nicolas; Frison, Gilles; Nay, Bastien
Bio-inspired total synthesis of daphnepapytone A
Chemical Science, 2025, 16, 11375-11380
1574664 CIFC21 H34 O2 SiP 17.43; 10.0076; 14.9814
96.641; 101.339; 99.843
1063.22Pereira, Joan; Casaretto, Nicolas; Frison, Gilles; Nay, Bastien
Bio-inspired total synthesis of daphnepapytone A
Chemical Science, 2025, 16, 11375-11380
1574665 CIFC15 H16 O3P 21 21 218.8918; 10.034; 13.7443
90; 90; 90
1226.27Pereira, Joan; Casaretto, Nicolas; Frison, Gilles; Nay, Bastien
Bio-inspired total synthesis of daphnepapytone A
Chemical Science, 2025, 16, 11375-11380
1574666 CIFC19 H18 N2 O6 SP -18.2636; 10.5834; 12.5316
72.073; 74.008; 67.285
946.44Morales-Ortega, Guillermo; Merino, Estíbaliz; Carreras, Javier
Visible-light-initiated metal-free Csp3–Csp3 to Csp3–N conversion in homobenzylic sulfonamides with N-iodoimides
Chemical Science, 2025, 16, 11413-11418
1574667 CIFC12 H36 K4 O4 Si4F -4 3 c17.5314; 17.5314; 17.5314
90; 90; 90
5388.28Yang, Xiao; Davison, Nathan; Lowe, Matthew E.; Waddell, Paul G.; Armstrong, Roly J.; McMullin, Claire L.; Hopkinson, Matthew N.; Lu, Erli
CO methylenation mediated by organo-alkali metal reagents: metal identity and ligand effects
Chemical Science, 2025, 16, 11151-11160
1574668 CIFC82 H112 K4 O4 Si4P -112.8781; 16.8307; 19.5417
100.859; 90.423; 94.841
4143.76Yang, Xiao; Davison, Nathan; Lowe, Matthew E.; Waddell, Paul G.; Armstrong, Roly J.; McMullin, Claire L.; Hopkinson, Matthew N.; Lu, Erli
CO methylenation mediated by organo-alkali metal reagents: metal identity and ligand effects
Chemical Science, 2025, 16, 11151-11160
1574669 CIFC44 H68 B10 Bi I N4 Si2P 1 21/c 113.6332; 18.0507; 21.0915
90; 95.283; 90
5168.33Xu, Jian; Yao, Shenglai; Postils, Verònica; Matito, Eduard; Lorent, Christian; Driess, Matthias
Isolable monoatomic monovalent bismuth complexes with a redox non-innocent bis-silylenyl carborane ligand
Chemical Science, 2025, 16, 10826-10832
1574670 CIFC88 H160 B20 Bi2 K2 N8 O6 Si4P -110.0567; 14.8404; 19.9981
70.8; 86.199; 84.365
2803.2Xu, Jian; Yao, Shenglai; Postils, Verònica; Matito, Eduard; Lorent, Christian; Driess, Matthias
Isolable monoatomic monovalent bismuth complexes with a redox non-innocent bis-silylenyl carborane ligand
Chemical Science, 2025, 16, 10826-10832
1574671 CIFC33 H56 B10 Bi F3 N4 O3 S Si2P 1 21/n 115.6606; 10.1951; 27.7238
90; 93.696; 90
4417.21Xu, Jian; Yao, Shenglai; Postils, Verònica; Matito, Eduard; Lorent, Christian; Driess, Matthias
Isolable monoatomic monovalent bismuth complexes with a redox non-innocent bis-silylenyl carborane ligand
Chemical Science, 2025, 16, 10826-10832
1574672 CIFC46 H72 B10 Bi N4 Si2C m c m23.2329; 18.601; 13.6308
90; 90; 90
5890.6Xu, Jian; Yao, Shenglai; Postils, Verònica; Matito, Eduard; Lorent, Christian; Driess, Matthias
Isolable monoatomic monovalent bismuth complexes with a redox non-innocent bis-silylenyl carborane ligand
Chemical Science, 2025, 16, 10826-10832
1574673 CIFC36 H61 B10 Bi Cl2 F6 N4 O6 S2 Si2P 1 21/n 116.1469; 18.081; 18.3593
90; 98.144; 90
5306Xu, Jian; Yao, Shenglai; Postils, Verònica; Matito, Eduard; Lorent, Christian; Driess, Matthias
Isolable monoatomic monovalent bismuth complexes with a redox non-innocent bis-silylenyl carborane ligand
Chemical Science, 2025, 16, 10826-10832
1574674 CIFC35 H12 N5 O16 ZrP 1 21/c 114.6563; 21.5556; 11.8123
90; 102.996; 90
3636.2Li, Ying-Lin; Li, Ning; Mei, Zhi-Bin; Li, Jun-Rong; Yao, Su-Juan; Yu, Fei; Li, Shun-Li; Lin, Jiao-Min; Liu, Jiang; Lan, Ya-Qian
Achieving highly efficient carbon radical-mediated cross-coupling reaction in a confined radical microenvironment within a metal–organic framework
Chemical Science, 2025, 16, 11939-11948
1574675 CIFC38 H19 Hf0.99 N6 O17P 1 21/c 114.6361; 21.52; 11.8409
90; 103.015; 90
3633.7Li, Ying-Lin; Li, Ning; Mei, Zhi-Bin; Li, Jun-Rong; Yao, Su-Juan; Yu, Fei; Li, Shun-Li; Lin, Jiao-Min; Liu, Jiang; Lan, Ya-Qian
Achieving highly efficient carbon radical-mediated cross-coupling reaction in a confined radical microenvironment within a metal–organic framework
Chemical Science, 2025, 16, 11939-11948
1574676 CIFC12 H23 N14 O16 YF d d 267.056; 6.1193; 11.4807
90; 90; 90
4710.9Zhang, Jing; Liu, Yuxiao; Wang, Fangyan; Gong, Pifu; Li, Zhaoyi; Zhang, Xinyuan; Liang, Fei; Guo, Shu; Hu, Zhanggui; Wu, Yicheng
“Three functions in one”: multifunctional rare-earth cyamelurates with magnetism, luminescence, and giant optical nonlinearity
Chemical Science, 2025, 16, 10983-10989
1574677 CIFC12 H23 Lu N14 O16F d d 266.982; 6.1537; 11.6511
90; 90; 90
4802.4Zhang, Jing; Liu, Yuxiao; Wang, Fangyan; Gong, Pifu; Li, Zhaoyi; Zhang, Xinyuan; Liang, Fei; Guo, Shu; Hu, Zhanggui; Wu, Yicheng
“Three functions in one”: multifunctional rare-earth cyamelurates with magnetism, luminescence, and giant optical nonlinearity
Chemical Science, 2025, 16, 10983-10989
1574678 CIFC12 H23 Gd N14 O16F d d 267.4247; 6.1474; 11.6319
90; 90; 90
4821.27Zhang, Jing; Liu, Yuxiao; Wang, Fangyan; Gong, Pifu; Li, Zhaoyi; Zhang, Xinyuan; Liang, Fei; Guo, Shu; Hu, Zhanggui; Wu, Yicheng
“Three functions in one”: multifunctional rare-earth cyamelurates with magnetism, luminescence, and giant optical nonlinearity
Chemical Science, 2025, 16, 10983-10989
1574679 CIFC8 H21 Br N OP 1 21/c 19.06; 10.028; 13.559
90; 109.52; 90
1161.1Li, Anze; Zhao, Zihao; Yang, Guangxin; Zhang, Qiang; Chen, Xiang; Yuan, Wang Zhang
Polymorphism and phase transformation tuned luminescence and mechanistic insights in nonconventional luminophores
Chemical Science, 2025, 16, 11530-11538
1574680 CIFC16 H38 Br2 N2P b c a11.9427; 11.6291; 28.3098
90; 90; 90
3931.75Li, Anze; Zhao, Zihao; Yang, Guangxin; Zhang, Qiang; Chen, Xiang; Yuan, Wang Zhang
Polymorphism and phase transformation tuned luminescence and mechanistic insights in nonconventional luminophores
Chemical Science, 2025, 16, 11530-11538
1574681 CIFC20 H44 I2 N4P -17.1074; 9.9391; 10.6725
66.333; 86.755; 85.466
688.09Li, Anze; Zhao, Zihao; Yang, Guangxin; Zhang, Qiang; Chen, Xiang; Yuan, Wang Zhang
Polymorphism and phase transformation tuned luminescence and mechanistic insights in nonconventional luminophores
Chemical Science, 2025, 16, 11530-11538
1574682 CIFC16 H38 I2 N2C 1 2/c 118.646; 13.3913; 14.6422
90; 135.346; 90
2569.6Li, Anze; Zhao, Zihao; Yang, Guangxin; Zhang, Qiang; Chen, Xiang; Yuan, Wang Zhang
Polymorphism and phase transformation tuned luminescence and mechanistic insights in nonconventional luminophores
Chemical Science, 2025, 16, 11530-11538
1574683 CIFC14 H38 Br2 N2 O2P 1 21/n 17.9725; 10.1116; 12.9668
90; 103.377; 90
1016.95Li, Anze; Zhao, Zihao; Yang, Guangxin; Zhang, Qiang; Chen, Xiang; Yuan, Wang Zhang
Polymorphism and phase transformation tuned luminescence and mechanistic insights in nonconventional luminophores
Chemical Science, 2025, 16, 11530-11538
1574684 CIFC14 H34 Br2 N2P 1 21/n 15.8652; 12.012; 13.5766
90; 98.999; 90
944.74Li, Anze; Zhao, Zihao; Yang, Guangxin; Zhang, Qiang; Chen, Xiang; Yuan, Wang Zhang
Polymorphism and phase transformation tuned luminescence and mechanistic insights in nonconventional luminophores
Chemical Science, 2025, 16, 11530-11538
1574685 CIFC16 H38 I2 N2C 1 2/c 118.6422; 13.4664; 13.1607
90; 128.465; 90
2586.9Li, Anze; Zhao, Zihao; Yang, Guangxin; Zhang, Qiang; Chen, Xiang; Yuan, Wang Zhang
Polymorphism and phase transformation tuned luminescence and mechanistic insights in nonconventional luminophores
Chemical Science, 2025, 16, 11530-11538
1574686 CIFC32 H20 N4 O2P -414.1034; 14.1034; 11.6089
90; 90; 90
2309.08Yagami, Ryota; Xu, Wei; Kobayashi, Toi; Nagata, Yuuya; Kumagai, Naoya
iso-TEtraQuinoline (i-TEQ): an inherently chiral N4 macrocyclic quinoline tetramer
Chemical Science, 2025, 16, 10714-10721
1574687 CIFC30 H17 Br N2 O3 SP n n a12.364; 35.4478; 13.1495
90; 90; 90
5763.12Yagami, Ryota; Xu, Wei; Kobayashi, Toi; Nagata, Yuuya; Kumagai, Naoya
iso-TEtraQuinoline (i-TEQ): an inherently chiral N4 macrocyclic quinoline tetramer
Chemical Science, 2025, 16, 10714-10721
1574688 CIFC50 H32 B2 F8 N4 O2 PdP 4/n c c :220.0536; 20.0536; 24.3689
90; 90; 90
9799.88Yagami, Ryota; Xu, Wei; Kobayashi, Toi; Nagata, Yuuya; Kumagai, Naoya
iso-TEtraQuinoline (i-TEQ): an inherently chiral N4 macrocyclic quinoline tetramer
Chemical Science, 2025, 16, 10714-10721
1574689 CIFC64 H40 N8P -111.2428; 12.0593; 16.9374
97.179; 90.825; 103.73
2210.96Yagami, Ryota; Xu, Wei; Kobayashi, Toi; Nagata, Yuuya; Kumagai, Naoya
iso-TEtraQuinoline (i-TEQ): an inherently chiral N4 macrocyclic quinoline tetramer
Chemical Science, 2025, 16, 10714-10721
1574690 CIFC52 H36 Cl4 N4 O2C 1 2/c 133.5543; 14.9016; 18.9507
90; 91.387; 90
9472.82Yagami, Ryota; Xu, Wei; Kobayashi, Toi; Nagata, Yuuya; Kumagai, Naoya
iso-TEtraQuinoline (i-TEQ): an inherently chiral N4 macrocyclic quinoline tetramer
Chemical Science, 2025, 16, 10714-10721
1574691 CIFC12 H15 N O2P 21 21 219.6701; 10.4891; 11.1372
90; 90; 90
1129.65Cheng, Yu; Zhao, Zihe; Xu, Xiaowei; Ren, Chunxiao; Wei, Xiaohui; Yang, Yanxiang; Li, Jin; Jiang, Daqiang; Zhang, Kunyu; Wang, Bin; Luo, Yi
Efficient synthesis of polylactide and copolymers under industrial conditions by multinuclear β-ketoimide zinc complexes
Polymer Chemistry, 2025, 16, 3030-3040
1574692 CIFC73 H86 Cl2 N4 O8 Zn4P 1 21 113.6104; 17.3943; 14.6731
90; 100.815; 90
3412.06Cheng, Yu; Zhao, Zihe; Xu, Xiaowei; Ren, Chunxiao; Wei, Xiaohui; Yang, Yanxiang; Li, Jin; Jiang, Daqiang; Zhang, Kunyu; Wang, Bin; Luo, Yi
Efficient synthesis of polylactide and copolymers under industrial conditions by multinuclear β-ketoimide zinc complexes
Polymer Chemistry, 2025, 16, 3030-3040
1574693 CIFC83 H84 Cl2 N6 O10 Zn4P -113.3644; 16.4964; 17.4218
76.404; 85.521; 84.815
3711.6Cheng, Yu; Zhao, Zihe; Xu, Xiaowei; Ren, Chunxiao; Wei, Xiaohui; Yang, Yanxiang; Li, Jin; Jiang, Daqiang; Zhang, Kunyu; Wang, Bin; Luo, Yi
Efficient synthesis of polylactide and copolymers under industrial conditions by multinuclear β-ketoimide zinc complexes
Polymer Chemistry, 2025, 16, 3030-3040
1574694 CIFC33 H25 B N2P 21 21 217.4246; 11.3666; 28.6369
90; 90; 90
2416.7Wu, Hao; Shi, Yi-Zhong; Li, Mo-Yuan; Fan, Xiao-Chun; Wang, Hui; Zhang, Tong-Yuan; Yu, Jia; Wang, Kai; Zhang, Xiao-Hong
Geometric control of multi-resonance backbone DABNA for narrowband deep-blue electroluminescence.
Materials horizons, 2025, 12, 5839-5845
1574695 CIFC46 H64 Cl2 O3P 1 21/n 113.12; 14.55; 22.23
90; 97.27; 90
4209.5Hillier, Bethany K.; de Clercq, Damon M.; Bortolussi, Stephen D. S.; Capomolla, Simona S.; Nielsen, Michael P.; Młodzikowska-Pieńko, Katarzyna; Gershoni-Poranne, Renana; Schmidt, Timothy W.; Peeks, Martin D.
Photoexcited and ground-state diradical(oid) character in a triquino[3]radialene
Chemical Science, 2025, 16, 11331-11338
1574696 CIFC14 I3 RbP m -3 m7.3138; 7.3138; 7.3138
90; 90; 90
391.23Li, Kai; Li, Zhi-Gang; Gong, Yong-Ji; Chen, Yong-Qiang; Li, Wei
Luminescent 3D chiral hybrid metal-halide perovskites for piezoelectric energy harvesting and ultrasound detection.
Materials horizons, 2025, 12, 6183-6188
1574697 CIFC14 I3 RbP m -3 m7.3079; 7.3079; 7.3079
90; 90; 90
390.281Li, Kai; Li, Zhi-Gang; Gong, Yong-Ji; Chen, Yong-Qiang; Li, Wei
Luminescent 3D chiral hybrid metal-halide perovskites for piezoelectric energy harvesting and ultrasound detection.
Materials horizons, 2025, 12, 6183-6188
1574698 CIFC7 H16 I3 N2 RbP 31 2 110.0749; 10.0749; 25.0784
90; 90; 120
2204.51Li, Kai; Li, Zhi-Gang; Gong, Yong-Ji; Chen, Yong-Qiang; Li, Wei
Luminescent 3D chiral hybrid metal-halide perovskites for piezoelectric energy harvesting and ultrasound detection.
Materials horizons, 2025, 12, 6183-6188
1574699 CIFC7 H16 I3 N2 RbP 31 2 110.0809; 10.0809; 25.1213
90; 90; 120
2210.91Li, Kai; Li, Zhi-Gang; Gong, Yong-Ji; Chen, Yong-Qiang; Li, Wei
Luminescent 3D chiral hybrid metal-halide perovskites for piezoelectric energy harvesting and ultrasound detection.
Materials horizons, 2025, 12, 6183-6188
1574700 CIFC26 H24 Br N O2P 1 21/c 112.1999; 8.1197; 22.711
90; 103.927; 90
2183.61Du, Hai-Wu; Jia, Jun-Song; Chen, Xiao-Yi; Yuan, Zhang-Yin; Lin, Jia-Ni; Li, Yu-Long; Yu, Qiong; Shu, Wei
Convergent and divergent synthesis of dihydroisoquinoline-1,4-diones enabled by a photocatalytic skeleton-editing [4 + 2] strategy
Chemical Science, 2025, 16, 11833-11840
1574701 CIFC26 H25 N O2P -113.8148; 17.2854; 19.668
79.694; 74.868; 68.162
4190.8Du, Hai-Wu; Jia, Jun-Song; Chen, Xiao-Yi; Yuan, Zhang-Yin; Lin, Jia-Ni; Li, Yu-Long; Yu, Qiong; Shu, Wei
Convergent and divergent synthesis of dihydroisoquinoline-1,4-diones enabled by a photocatalytic skeleton-editing [4 + 2] strategy
Chemical Science, 2025, 16, 11833-11840
1574702 CIFC48 H42 O7 P2 S2P -19.2113; 13.5991; 17.3584
98.176; 93.192; 106.95
2047.9Sun, Mingxia; Chen, Jia; Zhang, Ting; Xu, Wei; He, Jing; Zhang, Yunyun; Liu, Huifeng; Zhang, Shuang; Wang, Juanjuan; Li, Xin; Yang, Yali; Qiu, Hongdeng
Flexible phosphonium and sulfonate pair-to-pair self-assembled ionic organic single crystals for iodine capture
Chemical Science, 2025, 16, 11858-11869
1574703 CIFC50 H55 O11 P2 S2P 1 21/n 113.4375; 19.787; 18.4255
90; 106.827; 90
4689.4Sun, Mingxia; Chen, Jia; Zhang, Ting; Xu, Wei; He, Jing; Zhang, Yunyun; Liu, Huifeng; Zhang, Shuang; Wang, Juanjuan; Li, Xin; Yang, Yali; Qiu, Hongdeng
Flexible phosphonium and sulfonate pair-to-pair self-assembled ionic organic single crystals for iodine capture
Chemical Science, 2025, 16, 11858-11869
1574704 CIFC104 H98 O15 P4 S4P -110.5835; 14.1726; 17.216
70.458; 77.061; 71.936
2292.7Sun, Mingxia; Chen, Jia; Zhang, Ting; Xu, Wei; He, Jing; Zhang, Yunyun; Liu, Huifeng; Zhang, Shuang; Wang, Juanjuan; Li, Xin; Yang, Yali; Qiu, Hongdeng
Flexible phosphonium and sulfonate pair-to-pair self-assembled ionic organic single crystals for iodine capture
Chemical Science, 2025, 16, 11858-11869
1574705 CIFC188 H174 O33 P8 S8P 1 21/n 111.9946; 20.218; 17.2493
90; 99.561; 90
4125Sun, Mingxia; Chen, Jia; Zhang, Ting; Xu, Wei; He, Jing; Zhang, Yunyun; Liu, Huifeng; Zhang, Shuang; Wang, Juanjuan; Li, Xin; Yang, Yali; Qiu, Hongdeng
Flexible phosphonium and sulfonate pair-to-pair self-assembled ionic organic single crystals for iodine capture
Chemical Science, 2025, 16, 11858-11869
1574706 CIFC18 H18 O3 SC 1 2/c 119.0857; 5.32972; 31.1946
90; 92.5193; 90
3170.09Robert, Emma G. L.; Waser, Jerome
Enantioselective synthesis of 1,2-disubstituted thiocyclobutanes via Michael addition
Chemical Science, 2025, 16, 12115-12121
1574707 CIFC16 H17 N O5 SP 21 21 215.01559; 9.23324; 32.6513
90; 90; 90
1512.09Robert, Emma G. L.; Waser, Jerome
Enantioselective synthesis of 1,2-disubstituted thiocyclobutanes via Michael addition
Chemical Science, 2025, 16, 12115-12121
1574708 CIFC30 H59 Lu N4 O Si2P -110.8839; 12.7424; 14.5075
92.618; 111.642; 95.234
1855.52Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574709 CIFC30 H59 N4 O Si2 YbP -110.8997; 12.7508; 14.5651
92.614; 111.711; 95.266
1865.78Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574710 CIFC31 H55 B10 Dy N4 OP n m a19.6499; 12.8542; 14.7748
90; 90; 90
3731.9Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574711 CIFC31 H55 B10 Lu N4 OP n m a19.576; 12.8163; 14.6969
90; 90; 90
3687.3Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574712 CIFC30 H59 Er N4 O Si2P -110.9104; 12.7977; 14.5426
92.761; 111.614; 95.34
1872.1Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574713 CIFC30 H59 N4 O Si2 YP -110.9337; 12.8057; 14.5859
92.758; 111.668; 95.442
1881.72Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574714 CIFC30 H59 Dy N4 O Si2P -110.9353; 12.829; 14.6085
92.672; 111.785; 95.539
1886.6Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574715 CIFC31 H55 B10 N4 O YP n m a19.6514; 12.8413; 14.7801
90; 90; 90
3729.8Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574716 CIFC31 H55 B10 N4 O YbP n m a19.6191; 12.8389; 14.7285
90; 90; 90
3709.9Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574717 CIFC31 H55 B10 Er N4 OP n m a19.5; 12.603; 14.677
90; 90; 90
3607Chai, Fuxiang; Wu, Weikang; Rajeshkumar, Thayalan; Huang, Zeming; Yuan, Qingbing; Wei, Yun; Maron, Laurent; Wang, Shaowu
Unique selectivity of rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles
Chemical Science, 2025, 16, 11870-11887
1574718 CIF
Paper
C28 H18 N8 O4 Pt S4C 1 2/c 114.5669; 10.8981; 19.4595
90; 98.782; 90
3053Welton, Claire E.; Reinheimer, Eric W.; Smucker, Bradley W.
Bis(4,4′-bipyridin-1-ium) cis-bis(1,2-dicyano-2-sulfidoethene-1-sulfinato-κ2 S,S′)platinate(2−)
IUCrData, 2025, 10, x250383
1574719 CIFC19 H18 O3P b c a10.8872; 8.5462; 32.7304
90; 90; 90
3045.37Tang, Si-Yuan; Wang, Zhan-Jie; Wu, Jin-Jiao; Xing, Zhi-Xi; Du, Ze-Yi; Huang, Huan-Ming
Photocatalytic synthesis of 2-oxabicyclo[2.1.1]hexanes: cobalt-enhanced efficiency
Chemical Science, 2025, 16, 11908-11917
1574720 CIFC29 H35 B I2 N2P -18.2052; 10.8597; 16.6641
81.45; 76.195; 82.52
1419Mihm, Cornelius; Kar, Sourav; Sachs, Andreas; Duwe, Dario; Dewhurst, Rian D.; Braunschweig, Holger
Synthesis of symmetrical and unsymmetrical cyclic diborenes via NHC-directed C–H borylation
Chemical Science, 2025, 16, 11637-11643
1574721 CIFC51 H62 B2 Br2 N4P 1 21/c 17.8531; 15.449; 37.9294
90; 91.692; 90
4599.68Mihm, Cornelius; Kar, Sourav; Sachs, Andreas; Duwe, Dario; Dewhurst, Rian D.; Braunschweig, Holger
Synthesis of symmetrical and unsymmetrical cyclic diborenes via NHC-directed C–H borylation
Chemical Science, 2025, 16, 11637-11643
1574722 CIFC44 H54 B2 N4P 1 21/n 113.9101; 15.7838; 17.893
90; 104.378; 90
3805.44Mihm, Cornelius; Kar, Sourav; Sachs, Andreas; Duwe, Dario; Dewhurst, Rian D.; Braunschweig, Holger
Synthesis of symmetrical and unsymmetrical cyclic diborenes via NHC-directed C–H borylation
Chemical Science, 2025, 16, 11637-11643
1574723 CIFC31 H43 B N4P -114.1122; 14.2169; 16.813
97.552; 101.359; 101.845
3184.39Mihm, Cornelius; Kar, Sourav; Sachs, Andreas; Duwe, Dario; Dewhurst, Rian D.; Braunschweig, Holger
Synthesis of symmetrical and unsymmetrical cyclic diborenes via NHC-directed C–H borylation
Chemical Science, 2025, 16, 11637-11643
1574724 CIFC44 H56 B2 N4P -4 21 c18.9063; 18.9063; 23.2427
90; 90; 90
8308.06Mihm, Cornelius; Kar, Sourav; Sachs, Andreas; Duwe, Dario; Dewhurst, Rian D.; Braunschweig, Holger
Synthesis of symmetrical and unsymmetrical cyclic diborenes via NHC-directed C–H borylation
Chemical Science, 2025, 16, 11637-11643
1574725 CIFC66 H82 B3 I N6P 1 21/c 115.6024; 21.2733; 21.6009
90; 93.274; 90
7157.95Mihm, Cornelius; Kar, Sourav; Sachs, Andreas; Duwe, Dario; Dewhurst, Rian D.; Braunschweig, Holger
Synthesis of symmetrical and unsymmetrical cyclic diborenes via NHC-directed C–H borylation
Chemical Science, 2025, 16, 11637-11643
1574726 CIFC12 H14 N2 O3P -15.2172; 8.9168; 13.0925
79.389; 78.628; 76.805
575.14Paschke, Ann-Sophie K.; Schiele, Stefanie; Pinard, Camille; Sandrini, Filippo; Morandi, Bill
Chemodivergent C-to-N atom swap from benzofurans to benzisoxazoles and benzoxazoles
Chemical Science, 2025, 16, 11464-11467
1574727 CIFC13 H15 N O3P -15.2939; 10.5894; 11.1328
102.318; 100.925; 94.671
593.83Paschke, Ann-Sophie K.; Schiele, Stefanie; Pinard, Camille; Sandrini, Filippo; Morandi, Bill
Chemodivergent C-to-N atom swap from benzofurans to benzisoxazoles and benzoxazoles
Chemical Science, 2025, 16, 11464-11467
1574728 CIFC9 H7 N O3P 1 21/c 110.4696; 11.1571; 7.1041
90; 108.043; 90
789.03Paschke, Ann-Sophie K.; Schiele, Stefanie; Pinard, Camille; Sandrini, Filippo; Morandi, Bill
Chemodivergent C-to-N atom swap from benzofurans to benzisoxazoles and benzoxazoles
Chemical Science, 2025, 16, 11464-11467
1574729 CIFC45 H36 Cl4 F15 Fe N P2P 1 c 115.931; 15.9306; 18.5289
90; 89.979; 90
4702.5Sievers, Robin; Hartmann, Nick; Riemann, Paulin S.; Streit, Tim-Niclas; Malischewski, Moritz
Stimulus-responsive metallocenes: a photo/thermal switch enabled by the perfluorinated Cp* ligand
Chemical Science, 2025, 16, 11949-11953
1574730 CIFC15 H5 F15 RuP 1 21/c 17.3204; 15.6095; 14.6724
90; 90.01; 90
1676.58Sievers, Robin; Hartmann, Nick; Riemann, Paulin S.; Streit, Tim-Niclas; Malischewski, Moritz
Stimulus-responsive metallocenes: a photo/thermal switch enabled by the perfluorinated Cp* ligand
Chemical Science, 2025, 16, 11949-11953
1574731 CIFC22 H16 Cl2 F15 N3 RuP 1 21 111.6437; 11.1515; 12.204
90; 116.484; 90
1418.3Sievers, Robin; Hartmann, Nick; Riemann, Paulin S.; Streit, Tim-Niclas; Malischewski, Moritz
Stimulus-responsive metallocenes: a photo/thermal switch enabled by the perfluorinated Cp* ligand
Chemical Science, 2025, 16, 11949-11953
1574732 CIFC40 H22 N4C m c 2123.294; 16.771; 8.709
90; 90; 90
3402Dutta, Madhusudan; Chatterjee, Abhijit; Deka, Nilotpal; Tanwar, Riteeka; Mishra, Vishnu; Saha, Arindam; Mandal, Pankaj; Boomishankar, Ramamoorthy; Hazra, Partha
Steric hindrance modulated efficient thermally activated delayed fluorescence with non-linear optical, ferroelectric and piezoelectric properties
Chemical Science, 2025, 16, 11989-11998
1574733 CIFC56 H54 N4P 1 21/c 116.3865; 10.2297; 35.16
90; 103.138; 90
5739.6Dutta, Madhusudan; Chatterjee, Abhijit; Deka, Nilotpal; Tanwar, Riteeka; Mishra, Vishnu; Saha, Arindam; Mandal, Pankaj; Boomishankar, Ramamoorthy; Hazra, Partha
Steric hindrance modulated efficient thermally activated delayed fluorescence with non-linear optical, ferroelectric and piezoelectric properties
Chemical Science, 2025, 16, 11989-11998
1574734 CIFC88 H50 N8P -116.2336; 17.0377; 17.1281
66.243; 67.979; 89.261
3966Dutta, Madhusudan; Chatterjee, Abhijit; Deka, Nilotpal; Tanwar, Riteeka; Mishra, Vishnu; Saha, Arindam; Mandal, Pankaj; Boomishankar, Ramamoorthy; Hazra, Partha
Steric hindrance modulated efficient thermally activated delayed fluorescence with non-linear optical, ferroelectric and piezoelectric properties
Chemical Science, 2025, 16, 11989-11998
1574735 CIFC33 H31 N4C 1 2/c 122.1999; 10.492; 21.9787
90; 98.613; 90
5061.58Bartos, Paulina; Szamweber, Patrycja; Camargo, Bruno; Pietrzak, Anna; Kaszyński, Piotr
Photochemical synthesis of carbazole-fused Blatter radicals: effective spin injection to the carbazole system
Chemical Science, 2025, 16, 12139-12147
1574736 CIFC25 H14 N4 OP 1 21/n 17.4588; 23.524; 19.4019
90; 92.652; 90
3400.6Bartos, Paulina; Szamweber, Patrycja; Camargo, Bruno; Pietrzak, Anna; Kaszyński, Piotr
Photochemical synthesis of carbazole-fused Blatter radicals: effective spin injection to the carbazole system
Chemical Science, 2025, 16, 12139-12147
1574737 CIFC106 H171 Ca2 N7 OP -112.6865; 13.1676; 16.5859
82.572; 88.483; 63.757
2462.78Thum, Stefan; Mai, Jonathan; Schmidt, Marcel A.; Langer, Jens; Harder, Sjoerd
Reductive cyclotrimerization of CO and isonitriles with a highly reactive CaI synthon
Chemical Science, 2025, 16, 12058-12067
1574738 CIFC82 H130 Ca N5P -113.598; 14.8279; 21.9613
75.108; 77.232; 64.237
3823.4Thum, Stefan; Mai, Jonathan; Schmidt, Marcel A.; Langer, Jens; Harder, Sjoerd
Reductive cyclotrimerization of CO and isonitriles with a highly reactive CaI synthon
Chemical Science, 2025, 16, 12058-12067
1574739 CIFC87 H139 Ca N5P -113.482; 16.3223; 20.27
68.531; 87.284; 76.379
4030.6Thum, Stefan; Mai, Jonathan; Schmidt, Marcel A.; Langer, Jens; Harder, Sjoerd
Reductive cyclotrimerization of CO and isonitriles with a highly reactive CaI synthon
Chemical Science, 2025, 16, 12058-12067
1574740 CIFC83 H123 Ca N5P 1 21/c 117.1763; 17.4722; 26.166
90; 108.952; 90
7426.9Thum, Stefan; Mai, Jonathan; Schmidt, Marcel A.; Langer, Jens; Harder, Sjoerd
Reductive cyclotrimerization of CO and isonitriles with a highly reactive CaI synthon
Chemical Science, 2025, 16, 12058-12067
1574741 CIFC184 H294 Ca4 N8 O9P -118.2798; 18.3492; 27.9435
77.99; 77.694; 75.337
8740.62Thum, Stefan; Mai, Jonathan; Schmidt, Marcel A.; Langer, Jens; Harder, Sjoerd
Reductive cyclotrimerization of CO and isonitriles with a highly reactive CaI synthon
Chemical Science, 2025, 16, 12058-12067
1574742 CIFC49 H47 Fe3 N2 O18P b c a17.1268; 20.8958; 27.5204
90; 90; 90
9849Dhillon, Arshminder Kaur; Jhilta, Agrim; Ladhi, Ritu; Bagdwal, Harshita; Singh, Ashi; Verma, Rahul K.; Singh, Monika
A biomimetic Fe(III)-metal-organic framework nanosphere-based dual modal probe for aqueous and intracellular sensing of nicotine and its metabolite cotinine.
Nanoscale, 2025, 17, 14630-14636
1574743 CIFC18 H29 B F4 N3 RhC 1 2 120.6843; 8.2612; 15.1611
90; 117.168; 90
2304.9Böth, André; Kaltwasser, Florian; Priedigkeit, Christian; Atwi, Boshra; Frey, Wolfgang; Buchmeiser, Michael R.; Tallarek, Ulrich
Influence of the supported ionic-liquid layer thickness on Z-selectivity in 1-alkyne hydrosilylation under continuous flow
Catalysis Science & Technology, 2025, 15, 4012-4023
1574744 CIFC26 H31 B Cl2 F4 N3 RhP -19.756; 11.147; 13.527
75.446; 83.737; 73.626
1365Böth, André; Kaltwasser, Florian; Priedigkeit, Christian; Atwi, Boshra; Frey, Wolfgang; Buchmeiser, Michael R.; Tallarek, Ulrich
Influence of the supported ionic-liquid layer thickness on Z-selectivity in 1-alkyne hydrosilylation under continuous flow
Catalysis Science & Technology, 2025, 15, 4012-4023
1574745 CIFC20 H34 N2 O4C 1 2/c 126.4619; 6.3388; 26.1419
90; 101.877; 90
4291.08Zhang, Fangqing; Xu, Chun; Zhang, Zichun; Yang, Zhuang; Peng, Tao; Shao, Wen; Feng, Xiaoming; Liu, Yangbin
Synthesis of polysubstituted cyclobutanes through a photoredox strain-release/[3,3]-rearrangement cascade
Chemical Science, 2025, 16, 11508-11518
1574746 CIFC19 H24 N2 O2P 1 21/c 19.7265; 14.7461; 12.5014
90; 108.624; 90
1699.16Zhang, Fangqing; Xu, Chun; Zhang, Zichun; Yang, Zhuang; Peng, Tao; Shao, Wen; Feng, Xiaoming; Liu, Yangbin
Synthesis of polysubstituted cyclobutanes through a photoredox strain-release/[3,3]-rearrangement cascade
Chemical Science, 2025, 16, 11508-11518
1574747 CIFC320 H480 Au Cu56 O36 S44P a -333.347; 33.347; 33.347
90; 90; 90
37082.6Gratious, Saniya; Li, Bo; Mondal, Dipanjana; Kumar, Alok; Varghese, Dayona Aleyamma; Thomas, Jibin; Jiang, De-en; Kamble, Vinayak; Mandal, Sukhendu
Identifying the superatomic AuCu56 nanocluster through a ligand-exchange coupled metal-exchange induced transformation
Chemical Science, 2025, 16, 11849-11857
1574748 CIFC340 H254 Ce24 F30 N26 O96P -120.8735; 21.7898; 23.7135
63.3967; 73.8571; 62.094
8490.27Brown, Stephen E.; Pike, Sebastian D.
Photoabsorption of 1–2 nm molecular Ce-oxo nanoclusters versus ceria: intervalence charge transfer but no size effects
Chemical Science, 2025, 16, 11659-11668
1574749 CIFC400 H284 Ce24 N14 O96P b c n26.0526; 42.5286; 35.9018
90; 90; 90
39778.5Brown, Stephen E.; Pike, Sebastian D.
Photoabsorption of 1–2 nm molecular Ce-oxo nanoclusters versus ceria: intervalence charge transfer but no size effects
Chemical Science, 2025, 16, 11659-11668
1574750 CIFC92 H152 Ce4 N4 O24P 6514.1138; 14.1138; 93.9953
90; 90; 120
16215.3Brown, Stephen E.; Pike, Sebastian D.
Photoabsorption of 1–2 nm molecular Ce-oxo nanoclusters versus ceria: intervalence charge transfer but no size effects
Chemical Science, 2025, 16, 11659-11668
1574751 CIFC260 H170 Ce24 F30 N10 O96P -120.7633; 21.881899; 38.498501
84.238; 82.416; 84.442
17188.7Brown, Stephen E.; Pike, Sebastian D.
Photoabsorption of 1–2 nm molecular Ce-oxo nanoclusters versus ceria: intervalence charge transfer but no size effects
Chemical Science, 2025, 16, 11659-11668
1574752 CIFC300 H230 Ce24 N18 O96P 1 21/n 121.8344; 26.493099; 25.106501
90; 90.701; 90
14522Brown, Stephen E.; Pike, Sebastian D.
Photoabsorption of 1–2 nm molecular Ce-oxo nanoclusters versus ceria: intervalence charge transfer but no size effects
Chemical Science, 2025, 16, 11659-11668
1574753 CIFC315 H287 Ce24 N15 O126P 1 21/c 136.1757; 25.1668; 42.5226
90; 110.7; 90
36214.5Brown, Stephen E.; Pike, Sebastian D.
Photoabsorption of 1–2 nm molecular Ce-oxo nanoclusters versus ceria: intervalence charge transfer but no size effects
Chemical Science, 2025, 16, 11659-11668
1574754 CIFC365 H335 Ce24 N25 O96P -123.5031; 24.4019; 32.8406
90.467; 95.3987; 91.1491
18746.5Brown, Stephen E.; Pike, Sebastian D.
Photoabsorption of 1–2 nm molecular Ce-oxo nanoclusters versus ceria: intervalence charge transfer but no size effects
Chemical Science, 2025, 16, 11659-11668
1574755 CIFC400 H464 Ce24 N14 O96P 1 2/c 143.6537; 27.5054; 40.9209
90; 103.985; 90
47677.8Brown, Stephen E.; Pike, Sebastian D.
Photoabsorption of 1–2 nm molecular Ce-oxo nanoclusters versus ceria: intervalence charge transfer but no size effects
Chemical Science, 2025, 16, 11659-11668
1574756 CIFC7 H6 I Na O4 SP 1 21/c 120.6719; 6.0409; 8.4029
90; 97.775; 90
1039.68Xia, Zhen; Deng, Ting; Song, Chunlan; Li, Jiakun
Decarboxylative sulfation by persulfates
Chemical Science, 2025, 16, 11568-11573
1574757 CIFC26 H72 Cl6 N6 O27 Pr2P -19.9445; 11.2448; 13.1854
94.789; 109.861; 99.596
1351.64Faltejsek, Jan; Urbanovský, Peter; Kubíček, Vojtěch; Havlíčková, Jana; Císařová, Ivana; Kotek, Jan; Hermann, Petr
Extraordinary kinetic inertness of lanthanide(iii) complexes of pyridine-rigidified 18-membered hexaazamacrocycles with four acetate pendant arms.
Chemical science, 2025, 16, 12558-12567
1574758 CIFC26 H37 Eu N6 O11P 1 21/n 111.1441; 37.436; 14.4231
90; 90.594; 90
6016.9Faltejsek, Jan; Urbanovský, Peter; Kubíček, Vojtěch; Havlíčková, Jana; Císařová, Ivana; Kotek, Jan; Hermann, Petr
Extraordinary kinetic inertness of lanthanide(iii) complexes of pyridine-rigidified 18-membered hexaazamacrocycles with four acetate pendant arms.
Chemical science, 2025, 16, 12558-12567
1574759 CIFC26 H44 Cl4 N6 O11C 1 2/c 122.176; 12.8958; 12.8625
90; 109.236; 90
3473Faltejsek, Jan; Urbanovský, Peter; Kubíček, Vojtěch; Havlíčková, Jana; Císařová, Ivana; Kotek, Jan; Hermann, Petr
Extraordinary kinetic inertness of lanthanide(iii) complexes of pyridine-rigidified 18-membered hexaazamacrocycles with four acetate pendant arms.
Chemical science, 2025, 16, 12558-12567
1574760 CIFC18 H34 N6 O4P b a m21.9337; 5.4237; 9.0915
90; 90; 90
1081.54Faltejsek, Jan; Urbanovský, Peter; Kubíček, Vojtěch; Havlíčková, Jana; Císařová, Ivana; Kotek, Jan; Hermann, Petr
Extraordinary kinetic inertness of lanthanide(iii) complexes of pyridine-rigidified 18-membered hexaazamacrocycles with four acetate pendant arms.
Chemical science, 2025, 16, 12558-12567
1574761 CIFC26 H39 Cl2 N6 O11 PrC 1 2/c 116.5314; 19.3002; 9.6305
90; 93.348; 90
3067.5Faltejsek, Jan; Urbanovský, Peter; Kubíček, Vojtěch; Havlíčková, Jana; Císařová, Ivana; Kotek, Jan; Hermann, Petr
Extraordinary kinetic inertness of lanthanide(iii) complexes of pyridine-rigidified 18-membered hexaazamacrocycles with four acetate pendant arms.
Chemical science, 2025, 16, 12558-12567
1574762 CIFC26 H50 N6 O16P -112.6858; 12.9121; 20.6862
93.56; 96.977; 90.562
3356.3Faltejsek, Jan; Urbanovský, Peter; Kubíček, Vojtěch; Havlíčková, Jana; Císařová, Ivana; Kotek, Jan; Hermann, Petr
Extraordinary kinetic inertness of lanthanide(iii) complexes of pyridine-rigidified 18-membered hexaazamacrocycles with four acetate pendant arms.
Chemical science, 2025, 16, 12558-12567
1574763 CIFC26 H57 Eu N6 Na O21.5P -19.8498; 14.4593; 15.2054
71.824; 84.744; 85.628
2046.3Faltejsek, Jan; Urbanovský, Peter; Kubíček, Vojtěch; Havlíčková, Jana; Císařová, Ivana; Kotek, Jan; Hermann, Petr
Extraordinary kinetic inertness of lanthanide(iii) complexes of pyridine-rigidified 18-membered hexaazamacrocycles with four acetate pendant arms.
Chemical science, 2025, 16, 12558-12567
1574764 CIFC26 H42 Cl N6 O13 PrC 1 2/c 119.8316; 19.2254; 19.0053
90; 95.647; 90
7211Faltejsek, Jan; Urbanovský, Peter; Kubíček, Vojtěch; Havlíčková, Jana; Císařová, Ivana; Kotek, Jan; Hermann, Petr
Extraordinary kinetic inertness of lanthanide(iii) complexes of pyridine-rigidified 18-membered hexaazamacrocycles with four acetate pendant arms.
Chemical science, 2025, 16, 12558-12567
1574765 CIF
Paper
C15 H16 Cd Cl2 N4 SP 1 21/c 18.58301; 7.87355; 26.1616
90; 93.6036; 90
1764.47Parry, Christian S.; Kwabi-Addo, Bernard; Ramadhar, Timothy R.; Butcher, Raymond J.
Dichlorido{(E)-N,N-dimethyl-2-[phenyl(pyridin-2-yl)methylidene]hydrazine-1-carbothioamide}cadmium(II)
IUCrData, 2025, 10, x250464
1574766 CIF
Paper
C25 H20 N2 O2 S2P -19.1997; 15.1692; 16.7138
110.129; 100.749; 94.2372
2127.3Dassonneville, Benjamin; Detert, Heiner; Schollmeyer, Dieter
(3Z)-4-Methyl-9-(4-methylbenzenesulfonyl)-N-phenyl-3H,9H-thiopyrano[3,4-b]indol-3-imine
IUCrData, 2025, 10, x250475
1574767 CIF
Paper
C11 H17 N O21.294 Pr2P -19.9236; 10.3042; 12.9748
66.684; 80.942; 66.66
1118.69Khurshid, Aaqib; Rujiwatra, Apinpus; Chuasaard, Thammanoon
Poly[[tetraaqua(μ3-4-hydroxypyridine-2,6-dicarboxylato)di-μ2-oxalato-dipraseodymium(III)] 4.29-hydrate]
IUCrData, 2025, 10, x250456
1574768 CIF
Paper
C20 H20 Fe N2 O3P -19.244; 10.3415; 11.0093
65.358; 66.714; 81.236
878.59Nyapola, Carren; Juma, David O.; Zamisa, Sizwe J.; Njogu, Eric M.; Omondi, Bernard
2-Amino-4-ferrocenyl-5-oxo-5,6,7,8-tetrahydro-4H-chromene-3-carbonitrile monohydrate
IUCrData, 2025, 10, x250468
1574769 CIF
Paper
C15 H15 N O2C 1 2/c 116.418; 9.9205; 15.2137
90; 95.722; 90
2465.58He, Fang; Long, Sihui
2-Methyl-4-[(4-methylphenyl)amino]benzoic acid
IUCrData, 2025, 10, x250455
1574770 CIF
Paper
C14 H11 N3 O8 S2P 1 21/n 17.8421; 12.3037; 16.0821
90; 96.081; 90
1542.98Tsemeugne, Joseph; Djossu, Didier Forest Kouganou; Schollmeyer, Dieter; Mkounga, Pierre
2-Amino-6-nitro-1,3-benzothiazol-3-ium 3-carboxy-4-hydroxybenzene-1-sulfonate
IUCrData, 2025, 10, x250478
1574771 CIFC20 H26 Cr2 O20 S4P 1 21/c 111.006; 7.772; 18.214
90; 93.509; 90
1555.1Yang, Fan; Kong, Xiang-Jing; He, Tao; Zhang, Zhengqing; Wang, Ke; Du, Honglin; Cai, Guohong; Ju, Jing; Wang, Xiaoge; Li, Jian-Rong; Sun, Junliang; Zhong, Chongli
Solvent-free construction of Cr(iii)-sulfonate coordination polymers
Chemical Science, 2025, 16, 11823-11832
1574772 CIFC9 H10 Cr O11 S3P 1 21/c 19.9289; 9.5629; 15.88
90; 103.656; 90
1465.2Yang, Fan; Kong, Xiang-Jing; He, Tao; Zhang, Zhengqing; Wang, Ke; Du, Honglin; Cai, Guohong; Ju, Jing; Wang, Xiaoge; Li, Jian-Rong; Sun, Junliang; Zhong, Chongli
Solvent-free construction of Cr(iii)-sulfonate coordination polymers
Chemical Science, 2025, 16, 11823-11832
1574773 CIFC15 H17 Cr O13 S3P 1 21/c 111.0056; 23.4923; 7.6371
90; 97.235; 90
1958.83Yang, Fan; Kong, Xiang-Jing; He, Tao; Zhang, Zhengqing; Wang, Ke; Du, Honglin; Cai, Guohong; Ju, Jing; Wang, Xiaoge; Li, Jian-Rong; Sun, Junliang; Zhong, Chongli
Solvent-free construction of Cr(iii)-sulfonate coordination polymers
Chemical Science, 2025, 16, 11823-11832
1574774 CIFC12 H7 Cr O11 S2P 1 21/m 110.666; 6.555; 11.7
90; 92.118; 90
817.5Yang, Fan; Kong, Xiang-Jing; He, Tao; Zhang, Zhengqing; Wang, Ke; Du, Honglin; Cai, Guohong; Ju, Jing; Wang, Xiaoge; Li, Jian-Rong; Sun, Junliang; Zhong, Chongli
Solvent-free construction of Cr(iii)-sulfonate coordination polymers
Chemical Science, 2025, 16, 11823-11832
1574775 CIFC2.42 H2.12 N0.3 O0.12P -110.7014; 13.0096; 13.6186
90.271; 111.301; 98.392
1744.12Kumar, Ram; Singh, Bholey; Kakkar, Rita; Mittal, Avneesh; Pani, Balaram
Rhodamine-based turn-on fluorescent and colorimetric chemosensor for selective Pb<sup>2+</sup> detection: insights from crystal structure, molecular docking, real sample analysis, and logic gate applications.
Analytical methods : advancing methods and applications, 2025, 17, 4812-4830
1574776 CIFC189.15 H185.84 Cl24 N29.26 O3.62 Pd12P 1 21 114.31918; 51.9317; 19.4811
90; 91.266; 90
14483Tashiro, Shohei; Nakata, Kosuke; Hayashi, Ryunosuke; Shionoya, Mitsuhiko
Shape sorting of two distinct amino acid residues at the multiple binding sites of a porous metal-macrocycle framework.
Chemical science, 2025, 16, 12303-12308
1574777 CIFC190.16 H189.64 Cl24 N29.41 O3.18 Pd12P 1 21 114.31918; 51.9317; 19.4811
90; 91.266; 90
14483Tashiro, Shohei; Nakata, Kosuke; Hayashi, Ryunosuke; Shionoya, Mitsuhiko
Shape sorting of two distinct amino acid residues at the multiple binding sites of a porous metal-macrocycle framework.
Chemical science, 2025, 16, 12303-12308
1574778 CIFC205.13 H211.99 Cl24 N33.58 O8.86 Pd12P 1 21 114.3167; 52.183; 19.5516
90; 91.168; 90
14603.7Tashiro, Shohei; Nakata, Kosuke; Hayashi, Ryunosuke; Shionoya, Mitsuhiko
Shape sorting of two distinct amino acid residues at the multiple binding sites of a porous metal-macrocycle framework.
Chemical science, 2025, 16, 12303-12308
1574779 CIFC200.14 H203.01 Cl24 N31.63 O10.62 Pd12P 1 21 114.3191; 52.5328; 19.6294
90; 91.234; 90
14762.3Tashiro, Shohei; Nakata, Kosuke; Hayashi, Ryunosuke; Shionoya, Mitsuhiko
Shape sorting of two distinct amino acid residues at the multiple binding sites of a porous metal-macrocycle framework.
Chemical science, 2025, 16, 12303-12308
1574780 CIFC36 H12 O12 Zn3P 63/m m c20.8662; 20.8662; 3.1649
90; 90; 120
1193.38Zhang, Kimberly J.; Chen, Tianyang; Oppenheim, Julius J.; Yang, Luming; Palatinus, Lukáš; Müller, Peter; Van Voorhis, Troy; Dincă, Mircea
High-resolution structure of Zn<sub>3</sub>(HOTP)<sub>2</sub> (HOTP = hexaoxidotriphenylene), a three-dimensional conductive MOF.
Chemical science, 2025, 16, 12416-12420
1574781 CIFC36 H12 O12 Zn3P -6 2 c20.8662; 20.8662; 9.4948
90; 90; 120
3580.17Zhang, Kimberly J.; Chen, Tianyang; Oppenheim, Julius J.; Yang, Luming; Palatinus, Lukáš; Müller, Peter; Van Voorhis, Troy; Dincă, Mircea
High-resolution structure of Zn<sub>3</sub>(HOTP)<sub>2</sub> (HOTP = hexaoxidotriphenylene), a three-dimensional conductive MOF.
Chemical science, 2025, 16, 12416-12420
1574782 CIFBa O4 WI 41/a :25.61821; 5.61821; 12.7282
90; 90; 90
401.757Amitkumar R. Patil, Tukaram D. Dongale, Lahu D.Namade, Keshav Y. Rajpure
Resistive switching in spray-pyrolyzed BaWO4 thin films
Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025, 723, 137352
1574783 CIFC9 H12 N2 O2 SP -17.2268; 7.9865; 9.2053
103.537; 92.512; 108.209
486.72Knez, Damijan; Šterman, Andrej; Sosič, Izidor; Perdih, Franc; Nuñez, Gonzalo D.; Knaflič, Tilen; Arčon, Denis; Besora, Maria; Carbó, Jorge J.; Fernández, Elena; Časar, Zdenko
Access to amidines via C(sp2)–N coupling of trifluoroborate-iminiums with N-fluorobenzenesulfonimide
Chemical Science, 2025, 16, 12012-12023
1574784 CIFC16 H16 N2 O4 SP b c a7.626; 10.8033; 36.368
90; 90; 90
2996.21Knez, Damijan; Šterman, Andrej; Sosič, Izidor; Perdih, Franc; Nuñez, Gonzalo D.; Knaflič, Tilen; Arčon, Denis; Besora, Maria; Carbó, Jorge J.; Fernández, Elena; Časar, Zdenko
Access to amidines via C(sp2)–N coupling of trifluoroborate-iminiums with N-fluorobenzenesulfonimide
Chemical Science, 2025, 16, 12012-12023
1574785 CIFC13 H11 Cl N2 O2 SP 1 21/c 18.5033; 23.1754; 20.2967
90; 92.005; 90
3997.4Knez, Damijan; Šterman, Andrej; Sosič, Izidor; Perdih, Franc; Nuñez, Gonzalo D.; Knaflič, Tilen; Arčon, Denis; Besora, Maria; Carbó, Jorge J.; Fernández, Elena; Časar, Zdenko
Access to amidines via C(sp2)–N coupling of trifluoroborate-iminiums with N-fluorobenzenesulfonimide
Chemical Science, 2025, 16, 12012-12023
1574786 CIFC10 H12 N2 O2 SP 1 21/c 18.4203; 17.4676; 7.2129
90; 110.069; 90
996.47Knez, Damijan; Šterman, Andrej; Sosič, Izidor; Perdih, Franc; Nuñez, Gonzalo D.; Knaflič, Tilen; Arčon, Denis; Besora, Maria; Carbó, Jorge J.; Fernández, Elena; Časar, Zdenko
Access to amidines via C(sp2)–N coupling of trifluoroborate-iminiums with N-fluorobenzenesulfonimide
Chemical Science, 2025, 16, 12012-12023
1574787 CIFC11 H10 N2 O2 S2P 1 21/c 111.5242; 9.8469; 10.7702
90; 98.211; 90
1209.65Knez, Damijan; Šterman, Andrej; Sosič, Izidor; Perdih, Franc; Nuñez, Gonzalo D.; Knaflič, Tilen; Arčon, Denis; Besora, Maria; Carbó, Jorge J.; Fernández, Elena; Časar, Zdenko
Access to amidines via C(sp2)–N coupling of trifluoroborate-iminiums with N-fluorobenzenesulfonimide
Chemical Science, 2025, 16, 12012-12023
1574788 CIFC15 H16 N2 O3 SP 1 21 17.816; 5.549; 16.7197
90; 97.198; 90
719.43Knez, Damijan; Šterman, Andrej; Sosič, Izidor; Perdih, Franc; Nuñez, Gonzalo D.; Knaflič, Tilen; Arčon, Denis; Besora, Maria; Carbó, Jorge J.; Fernández, Elena; Časar, Zdenko
Access to amidines via C(sp2)–N coupling of trifluoroborate-iminiums with N-fluorobenzenesulfonimide
Chemical Science, 2025, 16, 12012-12023
1574789 CIFC14 H14 N2 O3 SP b c a14.3193; 7.0764; 27.0199
90; 90; 90
2737.9Knez, Damijan; Šterman, Andrej; Sosič, Izidor; Perdih, Franc; Nuñez, Gonzalo D.; Knaflič, Tilen; Arčon, Denis; Besora, Maria; Carbó, Jorge J.; Fernández, Elena; Časar, Zdenko
Access to amidines via C(sp2)–N coupling of trifluoroborate-iminiums with N-fluorobenzenesulfonimide
Chemical Science, 2025, 16, 12012-12023
1574790 CIFC14 H14 N2 O2 SP 1 21/c 18.5461; 23.147; 20.3641
90; 92.362; 90
4024.93Knez, Damijan; Šterman, Andrej; Sosič, Izidor; Perdih, Franc; Nuñez, Gonzalo D.; Knaflič, Tilen; Arčon, Denis; Besora, Maria; Carbó, Jorge J.; Fernández, Elena; Časar, Zdenko
Access to amidines via C(sp2)–N coupling of trifluoroborate-iminiums with N-fluorobenzenesulfonimide
Chemical Science, 2025, 16, 12012-12023
1574791 CIFC28 H27 N O2 SiP 21 21 217.4981; 16.7375; 18.9431
90; 90; 90
2377.3Corcoran, James C.; Zhu, Jin; Semenick, Mason A.; Welser, Anna L.; Wang, Yi-Ming
Intramolecular asymmetric propargylation of esters and imides: C-H functionalisation enables stereocontrolled access to UCS1025A.
Chemical science, 2025, 16, 12879-12884
1574792 CIFC23 H25 N O2 SiP 21 21 2110.7177; 11.995; 15.986
90; 90; 90
2055.1Corcoran, James C.; Zhu, Jin; Semenick, Mason A.; Welser, Anna L.; Wang, Yi-Ming
Intramolecular asymmetric propargylation of esters and imides: C-H functionalisation enables stereocontrolled access to UCS1025A.
Chemical science, 2025, 16, 12879-12884
1574793 CIFC2.77 H2.15 Cl0.15 F0.23 N0.08 O0.31C 1 c 123.2091; 10.1744; 14.2246
90; 113.837; 90
3072.45Mondal, Abdur Rouf Samim; Bapat, Nakul Abhay; Mishra, Harshita; Hari, Durga Prasad
Highly stereoselective synthesis of polysubstituted housanes and spiro-oxa-housanes: application and mechanistic insights.
Chemical science, 2025, 16, 12350-12361
1574794 CIFC34 H26 Cl N O5P 1 21/n 112.0072; 11.2445; 20.5394
90; 91.189; 90
2772.5Mondal, Abdur Rouf Samim; Bapat, Nakul Abhay; Mishra, Harshita; Hari, Durga Prasad
Highly stereoselective synthesis of polysubstituted housanes and spiro-oxa-housanes: application and mechanistic insights.
Chemical science, 2025, 16, 12350-12361
1574795 CIFC54 H40 F6 N2 O6P -111.3001; 13.4126; 16.3714
76.397; 75.85; 67.123
2189.3Mondal, Abdur Rouf Samim; Bapat, Nakul Abhay; Mishra, Harshita; Hari, Durga Prasad
Highly stereoselective synthesis of polysubstituted housanes and spiro-oxa-housanes: application and mechanistic insights.
Chemical science, 2025, 16, 12350-12361
1574796 CIFC24 H16 F4 O4P -18.5086; 10.3951; 11.77
94.161; 106.191; 91.831
995.62Mondal, Abdur Rouf Samim; Bapat, Nakul Abhay; Mishra, Harshita; Hari, Durga Prasad
Highly stereoselective synthesis of polysubstituted housanes and spiro-oxa-housanes: application and mechanistic insights.
Chemical science, 2025, 16, 12350-12361
1574797 CIFC37.12 H28.61 N1.12 O3.38R -3 :H35.3662; 35.3662; 9.9973
90; 90; 120
10829Mondal, Abdur Rouf Samim; Bapat, Nakul Abhay; Mishra, Harshita; Hari, Durga Prasad
Highly stereoselective synthesis of polysubstituted housanes and spiro-oxa-housanes: application and mechanistic insights.
Chemical science, 2025, 16, 12350-12361
1574798 CIFC14 H18 OP 1 21 113.8273; 7.352; 11.6565
90; 90.016; 90
1184.98Gonzalez, Elijah C.; de la Torre Roehl, Isabel M.; Stoltz, Brian M.
Concise total synthesis of the cage-like sesquiterpenoid (+)-daphnepapytone A
Chemical Science, 2025, 16, 11381-11385
1574799 CIFC15 H18 O2P 21 21 217.747; 19.054; 7.349
90; 90; 90
2485.1Gonzalez, Elijah C.; de la Torre Roehl, Isabel M.; Stoltz, Brian M.
Concise total synthesis of the cage-like sesquiterpenoid (+)-daphnepapytone A
Chemical Science, 2025, 16, 11381-11385
1574800 CIFC15 H18 O2P 21 21 219.7645; 10.4864; 12.1839
90; 90; 90
1247.56Gonzalez, Elijah C.; de la Torre Roehl, Isabel M.; Stoltz, Brian M.
Concise total synthesis of the cage-like sesquiterpenoid (+)-daphnepapytone A
Chemical Science, 2025, 16, 11381-11385
1574801 CIFB Ba S4 SbP n m a9.6601; 6.2154; 11.633
90; 90; 90
698.46Zhang, Ming-Zhi; Zhao, Yue; Hu, Chun-Li; Mao, Jiang-Gao
BaSbBS<sub>4</sub>: a record-high-performance birefringent crystal identified by a target-driven closed-loop strategy.
Chemical science, 2025, 16, 12577-12586
1574802 CIFC29 H40 O4P -110.6394; 10.7112; 23.9695
90.188; 102.38; 104.147
2582.7Sun, Ruikang; Zhang, Pei; Yan, Yong; Zhu, Jie; Chen, Qirui; Yang, Chi; Lin, Aijun; Li, Xuanyi; Gao, Shang; Yao, Hequan
Single-carbon-atom transfer to <i>para</i>-quinone methides from TMSCF<sub>2</sub>Br.
Chemical science, 2025, 16, 12324-12331
1574803 CIFC26 H27 N O2 SiP 1 21 112.9119; 7.906; 22.6326
90; 105.139; 90
2230.2Wu, Yichen; Qian, Hao-Yang; Zhang, Heng; Zou, Jian-Ye; Wu, Qing-Yan; Nie, Xiao-Xue; Zheng, Long; Peng, Qian; Wang, Peng
Rh-catalyzed enantioselective hydrosilylation of unactivated alkenes.
Chemical science, 2025, 16, 12594-12602
1574804 CIFC38 H46 B2 N2 O2C 1 2/c 114.2417; 14.4218; 16.509
90; 103.326; 90
3299.5Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574805 CIFC60 H72 B2 N2P b c a10.5812; 19.2594; 29.9453
90; 90; 90
6102.5Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574806 CIFC94 H136 B2 K2 N8 O14P 1 21/n 113.2016; 13.5917; 27.9529
90; 91.891; 90
5012.9Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574807 CIFC80 H86 B2 F8 N4 SbP -112.3898; 17.0733; 19.6357
109.541; 106.403; 93.078
3704.3Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574808 CIFC60 H72 B2 F6 N2 SbP 1 2/n 116.4468; 9.5691; 19.4316
90; 109.712; 90
2879Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574809 CIFC104 H160 B2 K2 N6 O14P 1 21/c 114.9184; 17.1615; 20.7225
90; 106.128; 90
5096.6Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574810 CIFC90 H114 B2 N4 O4P -111.1662; 11.7494; 15.5317
71.647; 84.332; 88.761
1924.5Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574811 CIFC76 H86 B2 Cl4 F12 N4 Sb2P 1 21/n 112.4457; 27.8277; 13.024
90; 95.719; 90
4488.2Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574812 CIFC72 H80 B2 F16 N2 Sb2P 1 21/n 111.1837; 32.5; 21.1355
90; 92.894; 90
7672.3Wang, Yuyi; Shi, Tao; Yue, Ling; Zhou, Guijiang; Su, Bochao
Carbene-stabilized 6,12-diboraanthanthrenes: unveiling the multistage redox properties of polycyclic aromatic hydrocarbons featuring electron-rich boron centers.
Chemical science, 2025, 16, 12510-12518
1574813 CIFC25 H20 N2 OP -110.0247; 10.519; 11.3139
111.372; 115.622; 95.402
955.68Guo, Weihan; Zhao, Hua; Wang, Mingda; Si, Leilei; Yang, Kaixin; Xia, Guomin; Wang, Hongming
Intramolecular tension-driven self-recovering mechanochromism in organic microcrystals.
Chemical science, 2025, 16, 13345-13351
1574814 CIFC27 H24 N2 OP 1 21/c 111.9874; 17.6677; 10.452
90; 105.409; 90
2134.06Guo, Weihan; Zhao, Hua; Wang, Mingda; Si, Leilei; Yang, Kaixin; Xia, Guomin; Wang, Hongming
Intramolecular tension-driven self-recovering mechanochromism in organic microcrystals.
Chemical science, 2025, 16, 13345-13351
1574815 CIFC27 H24 N2 O3P -111.4592; 11.52; 19.198
85.698; 85.659; 63.308
2255.4Guo, Weihan; Zhao, Hua; Wang, Mingda; Si, Leilei; Yang, Kaixin; Xia, Guomin; Wang, Hongming
Intramolecular tension-driven self-recovering mechanochromism in organic microcrystals.
Chemical science, 2025, 16, 13345-13351
1574816 CIFC25 H20 N2 OP -19.418; 10.444; 10.672
68.47; 74.62; 73.96
923Guo, Weihan; Zhao, Hua; Wang, Mingda; Si, Leilei; Yang, Kaixin; Xia, Guomin; Wang, Hongming
Intramolecular tension-driven self-recovering mechanochromism in organic microcrystals.
Chemical science, 2025, 16, 13345-13351
1574817 CIFC25 H20 N2 OP -111.358; 12.5546; 14.4385
104.294; 104.552; 97.394
1890.77Guo, Weihan; Zhao, Hua; Wang, Mingda; Si, Leilei; Yang, Kaixin; Xia, Guomin; Wang, Hongming
Intramolecular tension-driven self-recovering mechanochromism in organic microcrystals.
Chemical science, 2025, 16, 13345-13351
1574818 CIFC27 H22 N2 O2P 1 21/n 115.068; 6.3158; 22.0503
90; 100.439; 90
2063.7Jiang, Qin; Dong, Jianyang; Lei, Fang; Yu, Dejiang; Li, Ting; Sun, Huaming; Xue, Dong
Strain-release driven spirocyclization of bicyclo[1.1.0]butanes: access to 6,7-diazaspiro[3.4]octanes
Chemical Science, 2025, 16, 12189-12195
1574819 CIF
Paper
C10 H12 N2 O4P b c a14.2323; 7.6198; 19.8463
90; 90; 90
2152.28Uppu, Rao M.; Fronczek, Frank R.
N-(4-Methoxy-2-methyl-5-nitrophenyl)acetamide
IUCrData, 2025, 10, x250470
1574820 CIFI8 K8P 111.81505482; 12.23692562; 7.10002691
90.0019; 90; 90
1026.52Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574821 CIFI4 Na4P 17.08010283; 7.09791712; 7.290053
90.014; 90.0073; 89.9994
366.354Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574822 CIFBr2 Cl8 K2P 15.52777127; 8.40563451; 9.50743605
89.9266; 92.1043; 90.0854
441.459Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574823 CIFCl3 I6 K9P 18.17554987; 8.17545312; 12.92405996
89.9997; 90.0004; 119.998
748.115Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574824 CIFBr8 Cl8 Li16P 17.5745859; 7.47783339; 10.64749269
90; 90; 89.9999
603.09Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574825 CIFBr4 I4 Li8P 16.89761845; 6.89761779; 9.07397362
89.9998; 89.9997; 89.9993
431.714Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574826 CIFCl10 Li2 Na4P 17.44595166; 6.64557407; 8.11584563
90.219; 90.6102; 89.7363
401.563Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574827 CIFBr3 K3P 14.57088421; 4.57088314; 12.56050046
90; 90; 120
227.268Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574828 CIFBr2 I4 Na6P 14.41377149; 11.42127601; 8.84758514
90.0609; 90; 89.9976
446.014Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574829 CIFBr8 Na12 O2P 111.0085188; 11.00851965; 4.54767139
90.0001; 89.9999; 90
551.121Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574830 CIFCl I3 K4P 17.04072003; 7.04072003; 7.04072017
90; 90; 90
349.021Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574831 CIFI12 Li9 Na3P 19.56782617; 9.56667027; 10.86714246
90.0184; 89.9857; 120.033
861.14Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574832 CIFCl4 Li4P 13.60563605; 6.18271013; 6.06886486
90; 90.5097; 90
135.285Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574833 CIFBr4 Na12 O8P 18.62374043; 6.86641651; 7.53508646
89.6433; 90.1447; 90.0822
446.174Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574834 CIFCl8 Li8P 16.96677839; 6.1954674; 7.80744572
89.9993; 90.0064; 90.0002
336.988Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574835 CIFBr2 I2 Na4P 17.27854968; 4.4636847; 7.52581834
90; 89.9997; 90
244.507Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574836 CIFI4 K4P 110.63927541; 5.88914438; 7.11982419
90; 90; 90
446.101Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574837 CIFBr2 I2 Na4P 14.46487017; 7.6102386; 8.82779691
55.489; 90; 90
247.17Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574838 CIFN4 Na4 O8P 14.53892396; 4.53928693; 10.61694621
89.9943; 90.0079; 89.9951
218.746Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574839 CIFBr8 Cl4 Li12P 16.36230533; 6.6968109; 11.13929413
90; 90; 90
474.614Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574840 CIFBe4 Br12 Li4P 17.36349178; 11.45486469; 6.34158533
89.9953; 89.9228; 90.003
534.898Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574841 CIFI2 Na2 O6P 14.69207514; 5.91256374; 7.44017721
90.295; 90.0371; 106.456
197.949Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574842 CIFBr4 K4P 17.97653216; 4.63198529; 8.22376751
90; 90; 90
303.845Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574843 CIFCl4 I4 Li8P 17.00922312; 8.16071716; 7.52055807
90.0001; 90; 90
430.178Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574844 CIFI6 K6 S20P 110.5550204; 10.54925829; 10.53309387
96.8075; 96.848; 83.1393
1149.64Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574845 CIFC4 Br8 Li12P 17.37088716; 11.27904563; 5.91404848
77.2952; 90.0055; 89.9985
479.636Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574846 CIFCl6 I4 K2P 15.69131825; 7.80534201; 13.60531471
89.8297; 89.9798; 89.9915
604.382Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574847 CIFBr8 Li8P 110.03026185; 10.03027612; 4.23379761
90; 90.0001; 90
425.947Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574848 CIFBr8 Na8P 18.36834834; 7.27874099; 7.22267546
90.0003; 89.9992; 90
439.941Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574849 CIFI6 Na6P 18.9313506; 8.93269682; 7.9621576
90; 90; 120.02
550.016Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574850 CIFI18 Li18P 112.4581865; 12.45766276; 8.72897931
89.9694; 90.0323; 119.998
1173.26Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574851 CIFBr16 Li16P 19.23216381; 11.11977739; 8.92893382
90; 90; 89.9935
916.641Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574852 CIFI8 Li8P 18.59968677; 9.33258631; 7.37288568
90; 90; 90
591.728Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574853 CIFBr18 Li18P 111.54482368; 11.54484693; 7.91932462
90.0074; 89.9921; 120.003
914.072Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574854 CIFBr18 Na18P 112.42857248; 12.42857263; 7.90695563
90.0004; 89.9996; 120.005
1057.7Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574855 CIFC64 H48 N2 O2P 1 21/c 123.448; 14.472; 14.747
90; 93.73; 90
4994Chen, Zhao; Zou, Yijie; Yin, Ya; Deng, Diandian; Yang, Yue; Fan, Congbin; Pu, Shouzhi; Liu, Gang
Molecular engineering of bis(triphenylamine)-modified fluorene luminophore for immensely enriching anisotropic force-triggered high-contrast tricolor fluorescent molecular switches library.
Chemical science, 2025, 16, 12293-12302
1574856 CIFC62 H42 N4 O4P 1 21/c 123.7964; 14.8763; 14.0068
90; 93.979; 90
4946.5Chen, Zhao; Zou, Yijie; Yin, Ya; Deng, Diandian; Yang, Yue; Fan, Congbin; Pu, Shouzhi; Liu, Gang
Molecular engineering of bis(triphenylamine)-modified fluorene luminophore for immensely enriching anisotropic force-triggered high-contrast tricolor fluorescent molecular switches library.
Chemical science, 2025, 16, 12293-12302
1574857 CIFC23.16 H27.33 Br Cl N O1.08P 1 21/c 17.2281; 17.0092; 16.9709
90; 96.963; 90
2071.09Santos Hurtado, Carina; Bastien, Guillaume; Lončarić, Doroteja; Dračínský, Martin; Císařová, Ivana; Masson, Eric; Kaleta, Jiří
Surface inclusion and dynamics of cucurbit[7]uril-based supramolecular complexes.
Chemical science, 2025, 16, 14081-14087
1574858 CIFC11 H8 Br NF d d 217.1318; 8.8789; 12.0049
90; 90; 90
1826.08Santos Hurtado, Carina; Bastien, Guillaume; Lončarić, Doroteja; Dračínský, Martin; Císařová, Ivana; Masson, Eric; Kaleta, Jiří
Surface inclusion and dynamics of cucurbit[7]uril-based supramolecular complexes.
Chemical science, 2025, 16, 14081-14087
1574859 CIFC17 H13.47 Br Cl N3 O5.24C 1 c 114.3576; 42.1432; 9.9596
90; 114.105; 90
5500.8Santos Hurtado, Carina; Bastien, Guillaume; Lončarić, Doroteja; Dračínský, Martin; Císařová, Ivana; Masson, Eric; Kaleta, Jiří
Surface inclusion and dynamics of cucurbit[7]uril-based supramolecular complexes.
Chemical science, 2025, 16, 14081-14087
1574860 CIFC51 H60 Eu2 N8 O25C 1 2/c 123.988; 12.672; 19.276
90; 101.714; 90
5737Zhao, Lu; Xu, Zhenjie; Song, Xianzhen; Ding, Caifeng; Ju, Huangxian
Self-supplying coreactant radical and structural distortion induced by carbonate ligand in metal-organic framework for anomalous deep-red Self-electrochemiluminescence.
Chemical science, 2025, 16, 12493-12498
1574861 CIFC116.654 H97.264 Ga8 N16.218 Nd2 O61.087C 1 2/m 125.4801; 23.6113; 20.8659
90; 127.581; 90
9948.4Lathion, Timothée; Bourseguin, Julie; Eliseeva, Svetlana V.; Zeller, Matthias; Petoud, Stéphane; Pecoraro, Vincent L.
Novel lanthanide(iii)/gallium(iii) metallacrowns with appended visible-absorbing organic sensitizers for molecular near-infrared imaging of living cells.
Chemical science, 2025, 16, 12623-12634
1574862 CIFC46 H56 O17P 1 21 111.0048; 9.98913; 20.5935
90; 99.8007; 90
2230.77Zhang, Jing-Dong; Jie, Jia-Long; Yan, Shu-Yi; Zhang, Hui; Chen, Jia-Meng; Wu, Jiang-Cheng; Qin, Lu-Yang; Liu, Guang-Jian; Su, Hong-Mei; Xing, Guo-Wen
Single electron/energy transfer photocatalysis: α-/β-switchable synthesis of 3-deoxy-d-manno-oct-2-ulosonic acid <i>O</i>-glycosides.
Chemical science, 2025, 16, 13070-13081
1574863 CIFC30 H44 O17P 21 21 2110.19414; 11.29721; 28.984
90; 90; 90
3337.95Zhang, Jing-Dong; Jie, Jia-Long; Yan, Shu-Yi; Zhang, Hui; Chen, Jia-Meng; Wu, Jiang-Cheng; Qin, Lu-Yang; Liu, Guang-Jian; Su, Hong-Mei; Xing, Guo-Wen
Single electron/energy transfer photocatalysis: α-/β-switchable synthesis of 3-deoxy-d-manno-oct-2-ulosonic acid <i>O</i>-glycosides.
Chemical science, 2025, 16, 13070-13081
1574864 CIFC24 H35 F N2 O2 SiP 61 2 211.3851; 11.3851; 64.721
90; 90; 120
7265.2Chang, Yun-Pu; Blanco-Herrero, Kevin; Alturaifi, Turki M.; Fettinger, James C.; Liu, Peng; Franz, Annaliese K.
Multifunctional chiral silanol ligands for enantioselective catalysis.
Chemical science, 2025, 16, 13678-13683
1574865 CIFC18 H21 F N2 OP 21 21 215.2703; 13.9801; 21.4626
90; 90; 90
1581.35Chang, Yun-Pu; Blanco-Herrero, Kevin; Alturaifi, Turki M.; Fettinger, James C.; Liu, Peng; Franz, Annaliese K.
Multifunctional chiral silanol ligands for enantioselective catalysis.
Chemical science, 2025, 16, 13678-13683
1574866 CIFC18 H19 F N2P 21 21 2111.6012; 14.6138; 17.9894
90; 90; 90
3049.88Chang, Yun-Pu; Blanco-Herrero, Kevin; Alturaifi, Turki M.; Fettinger, James C.; Liu, Peng; Franz, Annaliese K.
Multifunctional chiral silanol ligands for enantioselective catalysis.
Chemical science, 2025, 16, 13678-13683
1574867 CIFC25 H37 F N2 O2 SiP 1 21 110.4984; 23.5281; 11.1188
90; 109.222; 90
2593.3Chang, Yun-Pu; Blanco-Herrero, Kevin; Alturaifi, Turki M.; Fettinger, James C.; Liu, Peng; Franz, Annaliese K.
Multifunctional chiral silanol ligands for enantioselective catalysis.
Chemical science, 2025, 16, 13678-13683
1574868 CIFC24 H24 F N O2 SiP 110.6067; 10.8407; 10.999
61.01; 70.064; 89.897
1019.2Chang, Yun-Pu; Blanco-Herrero, Kevin; Alturaifi, Turki M.; Fettinger, James C.; Liu, Peng; Franz, Annaliese K.
Multifunctional chiral silanol ligands for enantioselective catalysis.
Chemical science, 2025, 16, 13678-13683
1574869 CIFC80 H84 B F26 N4 Na O5 Si2P 112.8653; 12.9386; 14.2525
76.0784; 80.3071; 65.8644
2094.9Chang, Yun-Pu; Blanco-Herrero, Kevin; Alturaifi, Turki M.; Fettinger, James C.; Liu, Peng; Franz, Annaliese K.
Multifunctional chiral silanol ligands for enantioselective catalysis.
Chemical science, 2025, 16, 13678-13683
1574870 CIFC14 H25 B N2 O2P 1 21/n 19.70607; 14.11052; 11.3915
90; 93.1395; 90
1557.81Hu, Guanwen; Zhang, Peiqi; Wang, Xinmou; Wan, Chunteng; Fu, Yiyi; Leung, Wa Hung; Lin, Zhenyang; Quan, Yangjian
Nickel-catalyzed diastereoselective hydroboration of acrylates with a vinylborane reagent.
Chemical science, 2025, 16, 13449-13458
1574871 CIFC46 H43.75 B F6 N2 Ni P2P 1 21/c 112.01864; 11.91416; 28.869
90; 92.2828; 90
4130.53Hu, Guanwen; Zhang, Peiqi; Wang, Xinmou; Wan, Chunteng; Fu, Yiyi; Leung, Wa Hung; Lin, Zhenyang; Quan, Yangjian
Nickel-catalyzed diastereoselective hydroboration of acrylates with a vinylborane reagent.
Chemical science, 2025, 16, 13449-13458
1574872 CIFC20 H29 B N2 O3P 1 21/c 110.3051; 13.6933; 13.8874
90; 103.092; 90
1908.73Hu, Guanwen; Zhang, Peiqi; Wang, Xinmou; Wan, Chunteng; Fu, Yiyi; Leung, Wa Hung; Lin, Zhenyang; Quan, Yangjian
Nickel-catalyzed diastereoselective hydroboration of acrylates with a vinylborane reagent.
Chemical science, 2025, 16, 13449-13458
1574873 CIFC58 H52 Br4 Mn2 N8 O10P 1 2 114.471; 8.507; 23.459
90; 90.215; 90
2887.9Paira, Soumen; Jain, Nupur; Adhikari, Debarsee; Sunoj, Raghavan B.; Sundararaju, Basker
<i>A priori</i> Design of [Mn(i)-Cinchona] catalyst for Asymmetric Hydrogenation of Ketones and β-Keto carbonyl Derivatives.
Chemical science, 2025, 16, 13826-13837
1574874 CIFC13 H21 N O3 SP 21 21 216.191; 12.6923; 18.1436
90; 90; 90
1425.69Paira, Soumen; Jain, Nupur; Adhikari, Debarsee; Sunoj, Raghavan B.; Sundararaju, Basker
<i>A priori</i> Design of [Mn(i)-Cinchona] catalyst for Asymmetric Hydrogenation of Ketones and β-Keto carbonyl Derivatives.
Chemical science, 2025, 16, 13826-13837
1574875 CIFC14 H14 OP 15.5996; 8.103; 23.254
91.263; 91.912; 91.077
1054.1Paira, Soumen; Jain, Nupur; Adhikari, Debarsee; Sunoj, Raghavan B.; Sundararaju, Basker
<i>A priori</i> Design of [Mn(i)-Cinchona] catalyst for Asymmetric Hydrogenation of Ketones and β-Keto carbonyl Derivatives.
Chemical science, 2025, 16, 13826-13837
1574876 CIFC24 H24 O9P -19.885; 10.504; 10.763
78.835; 87.376; 88.318
1095Davidson, Daniel J.; Sansom, Geraud N.; Miles-Barrett, Daniel M; Cordes, David B.; Slawin, Alexandra M. Z.; Montgomery, James R. D.; Lebl, Tomas; Connor, Ann; Danby, Andrew M.; Gronnow, Mark J.; Parry, Neil J.; Hosking, Sarah L.; Grainger, David S.; Westwood, Nicholas J.
Organosolv processing of Sitka spruce sawdust: large scale preparation of native-like lignin and lignin<sup>OX</sup> for valorisation.
Faraday discussions, 2026, 263, 98-122
1574877 CIFC84 H92 N2 O20 S4P -115.8904; 18.3627; 20.0324
99.057; 96.562; 93.372
5717Ma, Yao; Li, Dongxu; Chen, Xin; Hua, Xinqiang; Yuan, Cheng-Shan; Wang, Jianguo; Liu, Zitong; Zhang, Hao-Li; Shao, Xiangfeng
Valence state engineering in multi-heteroatom-doped PAHs: a strategy for tunable photophysical properties and phototheranostic potentials.
Chemical science, 2025, 16, 13057-13069
1574878 CIFC47 H52 F3 N O9 S Se2P 1 21/n 19.12078; 18.7864; 25.9913
90; 92.9385; 90
4447.67Ma, Yao; Li, Dongxu; Chen, Xin; Hua, Xinqiang; Yuan, Cheng-Shan; Wang, Jianguo; Liu, Zitong; Zhang, Hao-Li; Shao, Xiangfeng
Valence state engineering in multi-heteroatom-doped PAHs: a strategy for tunable photophysical properties and phototheranostic potentials.
Chemical science, 2025, 16, 13057-13069
1574879 CIFC47 H52 F3 N O9 S3P 1 21/n 19.106; 18.7587; 25.8895
90; 93.085; 90
4415.95Ma, Yao; Li, Dongxu; Chen, Xin; Hua, Xinqiang; Yuan, Cheng-Shan; Wang, Jianguo; Liu, Zitong; Zhang, Hao-Li; Shao, Xiangfeng
Valence state engineering in multi-heteroatom-doped PAHs: a strategy for tunable photophysical properties and phototheranostic potentials.
Chemical science, 2025, 16, 13057-13069
1574880 CIFC104 H92 N4 O40 P4 Si W12P 113.90582; 15.07813; 15.90307
112.371; 104.294; 100.202
2848.02Yonesato, Kentaro; Watanabe, Yota; Pascual-Borràs, Magda; Errington, R. John; Yamaguchi, Kazuya; Suzuki, Kosuke
Synthesis of a Keggin-type polyoxoselenidotungstate <i>via</i> site-selective oxygen-to-selenium substitution.
Chemical science, 2025, 16, 13183-13188
1574881 CIFC100 H86 N2 O28 P4 Se12 Si W12P 113.76778; 14.64503; 17.18784
68.0094; 68.5531; 89.6202
2956.65Yonesato, Kentaro; Watanabe, Yota; Pascual-Borràs, Magda; Errington, R. John; Yamaguchi, Kazuya; Suzuki, Kosuke
Synthesis of a Keggin-type polyoxoselenidotungstate <i>via</i> site-selective oxygen-to-selenium substitution.
Chemical science, 2025, 16, 13183-13188
1574882 CIFC19 H20 N4 O12 UP -110.8763; 10.8816; 11.2207
106.765; 113.872; 92.592
1142.7Park, Kyoung Chul; Lim, Jaewoong; Thaggard, Grace C.; Maldeni Kankanamalage, Buddhima K. P.; Lehman-Andino, Ingrid; Liu, Yuan; Burrell, Jennii M.; Martin, Corey R.; Ta, An T.; Greytak, Andrew B.; Amoroso, Jake W.; DiPrete, David D.; Smith, Mark D.; Phillpot, Simon R.; Shustova, Natalia B.
Stimuli-responsive photoswitch-actinide binding: a match made in MOFs.
Chemical science, 2025, 16, 14115-14126
1574883 CIFC20 H19 Cl N2 O5P b c a6.8431; 21.1213; 26.1977
90; 90; 90
3786.5Park, Kyoung Chul; Lim, Jaewoong; Thaggard, Grace C.; Maldeni Kankanamalage, Buddhima K. P.; Lehman-Andino, Ingrid; Liu, Yuan; Burrell, Jennii M.; Martin, Corey R.; Ta, An T.; Greytak, Andrew B.; Amoroso, Jake W.; DiPrete, David D.; Smith, Mark D.; Phillpot, Simon R.; Shustova, Natalia B.
Stimuli-responsive photoswitch-actinide binding: a match made in MOFs.
Chemical science, 2025, 16, 14115-14126
1574884 CIFC17 H16 N2 OP n a 219.6531; 14.4417; 9.9636
90; 90; 90
1389Chen, Tian; Wang, Hao-Yang; Xu, Ronghua; Xu, Guangqing; Yang, He; Sun, Jiangtao; Chung, Lung Wa; Tang, Wenjun
Asymmetric intramolecular reductive coupling of bisimines templated by chiral diborons.
Chemical science, 2025, 16, 13298-13305
1574885 CIFC18 H18 N2 O2P 21 21 214.9546; 15.547; 19.2131
90; 90; 90
1479.97Chen, Tian; Wang, Hao-Yang; Xu, Ronghua; Xu, Guangqing; Yang, He; Sun, Jiangtao; Chung, Lung Wa; Tang, Wenjun
Asymmetric intramolecular reductive coupling of bisimines templated by chiral diborons.
Chemical science, 2025, 16, 13298-13305
1574886 CIFC17 H15 Br N2 OP 21 21 215.1594; 15.095; 18.2386
90; 90; 90
1420.44Chen, Tian; Wang, Hao-Yang; Xu, Ronghua; Xu, Guangqing; Yang, He; Sun, Jiangtao; Chung, Lung Wa; Tang, Wenjun
Asymmetric intramolecular reductive coupling of bisimines templated by chiral diborons.
Chemical science, 2025, 16, 13298-13305
1574887 CIFC21 H13 N3 O2P 1 21/c 13.8447; 12.8869; 30.8271
90; 92.189; 90
1526.25Lal, Anu; Sureshan, Kana M.
Isomer-dependent reactivity in the solid state: topochemical [4 + 4] <i>vs.</i> [4 + 2] cycloaddition reactions.
Chemical science, 2025, 16, 13496-13502
1574888 CIFC21 H13 N3 O2P -18.2554; 9.4866; 10.2722
81.063; 86.002; 73.425
761.4Lal, Anu; Sureshan, Kana M.
Isomer-dependent reactivity in the solid state: topochemical [4 + 4] <i>vs.</i> [4 + 2] cycloaddition reactions.
Chemical science, 2025, 16, 13496-13502
1574889 CIFC136 H120 Cl12 F12 K2 O16 P2P c a 2122.914; 23.096; 25.886
90; 90; 90
13699Hu, Yaning; Li, Tong; Su, Taotao; Shi, Wudi; Yu, Yabing; Li, Beibei; Li, Meng-Hua; Zhang, Sheng; Xu, Yuan-Qing; Liu, Qi; Wu, Di; Xu, Youzhi
Crown ether-cycloparaphenylene hybrid multimacrocycles: insights into supramolecular gas sensing and biological potential.
Chemical science, 2025, 16, 13115-13121
1574890 CIFC80 H73.5 O8P 1 21/c 121.9739; 21.8794; 27.0805
90; 106.434; 90
12487.7Hu, Yaning; Li, Tong; Su, Taotao; Shi, Wudi; Yu, Yabing; Li, Beibei; Li, Meng-Hua; Zhang, Sheng; Xu, Yuan-Qing; Liu, Qi; Wu, Di; Xu, Youzhi
Crown ether-cycloparaphenylene hybrid multimacrocycles: insights into supramolecular gas sensing and biological potential.
Chemical science, 2025, 16, 13115-13121
1574891 CIFC51.2 H38 F8.4 N2 O3.6 P2.8 S3.2P -110.0108; 10.7763; 12.8755
65.86; 70.072; 86.083
1187.54Wu, Zixiang; Anderson, Christopher L.; Zhang, Teng-Shuo; Liu, Yi; Fu, Hongbing; Wang, Long
Side-chain ionization enables ultrafast intramolecular singlet fission in the azaquinodimethane skeleton.
Chemical science, 2025, 16, 13374-13381
1574892 CIFC59.44 H42 F7.68 N2 O4.32 P2.56 S5.44C 1 2/c 121.251; 13.6392; 19.481
90; 101.806; 90
5527.1Wu, Zixiang; Anderson, Christopher L.; Zhang, Teng-Shuo; Liu, Yi; Fu, Hongbing; Wang, Long
Side-chain ionization enables ultrafast intramolecular singlet fission in the azaquinodimethane skeleton.
Chemical science, 2025, 16, 13374-13381
1574893 CIFC4 H4 Br Cl3 F39 O12 S3 Sb Te6P -19.8994; 10.0636; 22.7766
93.244; 100.968; 95.729
2209.9Fischer, Lukas; Lee, Michael H.; Wiesner, Anja; Müller, Carsten; Riedel, Sebastian
On the synthesis and structure of reactive halonium ions.
Chemical science, 2025, 16, 13229-13234
1574894 CIFC4 H9 F30 O6 Sb Te6R 3 :H13.8891; 13.8891; 13.2594
90; 90; 120
2215.1Fischer, Lukas; Lee, Michael H.; Wiesner, Anja; Müller, Carsten; Riedel, Sebastian
On the synthesis and structure of reactive halonium ions.
Chemical science, 2025, 16, 13229-13234
1574895 CIFC4 H6 F34 I O6 Sb Te6P -19.9568; 10.0522; 10.7376
92.26; 114.527; 119.573
808.81Fischer, Lukas; Lee, Michael H.; Wiesner, Anja; Müller, Carsten; Riedel, Sebastian
On the synthesis and structure of reactive halonium ions.
Chemical science, 2025, 16, 13229-13234
1574896 CIFC4 H4 Cl4 F39 O12 S3 Sb Te6P -19.8884; 10.0411; 22.687
93.5; 100.671; 95.798
2195Fischer, Lukas; Lee, Michael H.; Wiesner, Anja; Müller, Carsten; Riedel, Sebastian
On the synthesis and structure of reactive halonium ions.
Chemical science, 2025, 16, 13229-13234
1574897 CIFC24 H23 F2 O2 PP b c a12.2416; 14.7054; 22.9539
90; 90; 90
4132.11Kurosawa, Miki B.; Shimoyama, Shuhei; Tanaka, Hiroki; Yamaguchi, Junichiro
Difluoroenol phosphinates as difluoroenolate surrogates: synthesis and applications in defluorination and deoxygenative coupling.
Chemical science, 2025, 16, 13390-13400
1574898 CIFC35 H30 Ag2 Cl2 N4 O6 P2P 1 21/n 112.1027; 23.1001; 13.4641
90; 100.031; 90
3706.67Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574899 CIFC70 H60 Ag4 Cl4 N8 O12 P4P 1 21/n 112.1045; 23.0824; 13.4651
90; 99.943; 90
3705.65Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574900 CIFC35 H30 Ag2 Cl2 N4 O6 P2P -111.8363; 12.1943; 13.6499
85.2; 72.917; 78.512
1844.85Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574901 CIFC70 H60 Ag4 Cl4 N8 O12 P4P 1 21/n 112.0949; 23.1016; 13.4621
90; 99.92; 90
3705.23Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574902 CIFC68 H56 Ag N4 P4P -313.9512; 13.9512; 51.4858
90; 90; 120
8678.4Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574903 CIFC53 H46 Ag2 Cl4 N5 O6 P3P -112.0844; 12.6564; 19.7598
96.807; 92.743; 116.31
2672.83Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574904 CIFC60 H48 Ag N12 P4P -313.9512; 13.9512; 51.4858
90; 90; 120
8678.4Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574905 CIFC68 H56 Ag4 Cl4 N4 P4C 1 2/c 123.4191; 23.3178; 23.2829
90; 91.001; 90
12712.4Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574906 CIFC35 H30 Ag2 Cl2 N4 O6 P2P 1 21/n 112.1131; 23.0872; 13.4732
90; 99.908; 90
3711.69Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574907 CIFC70 H62 Ag Cl2 N5 O4 P4P -111.9246; 13.9944; 19.0615
89.788; 89.154; 82.33
3152.1Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574908 CIFC70.79 H63.59 Ag Cl1.59 N5 O4 P4P -111.9103; 13.7805; 19.6808
91.203; 91.613; 96.934
3204.34Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574909 CIFC70 H58 Ag Cl2 N4 O3 P4P -111.9418; 13.8033; 19.6503
90.997; 91.482; 96.769
3214.7Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574910 CIFC51.5 H43 Ag Cl2 N3 P3P -112.9844; 13.1743; 14.0881
89.488; 68.446; 86.972
2238.12Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574911 CIFC104 H88 Ag2 Cl5 N6 P6P -112.743; 12.7623; 16.6375
79.654; 74.705; 64.242
2344.01Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574912 CIFC51.5 H43 Ag Cl2 N3 P3P -113.0055; 13.185; 14.0637
89.567; 68.565; 87.069
2241.71Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574913 CIFC53 H46 Ag2 Cl4 N5 O6 P3P -112.0794; 12.6498; 19.7666
96.679; 92.826; 116.357
2670.68Peter, Blessing D.; Yi, Qiuhao; Luo, Zhixun
Studying how small silver clusters grow and their optical properties.
Nanoscale, 2025, 17, 19821-19827
1574914 CIFC35 H16 F8 N2P -19.6606; 15.0395; 18.49
84.896; 89.124; 87.16
2672.3Hu, Wenbo; Li, Heng; Yuan, Bingxin
Perfluoroarene-arene interaction cocrystal of perfluorocarbazoles toward IEF-enhanced photocatalysis.
Chemical science, 2025, 16, 13794-13806
1574915 CIFC17 H4 F8 N2P -18.7918; 9.1879; 10.5298
72.342; 70.631; 67.564
726.3Hu, Wenbo; Li, Heng; Yuan, Bingxin
Perfluoroarene-arene interaction cocrystal of perfluorocarbazoles toward IEF-enhanced photocatalysis.
Chemical science, 2025, 16, 13794-13806
1574916 CIFC27 H10 F8 N2P -19.9143; 10.2042; 11.3792
80.453; 70.664; 87.322
1071.2Hu, Wenbo; Li, Heng; Yuan, Bingxin
Perfluoroarene-arene interaction cocrystal of perfluorocarbazoles toward IEF-enhanced photocatalysis.
Chemical science, 2025, 16, 13794-13806
1574917 CIFC18 F13 NC 1 2/c 115.6247; 13.0336; 8.6155
90; 115.441; 90
1584.4Hu, Wenbo; Li, Heng; Yuan, Bingxin
Perfluoroarene-arene interaction cocrystal of perfluorocarbazoles toward IEF-enhanced photocatalysis.
Chemical science, 2025, 16, 13794-13806
1574918 CIFC29 H13 F8 N OP b c a18.4815; 11.2751; 21.751
90; 90; 90
4532.5Hu, Wenbo; Li, Heng; Yuan, Bingxin
Perfluoroarene-arene interaction cocrystal of perfluorocarbazoles toward IEF-enhanced photocatalysis.
Chemical science, 2025, 16, 13794-13806
1574919 CIFC26 H24 Cl5 In N2P -18.5802; 9.2837; 18.2358
97.408; 98.221; 105.005
1367.56Chen, Chudong; Li, Ziquan; Xiao, Yonghong; Ye, Chenghao; Wei, Jianwu; Zeng, Ruosheng; Pang, Qi; Luo, Binbin
Photosalient effect and reversible photochromic photoluminescence driven by cascade [2 + 2] cycloaddition reaction and water adsorption in a 0D hybrid metal halide.
Chemical science, 2025, 16, 13731-13740
1574920 CIFC26 H26 Cl5 In N2 OP -110.8192; 11.7903; 11.9138
99.72; 92.935; 98.493
1476.98Chen, Chudong; Li, Ziquan; Xiao, Yonghong; Ye, Chenghao; Wei, Jianwu; Zeng, Ruosheng; Pang, Qi; Luo, Binbin
Photosalient effect and reversible photochromic photoluminescence driven by cascade [2 + 2] cycloaddition reaction and water adsorption in a 0D hybrid metal halide.
Chemical science, 2025, 16, 13731-13740
1574921 CIFC52 H50 Cl10 In2 N4 OP -110.8121; 15.0764; 18.006
90.349; 91.409; 95.489
2920.67Chen, Chudong; Li, Ziquan; Xiao, Yonghong; Ye, Chenghao; Wei, Jianwu; Zeng, Ruosheng; Pang, Qi; Luo, Binbin
Photosalient effect and reversible photochromic photoluminescence driven by cascade [2 + 2] cycloaddition reaction and water adsorption in a 0D hybrid metal halide.
Chemical science, 2025, 16, 13731-13740
1574922 CIFC22 H27 N O3P 21 21 218.9084; 9.6525; 22.6244
90; 90; 90
1945.4Ray, Ranay Kumar; Sudhadevi Antharjanam, P. K.; Chakraborty, Debashis
Efficient and controlled ring-opening copolymerization of cyclohexene oxide with cyclic anhydrides catalyzed by proline-based chiral alkyl Al(III) compounds.
Faraday discussions, 2026, 262, 191-211
1574923 CIFC31 H38 Al F2 N O3P 1 21 113.2631; 7.2788; 15.3502
90; 100.335; 90
1457.86Ray, Ranay Kumar; Sudhadevi Antharjanam, P. K.; Chakraborty, Debashis
Efficient and controlled ring-opening copolymerization of cyclohexene oxide with cyclic anhydrides catalyzed by proline-based chiral alkyl Al(III) compounds.
Faraday discussions, 2026, 262, 191-211
1574924 CIFC31 H40 Al N O3P 21 21 219.4226; 14.8275; 20.4148
90; 90; 90
2852.23Ray, Ranay Kumar; Sudhadevi Antharjanam, P. K.; Chakraborty, Debashis
Efficient and controlled ring-opening copolymerization of cyclohexene oxide with cyclic anhydrides catalyzed by proline-based chiral alkyl Al(III) compounds.
Faraday discussions, 2026, 262, 191-211
1574925 CIFC52 H72 Al2 N2 O7P 32 2 19.466; 9.466; 49.901
90; 90; 120
3872.3Ray, Ranay Kumar; Sudhadevi Antharjanam, P. K.; Chakraborty, Debashis
Efficient and controlled ring-opening copolymerization of cyclohexene oxide with cyclic anhydrides catalyzed by proline-based chiral alkyl Al(III) compounds.
Faraday discussions, 2026, 262, 191-211
1574926 CIFC19 H40 Cl N O2C 1 2 18.7109; 7.5919; 33.2317
90; 91.246; 90
2197.2Choudhury, Suman Kumar; Chinapaka, Ravindar; Manasa, Konga; Swamy, Musti J.
Synthesis and characterization of long chain <i>O</i>-acyl-L-alaninols and investigation of drug encapsulation and release by equimolar <i>O</i>-myristoyl-L-alaninol/SDS catanionic liposomes.
Soft matter, 2025, 21, 5728-5742
1574927 CIFC40 H84 Cl2 N2 O4C 1 2 19.0685; 7.4023; 34.118
90; 95.383; 90
2280.2Choudhury, Suman Kumar; Chinapaka, Ravindar; Manasa, Konga; Swamy, Musti J.
Synthesis and characterization of long chain <i>O</i>-acyl-L-alaninols and investigation of drug encapsulation and release by equimolar <i>O</i>-myristoyl-L-alaninol/SDS catanionic liposomes.
Soft matter, 2025, 21, 5728-5742
1574928 CIF
Paper
C36.5 H47 N3 O4 P2 PdP -19.5548; 10.702; 18.4654
74.0508; 86.9998; 76.0888
1762.06Müller, Stefan; Spannenberg, Anke; Neumann, Helfried; Franke, Robert; Beller, Matthias
{α,α′-Bis[(tert-butyl)(6-methoxypyridin-2-yl)phosphino]-o-xylene}(η2-N-methylmaleinimide)palladium(0) toluene hemisolvate
IUCrData, 2025, 10, x250508
1574929 CIF
Paper
C23 H16.36 Br0.64 F3 N2P -18.84082; 9.48683; 11.6797
95.3496; 91.0661; 103.592
947.18Guseinov, Firudin I.; Samigullina, Aida I.; Hökelek, Tuncer; Hamidov, Sahil Z.; Lasri, Jamal; Hasanov, Khudayar I.; Javadzade, Tahir A.; Belay, Alebel N.
1-[(2-Bromophenyl)diphenylmethyl]-3-(trifluoromethyl)-1H-pyrazole–1-(triphenylmethyl)-3-(trifluoromethyl)-1H-pyrazole (0.638:0.362)
IUCrData, 2025, 10, x250466
1574930 CIF
Paper
C14 H9 F N2 OP 1 21/n 18.97833; 10.13609; 12.85096
90; 110.357; 90
1096.46Guseinov, Firudin I.; Samigullina, Aida I.; Hökelek, Tuncer; Hamidov, Sahil Z.; Lasri, Jamal; Hasanov, Khudayar I.; Guliyeva, Narmina A.; Belay, Alebel N.
3-(4-Fluorophenyl)imidazo[1,2-a]pyridine-2-carbaldehyde
IUCrData, 2025, 10, x250553
1574931 CIF
Paper
C53 H62 O6.5 P3 RuP -19.1504; 11.6521; 24.868
95.453; 98.296; 90.372
2611.3Stein, Carolin A. M.; Alberico, Elisabetta; Spannenberg, Anke; Beller, Matthias; Junge, Henrik
(η4-Trimethylenemethane)(1,1,1-tris{[bis(4-methoxyphenyl)phosphanyl]methyl}ethane)ruthenium(II) diethyl ether hemisolvate
IUCrData, 2025, 10, x250524
1574932 CIF
Paper
C40 H24 Fe N12R -3 :H17.0276; 17.0276; 21.6388
90; 90; 120
5433.39Messalti, Said Abdelghafour; Setifi, Fatima; Böhme, Uwe; Setifi, Zouaoui; Al-Douh, Mohammad Hadi
Tris(2,2′-bipyridine)iron(II) tris(dicyanomethylidene)methanediide
IUCrData, 2025, 10, x250503
1574933 CIF
Paper
C17 H25 N O9 S2P 21 21 217.28265; 8.6472; 34.8789
90; 90; 90
2196.48Mohamed-Ezzat, Reham A.; Elgemeie, Galal H.; Jones, Peter G.
2,3,4,6-Tetra-O-acetyl-1-[(dimethylcarbamothioyl)sulfanyl]-β-D-galactopyranose
IUCrData, 2025, 10, x250544
1574934 CIF
Paper
C13 H17 N O4P 1 21/c 110.944; 11.234; 11.377
90; 112.481; 90
1292.4Ponmagaram, Murugesan; Saranraj, Krishnan; Raja, Karuppiah Muruga Poopathi
Methyl 3-[(tert-butoxycarbonyl)amino]benzoate
IUCrData, 2025, 10, x250542
1574935 CIF
Paper
C21 H38 I2 N4 O3 PdP 21 21 2111.519; 12.4798; 19.5537
90; 90; 90
2810.94Liao, Ping; Wang, Yanping; Zhong, Li; Yuan, Jinwei; Yang, Liangru
(S,S)-Diiodido{3,3′-methylenebis[1-(1-hydroxy-4-methylpentan-2-yl)imidazol-2-ylene]}palladium(II) ethanol monosolvate
IUCrData, 2025, 10, x250423
1574936 CIF
Paper
C28 H28 F12 N8 O2 P2P -17.7661; 8.1535; 13.3262
93.392; 102.488; 95.435
817.4Sueyoshi, Fumika; Sakai, Ken
4,4′-{[(2,2′-Bipyridine)-5,5′-dicarbonyl]bis(azanediyl)}bis(1-methylpyridin-1-ium) bis[hexafluoridophosphate(V)] acetonitrile disolvate
IUCrData, 2025, 10, x250517
1574937 CIFC38 H33 Mn2 N10 O5 ReP n a 2117.9573; 14.299; 14.6854
90; 90; 90
3770.79Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574938 CIFC38 H28 Mn2 N10 O4 ReP 4/n c c :214.4061; 14.4061; 18.3403
90; 90; 90
3806.3Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574939 CIFC38 H28 Mn2 N10 O4 ReP 4/n c c :214.4843; 14.4843; 18.3887
90; 90; 90
3857.9Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574940 CIFC38 H28 Mn2 N10 O4 ReP 4/n :214.3742; 14.3742; 18.1157
90; 90; 90
3743.02Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574941 CIFC38 H28 Mn2 N10 O4 ReP 4/n c c :214.4601; 14.4601; 18.3914
90; 90; 90
3845.5Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574942 CIFC38 H28 Mn2 N10 O4 ReP 4/n c c :214.4217; 14.4217; 18.3812
90; 90; 90
3823Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574943 CIFC38 H26 Mn2 N10 O4 ReP 4/n :214.3719; 14.3719; 18.0827
90; 90; 90
3735.01Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574944 CIFC38 H28 Mn2 N10 O4 ReP 4/n c c :214.428; 14.428; 18.3832
90; 90; 90
3826.8Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574945 CIFC38 H28 Mn2 N10 O4 ReP 4/n :214.3963; 14.3963; 18.2533
90; 90; 90
3783.06Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574946 CIFC38 H26 Mn2 N10 O4 ReP 4/n :214.3992; 14.3992; 18.2847
90; 90; 90
3791.09Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574947 CIFC38 H28 Mn2 N10 O4 ReP 4/n :214.3878; 14.3878; 18.169
90; 90; 90
3761.14Song, Yanqing; Tsuji, Yuta; Sugimoto, Kunihisa; Kikuchi, Takashi; Shi, Yuxin; Murakami, Yusuke; Hiramatsu, Kotaro; Le Ouay, Benjamin; Ohba, Masaaki; Ohtani, Ryo
A ferroelectric proton conductor with colossal polarization induced by in-plane symmetry breaking in a two-dimensional coordination polymer.
Chemical science, 2025, 16, 13413-13421
1574948 CIFC21 H32 Cl3 F6 N P2 RuP 1 21/c 18.718; 18.4723; 16.8326
90; 91.306; 90
2710Melnikov, Stanislav; Hwang, Donghun; Gabbert, Philip; Park, Bohyun; Lutz, Martin; Baik, Mu-Hyun; Broere, Daniël L J
Ruthenium-mediated nucleophilic aromatic substitution of hydrogen in benzene.
Chemical science, 2025, 16, 13422-13434
1574949 CIFC28 H48 Cl2 N2 P2 RuP 1 21/c 117.0703; 22.3344; 16.3747
90; 98.02; 90
6181.9Melnikov, Stanislav; Hwang, Donghun; Gabbert, Philip; Park, Bohyun; Lutz, Martin; Baik, Mu-Hyun; Broere, Daniël L J
Ruthenium-mediated nucleophilic aromatic substitution of hydrogen in benzene.
Chemical science, 2025, 16, 13422-13434
1574950 CIFC26 H47 N2 P Ru Si2P 1 21/c 113.9298; 16.2626; 13.8275
90; 112.534; 90
2893.26Melnikov, Stanislav; Hwang, Donghun; Gabbert, Philip; Park, Bohyun; Lutz, Martin; Baik, Mu-Hyun; Broere, Daniël L J
Ruthenium-mediated nucleophilic aromatic substitution of hydrogen in benzene.
Chemical science, 2025, 16, 13422-13434
1574951 CIFC79 H44 N9 O PP n m a15.6389; 13.6916; 23.9526
90; 90; 90
5128.8Röthel, Maike B; Franzen, Jonas H.; Leitner, Daniel; Hofer, Thomas S.; Seidl, Michael; Dielmann, Fabian
Phosphonium fullerides: isolable zwitterionic adducts of a phosphine with C<sub>60</sub>.
Chemical science, 2025, 16, 13189-13195
1574952 CIFC60 H65 Cd3 N10 O17P 1 21/c 115.4946; 24.9495; 18.6668
90; 113.048; 90
6640.2Pei, Li; Zhang, Jieming; Ding, Wenqin; Wang, Jian; Huang, Fangmin; Liu, Yanhong; Liu, Ziran; Gao, Yafei; Wu, Pengyan
Recyclable luminescent metal-organic frameworks with self-formed diketone-like sites for cascade ratiometric detection.
Nanoscale, 2025, 17, 17324-17333
1574953 CIFC28 H24 N4 O8P 1 21/n 115.9306; 6.8372; 22.9367
90; 94.722; 90
2489.8Liu, Zihan; Zhao, Xinyi; Duan, Yuai; Li, Yaping; Wang, Zhijia; Wang, Zixuan; Zhang, Jiarong; Yuan, Jing; Geng, Hua; Han, Tianyu
An intelligent tactile imaging-recognition sensor system enabled <i>via</i> a methoxynitrobenzene-salicylaldehyde fluorescent material.
Materials horizons, 2025, 12, 8095-8109
1574954 CIF
Paper
C9 H12 Br2 Cl2P 1 21/c 17.2027; 22.1157; 7.5534
90; 105.517; 90
1159.35Detert, Heiner; Schollmeyer, Dieter
rac-4,5-trans-Dibromo-9,9-dichloro-cis-bicyclo[6.1.0]nonane
IUCrData, 2025, 10, x250573
1574955 CIF
Paper
C20 H28 N2 O5P 21 21 217.9541; 12.5763; 20.3351
90; 90; 90
2034.18Naeem, Marilyn; Chadeayne, Andrew R.; Golen, James A.; Manke, David R.
4-Hydroxy-N,N-diisopropyltryptammonium hydrofumarate
IUCrData, 2025, 10, x250564
1574956 CIF
Paper
C16 H30 Mn O6 S4C 1 2/c 138.4331; 5.4083; 11.0637
90; 93.566; 90
2295.22Jumabaev, Farkhod Raxmatovich; Sharipov, Avez Tuymuradovich; Mannopova, Vazirakhon Khasanxoja kizi; Choriyev, Odil Irgashevich; Ashurov, Jamshid Mengnorovich
Diaquabis(DL-α-lipoato-κ2 O,O′)manganese(II)
IUCrData, 2025, 10, x250565
1574957 CIF
Paper
C36 H23 F12 N2 Nd O8 S4C 1 2/c 117.3191; 12.6547; 20.5387
90; 103.772; 90
4372.01Bravo-Arredondo, José Manuel; Bernès, Sylvain; Mejía, Karen; Anzaldo, Bertin; Ramírez, Erick; Moro, David
2-Methylimidazolium tetrakis(2-thenoyltrifluoroacetonato-κ2 O,O′)neodymium(III)
IUCrData, 2025, 10, x250569
1574958 CIFC75 H130 Al2 N6 P2 Si2P -110.4696; 10.7334; 19.3518
91.039; 104.121; 105.729
2021.7Xu, Huihui; León Baeza, José Miguel; Baceiredo, Antoine; Rojas Guerrero, René Segundo; Saffon-Merceron, Nathalie; Branchadell, Vicenç; Kato, Tsuyoshi
Aluminacyclopropene-phosphine complex: a carbene-exchange reagent.
Chemical science, 2025, 16, 14225-14230
1574959 CIFC62 H99 Al Cl Cu N5 P SiP 1 21/c 124.8337; 10.5705; 25.3214
90; 109.228; 90
6276.2Xu, Huihui; León Baeza, José Miguel; Baceiredo, Antoine; Rojas Guerrero, René Segundo; Saffon-Merceron, Nathalie; Branchadell, Vicenç; Kato, Tsuyoshi
Aluminacyclopropene-phosphine complex: a carbene-exchange reagent.
Chemical science, 2025, 16, 14225-14230
1574960 CIFC46 H79 Al N5 P SiP 1 21/n 113.896; 17.3957; 19.5978
90; 104.351; 90
4589.6Xu, Huihui; León Baeza, José Miguel; Baceiredo, Antoine; Rojas Guerrero, René Segundo; Saffon-Merceron, Nathalie; Branchadell, Vicenç; Kato, Tsuyoshi
Aluminacyclopropene-phosphine complex: a carbene-exchange reagent.
Chemical science, 2025, 16, 14225-14230
1574961 CIFC46 H79 Al N5 P SiP 1 21/n 112.659; 17.5105; 20.6407
90; 90.19; 90
4575.3Xu, Huihui; León Baeza, José Miguel; Baceiredo, Antoine; Rojas Guerrero, René Segundo; Saffon-Merceron, Nathalie; Branchadell, Vicenç; Kato, Tsuyoshi
Aluminacyclopropene-phosphine complex: a carbene-exchange reagent.
Chemical science, 2025, 16, 14225-14230
1574962 CIFC62 H101 Al N5 O P SiP -112.0584; 13.9968; 18.0629
90.561; 92.765; 98.516
3011.1Xu, Huihui; León Baeza, José Miguel; Baceiredo, Antoine; Rojas Guerrero, René Segundo; Saffon-Merceron, Nathalie; Branchadell, Vicenç; Kato, Tsuyoshi
Aluminacyclopropene-phosphine complex: a carbene-exchange reagent.
Chemical science, 2025, 16, 14225-14230
1574963 CIFC50 H87 Al N5 P SiP 1 21/c 115.9863; 17.6296; 18.6567
90; 95.958; 90
5229.7Xu, Huihui; León Baeza, José Miguel; Baceiredo, Antoine; Rojas Guerrero, René Segundo; Saffon-Merceron, Nathalie; Branchadell, Vicenç; Kato, Tsuyoshi
Aluminacyclopropene-phosphine complex: a carbene-exchange reagent.
Chemical science, 2025, 16, 14225-14230
1574964 CIFC46 H79 Al N5 P SiP 1 21/n 112.1189; 21.9059; 18.1582
90; 100.85; 90
4734.4Xu, Huihui; León Baeza, José Miguel; Baceiredo, Antoine; Rojas Guerrero, René Segundo; Saffon-Merceron, Nathalie; Branchadell, Vicenç; Kato, Tsuyoshi
Aluminacyclopropene-phosphine complex: a carbene-exchange reagent.
Chemical science, 2025, 16, 14225-14230
1574965 CIFC60 H104 Cu2 N6 Se2 Si6P 1 21/n 116.06; 9.6579; 22.092
90; 91.67; 90
3425.1Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574966 CIFC56 H86 Cu2 N4 O2 Si2P -110.836; 11.503; 11.911
100.995; 101.007; 99.443
1399.3Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574967 CIFC57.5 H94 B2 Cu2 N6 O4 Si6P 1 21/c 110.839; 18.764; 17.165
90; 91.861; 90
3489.2Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574968 CIFC66 H102 Ag2 N6 P2 Si6P 1 21/c 110.4355; 27.531; 13.1929
90; 103.102; 90
3691.6Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574969 CIFC60 H104 Ag2 N6 Se2 Si6P 1 21/n 19.8038; 25.541; 14.7234
90; 98.888; 90
3642.5Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574970 CIFC39 H63 Ag2 N3 Si3P -110.0668; 12.265; 19.889
78.55; 77.056; 65.83
2167.7Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574971 CIFC30 H52 Cu N3 Si3P 1 21/c 18.7311; 16.101; 24.398
90; 96.891; 90
3405.1Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574972 CIFC15 H15 B O2P n m a23.369; 11.3535; 4.5612
90; 90; 90
1210.2Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574973 CIFC40 H64 Cu N3 Si3P 1 21/c 121.7756; 9.2187; 22.1281
90; 102.979; 90
4328.6Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574974 CIFC46 H76 Cu N5 Si3C 1 c 117.1666; 13.51; 22.268
90; 102.071; 90
5050.2Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574975 CIFC39 H60 Cu N3 Si2P 1 21/c 19.4686; 21.957; 19.381
90; 99.17; 90
3977.9Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574976 CIFC33 H51 Cu N3 P Si3P 1 21/c 110.4856; 26.848; 13.129
90; 102.797; 90
3604.2Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574977 CIFC33 H58 Cu N3 Si3P -112.089; 12.897; 13.78
85.671; 71.467; 66.64
1866.9Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574978 CIFC65 H100 Cu2 N6 Si6I b a 225.182; 13.756; 20.876
90; 90; 90
7232Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574979 CIFC33 H41 Ag F10 N4 Si3P 1 21/n 115.1058; 13.7633; 19.4686
90; 106.283; 90
3885.3Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574980 CIFC127 H196 N12 Si8P 1 21/n 110.07; 39.582; 16.882
90; 102.573; 90
6568Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574981 CIFC48 H68 Cl2 Cu2 N4 Si2P 1 21/n 110.1287; 13.8838; 17.7827
90; 94.649; 90
2492.5Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574982 CIFC33 H58 Ag N3 Si3P -112.0478; 13.1539; 13.8184
86.515; 71.449; 67.362
1911.4Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574983 CIFC36 H64 Ag N3 Si3P 1 21/c 19.365; 20.278; 21.736
90; 97.745; 90
4090Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574984 CIFC31 H36 Cu N3 Se Si3C 1 2/c 117.82; 11.6656; 31.588
90; 97.787; 90
6506Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574985 CIFC35 H56 Cu N5 Si3P 1 21/c 111.5755; 14.9774; 22.191
90; 90.984; 90
3846.7Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574986 CIFC34 H55 Cu N4 Si3P -112.8772; 13.0612; 14.7699
70.646; 75.242; 60.717
2031.3Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574987 CIFC33 H41 Cu F10 N4 Si3P 1 21/n 114.938; 13.376; 19.384
90; 105.935; 90
3724.3Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574988 CIFC28.5 H49 Cu N4 Si3C 1 c 18.9008; 40.36; 19.289
90; 101.101; 90
6800Ghosh, Moushakhi; Gaurav, Kumar; Panwaria, Prakash; Panday, Rishukumar; Tothadi, Srinu; Khan, Shabana
Driving diverse bond functionalisation with <i>N</i>-heterocyclic silylene-coinage metal-aryl complexes.
Chemical science, 2025, 16, 14518-14533
1574989 CIFC14 H17 B N2 O S SiP -18.7713; 9.3831; 10.1855
84.231; 69.773; 75.245
760.579Wüst, Leonie; Chorbacher, Johannes; Keim, Timo; Wellnitz, Tim; Spieß, Julian; Wieprecht, Nele; Michel, Maximilian; Helten, Holger; Braunschweig, Holger
Tuning the emission properties of luminescent 1,2,3-diazaborinates.
Chemical science, 2025, 16, 15086-15096
1574990 CIFC17 H13 B N2 SP 1 21/n 111.1933; 9.5312; 13.974
90; 101.575; 90
1460.51Wüst, Leonie; Chorbacher, Johannes; Keim, Timo; Wellnitz, Tim; Spieß, Julian; Wieprecht, Nele; Michel, Maximilian; Helten, Holger; Braunschweig, Holger
Tuning the emission properties of luminescent 1,2,3-diazaborinates.
Chemical science, 2025, 16, 15086-15096
1574991 CIFC32 H44 N4 O6P 21 21 217.8893; 9.6176; 41.2385
90; 90; 90
3129.02Sowa Prendes, Daniel; Löffler, Julian; Barreto, Ivan Martins; Sankaran, Nagesh; Remm, Henning; Nascimento de Oliveira, Ronaldo; Gessner, Viktoria H.; Gooßen, Lukas J
Diastereoselective arylation of bis-lactim ethers catalyzed by <i>N</i>-coordinating ylide-functionalized phosphine (NYPhos).
Chemical science, 2025, 16, 14152-14160
1574992 CIFC37 H63 N3 P2P -114.591; 17.3926; 18.466
102.698; 97.838; 114.743
4011.6Sowa Prendes, Daniel; Löffler, Julian; Barreto, Ivan Martins; Sankaran, Nagesh; Remm, Henning; Nascimento de Oliveira, Ronaldo; Gessner, Viktoria H.; Gooßen, Lukas J
Diastereoselective arylation of bis-lactim ethers catalyzed by <i>N</i>-coordinating ylide-functionalized phosphine (NYPhos).
Chemical science, 2025, 16, 14152-14160
1574993 CIFC25 H51 N3 P2P -117.505; 18.2908; 20.1417
66.305; 68.119; 72.629
5395.23Sowa Prendes, Daniel; Löffler, Julian; Barreto, Ivan Martins; Sankaran, Nagesh; Remm, Henning; Nascimento de Oliveira, Ronaldo; Gessner, Viktoria H.; Gooßen, Lukas J
Diastereoselective arylation of bis-lactim ethers catalyzed by <i>N</i>-coordinating ylide-functionalized phosphine (NYPhos).
Chemical science, 2025, 16, 14152-14160
1574994 CIFC19 H18 Cl2 N2 O2 SP b c n28.9107; 14.6104; 9.1891
90; 90; 90
3881.4Vijay, Ragupathi; Yogesh, Dasari; Shanmugam, Ramasamy; Lingaiah, Nakka; Ponpandian, Thanasekaran; Gunasekar, Gunniya Hariyanandam
A metal-free porous organic polymer-based heterogeneous catalyst for the borrowing hydrogen-mediated N-alkylation of sulfonamides with alcohols
Catalysis Science & Technology, 2025, 15, 4684-4691
1574995 CIFC104 H130 Cu2 O27P 1 21/c 122.468; 10.54; 20.861
90; 91.8; 90
4937.7Jia, Xiao-Ran; Gao, Zi-Xuan; Fei, Hai-Ming; Lan, Li-Juan; Yu, Cai-Xia; Qian, Yong; Liu, Lei-Lei
Highly efficient and selective Sr<sup>2+</sup> capture using robust two-dimensional MOF nanosheets decorated with cage-like cavities.
Chemical science, 2025, 16, 14231-14241
1574996 CIFC14 H22 Cl2 N2 Ni O4 S2P -15.6865; 8.1059; 10.908
98.438; 101.431; 101.186
474.41Kong, Xianqiang; Chen, Yiyi; Zhang, Shuangquan; Feng, Kun; Chen, Xiaohui; Dong, Lin-Hui; Li, Meng-Hua; Xu, Yuan-Qing; Cao, Zhong-Yan
Electrochemically promoted defluorinative sulfoximination and fluorosulfonylation of non-activated aryl fluorides at room temperature.
Chemical science, 2025, 16, 14161-14169
1574997 CIFC21 H20 N2 O5P 1 21/c 114.018; 17.554; 7.8113
90; 104.941; 90
1857.2Vinod, Kavya; Thomas, Diana; Hariharan, Mahesh
Structural disorder as a key to photoprotection in eumelanin multimers.
Chemical science, 2025, 16, 14304-14313
1574998 CIFC115.2 H174.8 N8 O4 U2P 1 21/c 19.8734; 20.7159; 26.4929
90; 96.162; 90
5387.5Shivaraam, R. A. Keerthi; Maria, Leonor; Rajeshkumar, Thayalan; Scopelliti, Rosario; Živković, Ivica; Sienkiewicz, Andrzej; Maron, Laurent; Mazzanti, Marinella
Facile N-C bond cleavage and arene reduction by a transient uranium(ii) complex.
Chemical science, 2025, 16, 14242-14251
1574999 CIFC57 H104 N4 O6 Si UP -111.2069; 14.7053; 18.7776
84.7; 80.165; 82.473
3015.04Shivaraam, R. A. Keerthi; Maria, Leonor; Rajeshkumar, Thayalan; Scopelliti, Rosario; Živković, Ivica; Sienkiewicz, Andrzej; Maron, Laurent; Mazzanti, Marinella
Facile N-C bond cleavage and arene reduction by a transient uranium(ii) complex.
Chemical science, 2025, 16, 14242-14251
1575000 CIFC50 H86 N4 O4 UP 1 21/n 116.1897; 15.6587; 19.7929
90; 96.971; 90
4980.6Shivaraam, R. A. Keerthi; Maria, Leonor; Rajeshkumar, Thayalan; Scopelliti, Rosario; Živković, Ivica; Sienkiewicz, Andrzej; Maron, Laurent; Mazzanti, Marinella
Facile N-C bond cleavage and arene reduction by a transient uranium(ii) complex.
Chemical science, 2025, 16, 14242-14251
1575001 CIFC130 H166 O18P 1 21/n 112.587; 20.924; 22.9
90; 90.935; 90
6030Ohtani, Shunsuke; Nakagawa, Keigo; Akine, Shigehisa; Kato, Kenichi; Ogoshi, Tomoki
Dimerization of pillar[5]arene: length-adaptive encapsulation of long-chain guests.
Chemical science, 2025, 16, 14262-14269
1575002 CIFC126.89 H168.73 O18P -112.062; 21.595; 23.1024
95.788; 92.174; 99.902
5888Ohtani, Shunsuke; Nakagawa, Keigo; Akine, Shigehisa; Kato, Kenichi; Ogoshi, Tomoki
Dimerization of pillar[5]arene: length-adaptive encapsulation of long-chain guests.
Chemical science, 2025, 16, 14262-14269
1575003 CIFC24 H16 Cl2 Mn N4P 1 21/n 110.2331; 17.097; 12.6421
90; 100.465; 90
2175Lin, Quan; Lin, Liping; Wang, Jingjing; Yu, Daohong; Chen, Zhengwang; Wang, Zhong-Xia
Manganese-mediated C(sp)-Si cross-electrophile coupling of alkynyl halides with chlorosilanes.
Chemical science, 2025, 16, 14216-14224
1575004 CIFC27 H22 Cl N5 O RuP 21 21 219.4383; 15.9847; 18.7749
90; 90; 90
2832.5Chen, Guo; Ding, Xiao-Lv; He, Piao; Cheng, Tao; Chen, Yang; Lin, Jian; Zhang, Xi; Zhao, Shan; Qiao, Na; Yi, Xiao-Yi
Understanding the factors governing the ammonia oxidation reaction by a mononuclear ruthenium complex
Chemical Science, 2025, 16, 7573-7578
1575005 CIFC17 H15 N3 OP -19.4605; 9.5615; 9.9418
116.535; 108.263; 100.865
704.62Chen, Guo; Ding, Xiao-Lv; He, Piao; Cheng, Tao; Chen, Yang; Lin, Jian; Zhang, Xi; Zhao, Shan; Qiao, Na; Yi, Xiao-Yi
Understanding the factors governing the ammonia oxidation reaction by a mononuclear ruthenium complex
Chemical Science, 2025, 16, 7573-7578
1575006 CIFC6 H5 Co0.5 N O3P 31 2 111.9831; 11.9831; 8.335
90; 90; 120
1036.51Hussain, Nissar; Mobin, Shaikh M.
Tailored design of an oxygen-rich stable Co-MOF integrated with MXene nanofibers as an advanced heterostructure for high-performance ammonium-ion supercapacitors
Chemical Science, 2025, 16, 8460-8469
1575007 CIFC402.5 H396 Au21 Br Cl20 Cu30 F54 N17 P18 S9 Sb9P -126.3081; 31.481; 32.9947
71.067; 86.315; 89.79
25790Zhang, Wei; Xu, Tingting; Kong, Jie; Li, Yuanming; Zhou, Xiaoguo; Zhang, Jiachen; Zhang, Qun; Song, Yongbo; Luo, Yi; Zhou, Meng
Intensive near-infrared emitting Au7Cu10 nanoclusters for both energy and electron harvesting
Chemical Science, 2025, 16, 8910-8921
1575008 CIFC81 H70 B4 Cl2 S4P 1 21/c 116.014; 14.2052; 15.6151
90; 106.374; 90
3408.09Narita, Hiroki; Virovets, Alexander; Lerner, Hans-Wolfram; Wagner, Matthias; Yamaguchi, Shigehiro
Intramolecular arylsulfide-coordinated diboraanthracenes: effect of B–S coordination on ground-state and excited-state behavior
Chemical Science, 2025, 16, 8764-8771
1575009 CIFC63 H42 B2 Cl2 F6 S2P -18.0487; 11.461; 13.8943
83.718; 78.136; 84.362
1243Narita, Hiroki; Virovets, Alexander; Lerner, Hans-Wolfram; Wagner, Matthias; Yamaguchi, Shigehiro
Intramolecular arylsulfide-coordinated diboraanthracenes: effect of B–S coordination on ground-state and excited-state behavior
Chemical Science, 2025, 16, 8764-8771
1575010 CIFC72 H70 B2 S2I 41/a :228.7061; 28.7061; 13.725
90; 90; 90
11310Narita, Hiroki; Virovets, Alexander; Lerner, Hans-Wolfram; Wagner, Matthias; Yamaguchi, Shigehiro
Intramolecular arylsulfide-coordinated diboraanthracenes: effect of B–S coordination on ground-state and excited-state behavior
Chemical Science, 2025, 16, 8764-8771
1575011 CIFC42 H32 B2 F6 S2P -113.4613; 15.9611; 18.0475
88.617; 74.222; 75.94
3616.09Narita, Hiroki; Virovets, Alexander; Lerner, Hans-Wolfram; Wagner, Matthias; Yamaguchi, Shigehiro
Intramolecular arylsulfide-coordinated diboraanthracenes: effect of B–S coordination on ground-state and excited-state behavior
Chemical Science, 2025, 16, 8764-8771
1575012 CIFC26 H24 O2 P2P 1 21/n 111.443; 11.3282; 17.464
90; 102.219; 90
2212.5Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575013 CIFC78 H74 Cl4 Mn2 O7 P6C 1 c 111.2956; 26.7171; 25.3047
90; 100.865; 90
7499.7Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575014 CIFC78 H74 Cl4 Mn O7 P6 ZnC 1 c 111.2591; 26.7307; 25.1411
90; 100.52; 90
7439.4Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575015 CIFC79 H72 Cl4 Mn2 N2 O6 P6P 1 21/c 113.0568; 19.8458; 29.0464
90; 91.42; 90
7524.3Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575016 CIFC52 H48 Cl4 O5 P4 Zn2R -3 :H26.4176; 26.4176; 20.5907
90; 90; 120
12444.8Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575017 CIFC78 H72 Cl4 Mn2 O6 P6C 1 c 111.4017; 27.3917; 25.2074
90; 99.877; 90
7755.9Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575018 CIFC78 H72 Cl4 Mn2 O6 P6C 1 c 111.3912; 27.2867; 25.2528
90; 100.008; 90
7729.8Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575019 CIFC78 H74 Cl4 Mn2 O7 P6C 1 c 111.3782; 27.137; 25.3156
90; 100.19; 90
7693.4Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575020 CIFC78 H72 Cl4 Mn2 O6 P6C 1 c 111.2747; 26.9136; 25.1091
90; 100.442; 90
7493Hoffman, Aleksander; Zychowicz, Mikolaj; Wang, Junhao; Matsuura, Keisuke; Kagawa, Fumitaka; Rzepiela, Jan; Heczko, Michal; Baś, Sebastian; Tokoro, Hiroko; Ohkoshi, Shin-ichi; Chorazy, Szymon
Photoluminescent, dielectric, and magnetic responsivity to the humidity variation in SHG-active pyroelectric manganese(ii)-based molecular material
Chemical Science, 2025, 16, 8979-8997
1575021 CIFC27 H20 F N O6P 17.7941; 15.0015; 18.7462
95.028; 94.368; 92.216
2174.82Ren, Panlong; Zhao, Qing; Chi, Yonggui Robin; Zhu, Tingshun
Carbene-catalyzed enantioselective construction of a quasi-symmetrical spirocyclic hydroquinone with a minor chiral distinction
Chemical Science, 2025, 16, 8940-8945
1575022 CIFC48 H38 Cl2 O10P 1 21 113.2767; 7.8477; 19.7078
90; 109.306; 90
1937.92Ren, Panlong; Zhao, Qing; Chi, Yonggui Robin; Zhu, Tingshun
Carbene-catalyzed enantioselective construction of a quasi-symmetrical spirocyclic hydroquinone with a minor chiral distinction
Chemical Science, 2025, 16, 8940-8945
1575023 CIFC48 H38 Br2 O10P 1 21 113.3142; 7.8396; 19.8412
90; 108.449; 90
1964.55Ren, Panlong; Zhao, Qing; Chi, Yonggui Robin; Zhu, Tingshun
Carbene-catalyzed enantioselective construction of a quasi-symmetrical spirocyclic hydroquinone with a minor chiral distinction
Chemical Science, 2025, 16, 8940-8945
1575024 CIFC12 H18 B N3 O2 SP 1 21/n 110.0323; 14.0039; 10.9141
90; 116.185; 90
1375.98Ankudinov, Nikita M.; Alexeev, Nikita V.; Podyacheva, Evgeniya S.; Chusov, Denis A.; Lyssenko, Konstantin A.; Perekalin, Dmitry S.
Catalytic insertion of nitrenes into B–H bonds
Chemical Science, 2025, 16, 6298-6306
1575025 CIFC22 H29 B11 N2 O5 SP -17.0532; 13.9162; 14.4394
80.019; 81.48; 81.506
1369.6Ankudinov, Nikita M.; Alexeev, Nikita V.; Podyacheva, Evgeniya S.; Chusov, Denis A.; Lyssenko, Konstantin A.; Perekalin, Dmitry S.
Catalytic insertion of nitrenes into B–H bonds
Chemical Science, 2025, 16, 6298-6306
1575026 CIFC18 H11 B Br F5 N2 O3 SP 17.948; 8.047; 16.16
92.793; 100.437; 107.826
961.6Ankudinov, Nikita M.; Alexeev, Nikita V.; Podyacheva, Evgeniya S.; Chusov, Denis A.; Lyssenko, Konstantin A.; Perekalin, Dmitry S.
Catalytic insertion of nitrenes into B–H bonds
Chemical Science, 2025, 16, 6298-6306
1575027 CIFC19 H25 B N4 O4 S2P 1 21/n 115.601; 8.9989; 15.8836
90; 107.422; 90
2127.6Ankudinov, Nikita M.; Alexeev, Nikita V.; Podyacheva, Evgeniya S.; Chusov, Denis A.; Lyssenko, Konstantin A.; Perekalin, Dmitry S.
Catalytic insertion of nitrenes into B–H bonds
Chemical Science, 2025, 16, 6298-6306
1575028 CIFC18.86 H18.72 B Cl1.72 N2 O2 SP -115.0095; 15.3676; 17.4816
78.015; 77.183; 81.734
3825.9Ankudinov, Nikita M.; Alexeev, Nikita V.; Podyacheva, Evgeniya S.; Chusov, Denis A.; Lyssenko, Konstantin A.; Perekalin, Dmitry S.
Catalytic insertion of nitrenes into B–H bonds
Chemical Science, 2025, 16, 6298-6306
1575029 CIFC19.33 H11.33 Cl F3 N4 O SR 3 :H21.67271; 21.67271; 10.76754
90; 90; 120
4379.99Nimmo, Alastair J.; Goodfellow, Alister S.; Guntley, Jacob T.; McKay, Aidan P.; Cordes, David B.; Bühl, Michael; Smith, Andrew D.
Isothiourea catalysed enantioselective generation of point and axially chiral iminothia- and iminoselenazinanones
Chemical Science, 2025, 16, 10494-10502
1575030 CIFC21 H21 F3 N2 O3 S2P 21 21 218.07483; 15.56758; 17.59729
90; 90; 90
2212.08Nimmo, Alastair J.; Goodfellow, Alister S.; Guntley, Jacob T.; McKay, Aidan P.; Cordes, David B.; Bühl, Michael; Smith, Andrew D.
Isothiourea catalysed enantioselective generation of point and axially chiral iminothia- and iminoselenazinanones
Chemical Science, 2025, 16, 10494-10502
1575031 CIFC18 H13 F3 N2 O2 SeP 1 21 19.51115; 16.17558; 10.71507
90; 91.4505; 90
1647.97Nimmo, Alastair J.; Goodfellow, Alister S.; Guntley, Jacob T.; McKay, Aidan P.; Cordes, David B.; Bühl, Michael; Smith, Andrew D.
Isothiourea catalysed enantioselective generation of point and axially chiral iminothia- and iminoselenazinanones
Chemical Science, 2025, 16, 10494-10502
1575032 CIFC25 H37 B2 NP 1 21/n 111.2146; 14.2724; 13.2961
90; 105.298; 90
2052.76Bisai, Milan Kumar; Łosiewicz, Justyna; Nichol, Gary S.; Dominey, Andrew P.; Thomas, Stephen P.; Macgregor, Stuart A.; Ingleson, Michael J.
Ligand non-innocence and an unusual σ-bond metathesis step enables catalytic borylation using 9-borabicyclo-[3.3.1]-nonane
Chemical Science, 2025, 16, 9255-9263
1575033 CIFC24 H32 B2 S2P -16.5122; 9.5179; 10.1405
116.147; 98.075; 99.496
540.11Bisai, Milan Kumar; Łosiewicz, Justyna; Nichol, Gary S.; Dominey, Andrew P.; Thomas, Stephen P.; Macgregor, Stuart A.; Ingleson, Michael J.
Ligand non-innocence and an unusual σ-bond metathesis step enables catalytic borylation using 9-borabicyclo-[3.3.1]-nonane
Chemical Science, 2025, 16, 9255-9263
1575034 CIFC28 H34 B2 S3P 1 21 16.45827; 21.26402; 18.39205
90; 94.8085; 90
2516.87Bisai, Milan Kumar; Łosiewicz, Justyna; Nichol, Gary S.; Dominey, Andrew P.; Thomas, Stephen P.; Macgregor, Stuart A.; Ingleson, Michael J.
Ligand non-innocence and an unusual σ-bond metathesis step enables catalytic borylation using 9-borabicyclo-[3.3.1]-nonane
Chemical Science, 2025, 16, 9255-9263
1575035 CIFC22 H30 B2 S2P -16.4133; 8.766; 9.6703
112.891; 91.006; 102.222
486.47Bisai, Milan Kumar; Łosiewicz, Justyna; Nichol, Gary S.; Dominey, Andrew P.; Thomas, Stephen P.; Macgregor, Stuart A.; Ingleson, Michael J.
Ligand non-innocence and an unusual σ-bond metathesis step enables catalytic borylation using 9-borabicyclo-[3.3.1]-nonane
Chemical Science, 2025, 16, 9255-9263
1575036 CIFC29 H48 B3 NP n m a13.5001; 15.0759; 12.6679
90; 90; 90
2578.25Bisai, Milan Kumar; Łosiewicz, Justyna; Nichol, Gary S.; Dominey, Andrew P.; Thomas, Stephen P.; Macgregor, Stuart A.; Ingleson, Michael J.
Ligand non-innocence and an unusual σ-bond metathesis step enables catalytic borylation using 9-borabicyclo-[3.3.1]-nonane
Chemical Science, 2025, 16, 9255-9263
1575037 CIFC43 H63 B N2 ZnP 1 21/n 112.7925; 24.0811; 13.5539
90; 107.123; 90
3990.3Bisai, Milan Kumar; Łosiewicz, Justyna; Nichol, Gary S.; Dominey, Andrew P.; Thomas, Stephen P.; Macgregor, Stuart A.; Ingleson, Michael J.
Ligand non-innocence and an unusual σ-bond metathesis step enables catalytic borylation using 9-borabicyclo-[3.3.1]-nonane
Chemical Science, 2025, 16, 9255-9263
1575038 CIFC12 H16 Cu N2 O8P -16.3123; 6.8085; 9.1809
98.952; 105.115; 108.659
348.36Saha, Rajat; Sharma, Amitosh; Siddiqui, Anjila I.; Benmansour, Samia; Ortega-Castro, Joaquín; Frontera, Antonio; Mondal, Biswajit; Lah, Myoung Soo; Gómez García, Carlos J.
Simultaneous electron and proton conduction in a stable metal organic material with highly selective electrocatalytic oxygen reduction reaction to water
Chemical Science, 2025, 16, 9501-9508
1575039 CIFC22 H26 Br2 N PP n a 2111.8011; 13.8575; 26.5401
90; 90; 90
4340.2Chen, Jing-Hua; Luo, Jian-Bin; He, Zi-Lin; Peng, Qing-Peng; Wei, Jun-Hua; Zhang, Zhi-Zhong; Guo, Xiu-Xian; Kuang, Dai-Bin
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Chemical Science, 2025, 16, 9375-9384
1575040 CIFC24 H30 Br4 Mn N PP 1 21/n 113.0431; 11.9668; 18.5423
90; 100.809; 90
2842.81Chen, Jing-Hua; Luo, Jian-Bin; He, Zi-Lin; Peng, Qing-Peng; Wei, Jun-Hua; Zhang, Zhi-Zhong; Guo, Xiu-Xian; Kuang, Dai-Bin
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Chemical Science, 2025, 16, 9375-9384
1575041 CIFC24 H30 Br4 Mn N PP 1 21/n 113.0107; 12.3135; 18.7294
90; 101.032; 90
2945.1Chen, Jing-Hua; Luo, Jian-Bin; He, Zi-Lin; Peng, Qing-Peng; Wei, Jun-Hua; Zhang, Zhi-Zhong; Guo, Xiu-Xian; Kuang, Dai-Bin
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Chemical Science, 2025, 16, 9375-9384
1575042 CIFC24 H29 Br4 Mn N PP 1 21/n 113.0405; 11.9672; 18.5389
90; 100.787; 90
2842.03Chen, Jing-Hua; Luo, Jian-Bin; He, Zi-Lin; Peng, Qing-Peng; Wei, Jun-Hua; Zhang, Zhi-Zhong; Guo, Xiu-Xian; Kuang, Dai-Bin
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Chemical Science, 2025, 16, 9375-9384
1575043 CIFC24 H30 Br4 Mn N PP 1 21/n 113.0435; 11.7766; 18.3955
90; 100.719; 90
2776.39Chen, Jing-Hua; Luo, Jian-Bin; He, Zi-Lin; Peng, Qing-Peng; Wei, Jun-Hua; Zhang, Zhi-Zhong; Guo, Xiu-Xian; Kuang, Dai-Bin
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Chemical Science, 2025, 16, 9375-9384
1575044 CIFC22 H26 Br4 Mn N PP -18.5137; 12.2993; 12.7994
105.646; 95.716; 93.676
1278.38Chen, Jing-Hua; Luo, Jian-Bin; He, Zi-Lin; Peng, Qing-Peng; Wei, Jun-Hua; Zhang, Zhi-Zhong; Guo, Xiu-Xian; Kuang, Dai-Bin
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Chemical Science, 2025, 16, 9375-9384
1575045 CIFC24 H30 Br4 Mn N PP 1 21/n 113.0324; 12.1492; 18.6523
90; 100.893; 90
2900.1Chen, Jing-Hua; Luo, Jian-Bin; He, Zi-Lin; Peng, Qing-Peng; Wei, Jun-Hua; Zhang, Zhi-Zhong; Guo, Xiu-Xian; Kuang, Dai-Bin
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Chemical Science, 2025, 16, 9375-9384
1575046 CIFC24 H29.5 Br2 N PP 1 21/c 127.4156; 14.9303; 11.6527
90; 101.431; 90
4675.1Chen, Jing-Hua; Luo, Jian-Bin; He, Zi-Lin; Peng, Qing-Peng; Wei, Jun-Hua; Zhang, Zhi-Zhong; Guo, Xiu-Xian; Kuang, Dai-Bin
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Chemical Science, 2025, 16, 9375-9384
1575047 CIFC25 H20 N4 O4 S2P 14.6973; 11.16; 11.554
67.35; 82.509; 87.05
554.2Lai, Hui-Juan; Wang, Xu; Wang, Yuan; Wu, Wei-Na; Xu, Zhi-Hong
A Golgi-targeting fluorescent probe for the detection of hydrazine in biological and environmental systems.
Analytical methods : advancing methods and applications, 2025, 17, 6317-6325
1575048 CIFC24 H19 F O3P 1 21 19.2269; 13.0774; 15.755
90; 100.223; 90
1870.88Lin, Ziwei; Jiang, Yuqing; Wang, Fen; Huang, Genping; Li, Jessica; Li, Xingwei
Palladium-catalyzed redox diversified entry to axially chiral styrenes <i>via</i> asymmetric olefination with alkynes.
Chemical science, 2025, 16, 14252-14261
1575049 CIFC152 H132 N4 O20 S4P 1 21 19.8872; 31.082; 11.0103
90; 108.905; 90
3201.1Lin, Ziwei; Jiang, Yuqing; Wang, Fen; Huang, Genping; Li, Jessica; Li, Xingwei
Palladium-catalyzed redox diversified entry to axially chiral styrenes <i>via</i> asymmetric olefination with alkynes.
Chemical science, 2025, 16, 14252-14261
1575050 CIFC30 H33 N O5 SP 21 21 2110.0206; 15.6245; 17.2804
90; 90; 90
2705.5Lin, Ziwei; Jiang, Yuqing; Wang, Fen; Huang, Genping; Li, Jessica; Li, Xingwei
Palladium-catalyzed redox diversified entry to axially chiral styrenes <i>via</i> asymmetric olefination with alkynes.
Chemical science, 2025, 16, 14252-14261
1575051 CIFC12 H18 N6 O6 S2P 1 21/c 111.359; 9.285; 9.048
90; 101.453; 90
935.3Spencer, Rochelle B.; Yusov, Anna; Dillon, Alexandra M.; Tiwari, Akash; Arteaga, Oriol; Sburlati, Sophia; Whittaker, St John; Wu, Wantong; Chen, Sixian; Shtukenberg, Alexander G.; Ward, Michael D.; Kahr, Bart; Lee, Stephanie S.
Guest removal from ring-banded guanidinium organosulfonate hydrogen-bonded frameworks.
Nanoscale, 2025, 17, 13727-13736
1575052 CIFC0.11 H0.27 B0.05 N0.05 O6.05 Si2.96C m c 2113.771; 17.3783; 5.0214
90; 90; 90
1201.7Liu, Li; Xie, Haodong; Ni, Xiang; Yang, Xue; Liu, Yan; Ma, Yufang; Yuan, Feixiang; Tao, Shuo; Wang, Lei; Zhu, Hongjun
Defective plane induced fractal TON zeolites for efficient hydroisomerization of long-chain hydrocarbons.
Nanoscale, 2025, 17, 11049-11059
1575053 CIFC12 H10 Br N3 OP b c a5.7564; 12.4294; 32.2384
90; 90; 90
2306.61Triviño-Rojas, Maida Katherine; Jiménez-Lopez, Santiago José; D’Vries, Richard; Aragón-Muriel, Alberto; Polo-Cerón, Dorian
In Vitro Antibacterial Activities and Calf Thymus DNA–Bovine Serum Albumin Interactions of Tridentate NNO Hydrazone Schiff Base–Metal Complexes
Inorganics, 2025, 13, 213
1575054 CIFCa5.25 Co2.87 Cu3.88 O32 P8P 1 21/n 18.804; 4.897; 14.5772
90; 93.993; 90
626.94Yakubovich, Olga; Kiriukhina, Galina; Shvanskaya, Larisa; Vasiliev, Alexander
Crystal Chemistry and Thermodynamic Properties of Mineralogically Probable Phosphate Ca2.62Cu1.94Co1.44(PO4)4—Structurally Related to Natural Arsenate Zubkovaite
Minerals, 2025, 15, 645
1575055 CIFC18 H16 Cl N4 O4 Re SP 1 21 16.8027; 14.4708; 11.1451
90; 107.098; 90
1048.64Abdallah, Abanoub Mosaad; Wolff, Mariusz; Leygue, Nadine; Deleuzière, Maëlle; Saffon-Merceron, Nathalie; Serpentini, Charles-Louis; Benoist, Eric; Fery-Forgues, Suzanne
Influence of Ligand Isomerism on the Photophysical Properties of AIPE-Active Rhenium(I) Complexes: Investigations with a 2-(1,2,3-Triazol-1-yl)pyridine (Tapy)-Based Complex and Its Triazolylidene Derivatives
Molecules, 2025, 30, 2776
1575056 CIFC18 H14 Cl3 N4 O3 ReP -17.9671; 11.1386; 12.6625
89.6778; 79.3892; 75.9949
1070.76Abdallah, Abanoub Mosaad; Wolff, Mariusz; Leygue, Nadine; Deleuzière, Maëlle; Saffon-Merceron, Nathalie; Serpentini, Charles-Louis; Benoist, Eric; Fery-Forgues, Suzanne
Influence of Ligand Isomerism on the Photophysical Properties of AIPE-Active Rhenium(I) Complexes: Investigations with a 2-(1,2,3-Triazol-1-yl)pyridine (Tapy)-Based Complex and Its Triazolylidene Derivatives
Molecules, 2025, 30, 2776
1575057 CIFC18 H14 Cl N4 O3 ReP 1 21/c 18.3767; 7.3859; 30.3253
90; 95.9593; 90
1866.07Abdallah, Abanoub Mosaad; Wolff, Mariusz; Leygue, Nadine; Deleuzière, Maëlle; Saffon-Merceron, Nathalie; Serpentini, Charles-Louis; Benoist, Eric; Fery-Forgues, Suzanne
Influence of Ligand Isomerism on the Photophysical Properties of AIPE-Active Rhenium(I) Complexes: Investigations with a 2-(1,2,3-Triazol-1-yl)pyridine (Tapy)-Based Complex and Its Triazolylidene Derivatives
Molecules, 2025, 30, 2776
1575058 CIFC18 H14 Cl N4 O3 ReP -19.3125; 12.2753; 16.5599
88.747; 88.494; 79.656
1861.33Abdallah, Abanoub Mosaad; Wolff, Mariusz; Leygue, Nadine; Deleuzière, Maëlle; Saffon-Merceron, Nathalie; Serpentini, Charles-Louis; Benoist, Eric; Fery-Forgues, Suzanne
Influence of Ligand Isomerism on the Photophysical Properties of AIPE-Active Rhenium(I) Complexes: Investigations with a 2-(1,2,3-Triazol-1-yl)pyridine (Tapy)-Based Complex and Its Triazolylidene Derivatives
Molecules, 2025, 30, 2776
1575059 CIFC158 H202 Fe4 Se2 Sn2P 1 21/n 119.3954; 35.2095; 21.6237
90; 113.369; 90
13555.5Iijima, Keisuke; Sugamata, Koh; Sasamori, Takahiro
Ferrocenyl Substituted Stannanethione and Stannaneselone
Molecules, 2025, 30, 2826
1575060 CIFC76 H98 Fe2 S4 SnP 1 21/n 115.4833; 22.5112; 20.9383
90; 108.018; 90
6940.1Iijima, Keisuke; Sugamata, Koh; Sasamori, Takahiro
Ferrocenyl Substituted Stannanethione and Stannaneselone
Molecules, 2025, 30, 2826
1575061 CIFC76 H98 Fe2 S5.2 SnP n n a18.3966; 30.5224; 13.0978
90; 90; 90
7354.52Iijima, Keisuke; Sugamata, Koh; Sasamori, Takahiro
Ferrocenyl Substituted Stannanethione and Stannaneselone
Molecules, 2025, 30, 2826
1575062 CIFC76 H98 Fe2 Se4.2 SnP 1 21/n 125.7657; 11.3819; 25.9495
90; 111.185; 90
7095.72Iijima, Keisuke; Sugamata, Koh; Sasamori, Takahiro
Ferrocenyl Substituted Stannanethione and Stannaneselone
Molecules, 2025, 30, 2826
1575063 CIFC88 H114 Fe2 S SnP -112.6041; 13.7615; 23.5222
97.278; 103.25; 100.371
3845.9Iijima, Keisuke; Sugamata, Koh; Sasamori, Takahiro
Ferrocenyl Substituted Stannanethione and Stannaneselone
Molecules, 2025, 30, 2826
1575064 CIFC82 H114 Fe2 O S SnP 1 2/c 111.5071; 16.237; 20.2036
90; 104.665; 90
3651.88Iijima, Keisuke; Sugamata, Koh; Sasamori, Takahiro
Ferrocenyl Substituted Stannanethione and Stannaneselone
Molecules, 2025, 30, 2826
1575065 CIFC26 H21 B N2 O2I 41/a :226.6167; 26.6167; 11.781
90; 90; 90
8346.2Cinco, Anita; Ardizzoia, G. Attilio; Brenna, Stefano; Therrien, Bruno; Colombo, Gioele
Boron-Centered Compounds: Exploring the Optical Properties of Spiro Derivatives with Imidazo[1,5-<i>a</i>]Pyridines.
Molecules (Basel, Switzerland), 2025, 30, 2552
1575066 CIFC65.1 H32.4 Cl16 N2P -18.2856; 17.898; 21.953
108.813; 97.313; 93.276
3039.8Arnold, Mona E.; Lebzelter, Anika; Thielert, Philipp; Blinder, Rémi; Schmid, Jonas; Zolg, Julia; Spatola, Emanuele; Jelezko, Fedor; von Delius, Max; Richert, Sabine; Kuehne, Alexander J. C.
Photostable triphenylmethyl-based diradicals with a degenerate singlet-triplet ground state and strong photoluminescence.
Chemical science, 2025, 16, 14616-14624
1575067 CIFC401 H398.2 B10.45 Br6.8 Cl0.15 F41.8 N72 Ni8 O40P -121.8986; 22.3981; 43.4906
104.597; 98.324; 94.218
20290.3Williams, James R.; Ward, Michael D.
An investigation into catalysed xanthene-based dye oxidation by a family of coordination cages.
Nanoscale, 2025, 17, 17285-17293
1575068 CIFC27 H27 B2 Co F8 N9P 1 21/n 112.6814; 12.1894; 20.2334
90; 104.141; 90
3032.88Williams, James R.; Ward, Michael D.
An investigation into catalysed xanthene-based dye oxidation by a family of coordination cages.
Nanoscale, 2025, 17, 17285-17293
1575069 CIFC372.2 H412.8 B12.75 Cl1.55 F51 Fe8 N72 O38.2C 1 2/c 132.9811; 30.0048; 39.7967
90; 96.454; 90
39132.9Williams, James R.; Ward, Michael D.
An investigation into catalysed xanthene-based dye oxidation by a family of coordination cages.
Nanoscale, 2025, 17, 17285-17293
1575070 CIFC406.5 H427.5 B10.82 F43.28 N75 Ni8 O40.5 S3P -121.4417; 22.1353; 24.3064
78.562; 72.319; 88.964
10762.1Williams, James R.; Ward, Michael D.
An investigation into catalysed xanthene-based dye oxidation by a family of coordination cages.
Nanoscale, 2025, 17, 17285-17293
1575071 CIFC12 H24 B10 S3 TiP b c a12.0927; 12.8115; 26.9444
90; 90; 90
4174.4Bairagi, Subhash; Patel, Deepak Kumar; Chatterjee, Debipada; Kučeráková, Monika; Macháček, Jan; Base, Tomas; Pradeep, Thalappil; Ghosh, Sundargopal
Cluster <i>versus</i> coordination: the chemistry of cyclopentadienyl titanium and vanadium complexes with B- and C-functionalized carborane-thiols, [C<sub>2</sub>B<sub>10</sub>H<sub>12-<i>n</i></sub> (SH) <sub><i>n</i></sub> ] (<i>n</i> = 2 or 3).
Chemical science, 2025, 16, 14127-14139
1575072 CIFC12 H24 B9 S3 VP 1 21/n 110.449; 14.2128; 13.26
90; 92.289; 90
1967.7Bairagi, Subhash; Patel, Deepak Kumar; Chatterjee, Debipada; Kučeráková, Monika; Macháček, Jan; Base, Tomas; Pradeep, Thalappil; Ghosh, Sundargopal
Cluster <i>versus</i> coordination: the chemistry of cyclopentadienyl titanium and vanadium complexes with B- and C-functionalized carborane-thiols, [C<sub>2</sub>B<sub>10</sub>H<sub>12-<i>n</i></sub> (SH) <sub><i>n</i></sub> ] (<i>n</i> = 2 or 3).
Chemical science, 2025, 16, 14127-14139
1575073 CIFC7 H14 B10 S3 TiP b c a13.4518; 12.5002; 19.0272
90; 90; 90
3199.4Bairagi, Subhash; Patel, Deepak Kumar; Chatterjee, Debipada; Kučeráková, Monika; Macháček, Jan; Base, Tomas; Pradeep, Thalappil; Ghosh, Sundargopal
Cluster <i>versus</i> coordination: the chemistry of cyclopentadienyl titanium and vanadium complexes with B- and C-functionalized carborane-thiols, [C<sub>2</sub>B<sub>10</sub>H<sub>12-<i>n</i></sub> (SH) <sub><i>n</i></sub> ] (<i>n</i> = 2 or 3).
Chemical science, 2025, 16, 14127-14139
1575074 CIFC12 H27 B11 S2 TiP b c a12.1687; 12.8758; 26.9268
90; 90; 90
4218.9Bairagi, Subhash; Patel, Deepak Kumar; Chatterjee, Debipada; Kučeráková, Monika; Macháček, Jan; Base, Tomas; Pradeep, Thalappil; Ghosh, Sundargopal
Cluster <i>versus</i> coordination: the chemistry of cyclopentadienyl titanium and vanadium complexes with B- and C-functionalized carborane-thiols, [C<sub>2</sub>B<sub>10</sub>H<sub>12-<i>n</i></sub> (SH) <sub><i>n</i></sub> ] (<i>n</i> = 2 or 3).
Chemical science, 2025, 16, 14127-14139
1575075 CIFC83 H130 B10 S15 Ti10P 1 21/n 122.5923; 21.4585; 12.9948
90; 96.737; 90
6256.3Bairagi, Subhash; Patel, Deepak Kumar; Chatterjee, Debipada; Kučeráková, Monika; Macháček, Jan; Base, Tomas; Pradeep, Thalappil; Ghosh, Sundargopal
Cluster <i>versus</i> coordination: the chemistry of cyclopentadienyl titanium and vanadium complexes with B- and C-functionalized carborane-thiols, [C<sub>2</sub>B<sub>10</sub>H<sub>12-<i>n</i></sub> (SH) <sub><i>n</i></sub> ] (<i>n</i> = 2 or 3).
Chemical science, 2025, 16, 14127-14139
1575076 CIFC88 H160 B40 O4 S20 Ti12P 1 21/c 113.468; 24.0416; 22.536
90; 100.988; 90
7163.2Bairagi, Subhash; Patel, Deepak Kumar; Chatterjee, Debipada; Kučeráková, Monika; Macháček, Jan; Base, Tomas; Pradeep, Thalappil; Ghosh, Sundargopal
Cluster <i>versus</i> coordination: the chemistry of cyclopentadienyl titanium and vanadium complexes with B- and C-functionalized carborane-thiols, [C<sub>2</sub>B<sub>10</sub>H<sub>12-<i>n</i></sub> (SH) <sub><i>n</i></sub> ] (<i>n</i> = 2 or 3).
Chemical science, 2025, 16, 14127-14139
1575077 CIFC43 H30 N2P -17.6245; 11.3457; 18.9104
98.867; 96.371; 104.22
1547.7Du, Yuqin; Peng, Yali; Dong, Wenjian; Xu, Huixia; Li, Xinyu; Chen, Kang; Wang, Feng; Miao, Yanqin; Tao, Peng; Wang, Hua; Yu, Junsheng
Hybridized local and charge-transfer materials using pyrene as π-bridge towards negligible efficiency roll-off in non-doped OLED.
Chemical science, 2025, 16, 14342-14349
1575078 CIFC30 H25 B Br2 F2 N2 O3P 1 21/c 17.88303; 9.5602; 36.0425
90; 93.3839; 90
2711.55Kuznetsov, Kirill M.; Mesdom, Pierre; Purkait, Kallol; Blacque, Olivier; Winter, Arthur H.; Cariou, Kevin; Gasser, Gilles
Phototoxicity of hydroxymethyl-BODIPYs: are photocages that innocent?
Chemical science, 2025, 16, 14553-14563
1575079 CIFC39 H34 B N O2P 1 21 19.4724; 36.55; 9.4864
90; 117.303; 90
2918.4Chen, Zi-Jian; Lu, Hsiu-Feng; Chiu, Chun-Wei; Liu, Yi-Hung; Hsu, Chao-Ping; Yang, Jye-Shane
Extrinsic gating of the rotary direction of a light-driven molecular motor by dynamic boronic acid-diol complexation.
Chemical science, 2025, 16, 14366-14376
1575080 CIFC25 H24 B N O2P b c a17.4621; 8.4696; 27.8916
90; 90; 90
4125.1Chen, Zi-Jian; Lu, Hsiu-Feng; Chiu, Chun-Wei; Liu, Yi-Hung; Hsu, Chao-Ping; Yang, Jye-Shane
Extrinsic gating of the rotary direction of a light-driven molecular motor by dynamic boronic acid-diol complexation.
Chemical science, 2025, 16, 14366-14376
1575081 CIFC36 H28 Cl2 Ir2 N8P 1 21/n 110.2164; 11.4613; 29.273
90; 90.266; 90
3427.6Wójcik, Patryk; Latouche, Camille; Suwińska, Kinga; Kamecka, Anna
Spectroscopic, structural and photophysical characterization of chloro-bridged iridium(III) and rhodium(III) dinuclear complexes with 1-phenyl-1<i>H</i>-pyrazole and their analogues with 1-(2,4-difluorophenyl)-1<i>H</i>-pyrazole.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 12018-12029
1575082 CIFC36 H20 Cl2 F8 N8 Rh2C 1 2/c 114.4351; 22.1559; 14.2328
90; 113.577; 90
4172Wójcik, Patryk; Latouche, Camille; Suwińska, Kinga; Kamecka, Anna
Spectroscopic, structural and photophysical characterization of chloro-bridged iridium(III) and rhodium(III) dinuclear complexes with 1-phenyl-1<i>H</i>-pyrazole and their analogues with 1-(2,4-difluorophenyl)-1<i>H</i>-pyrazole.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 12018-12029
1575083 CIFC32 H43 N2 ScC 1 2/c 135.035; 10.1418; 16.1052
90; 108.426; 90
5429.1You, Fen; Zhao, Yanan; Shi, Xiaochao
Octahydrofluorenyl rare-earth metal-catalyzed simultaneous chain-growth and step-growth polymerization of para-methoxystyrene
Polymer Chemistry, 2025, 16, 3650-3660
1575084 CIFC32 H43 Gd N2C 1 2/c 135.6226; 10.224; 16.1859
90; 108.227; 90
5599.2You, Fen; Zhao, Yanan; Shi, Xiaochao
Octahydrofluorenyl rare-earth metal-catalyzed simultaneous chain-growth and step-growth polymerization of para-methoxystyrene
Polymer Chemistry, 2025, 16, 3650-3660
1575085 CIFC32 H43 N2 TbC 1 2/c 135.5583; 10.2175; 16.1683
90; 108.351; 90
5575.5You, Fen; Zhao, Yanan; Shi, Xiaochao
Octahydrofluorenyl rare-earth metal-catalyzed simultaneous chain-growth and step-growth polymerization of para-methoxystyrene
Polymer Chemistry, 2025, 16, 3650-3660
1575086 CIFC32 H43 Er N2C 1 2/c 135.403; 10.1885; 16.1303
90; 108.195; 90
5527.3You, Fen; Zhao, Yanan; Shi, Xiaochao
Octahydrofluorenyl rare-earth metal-catalyzed simultaneous chain-growth and step-growth polymerization of para-methoxystyrene
Polymer Chemistry, 2025, 16, 3650-3660
1575087 CIFC42 H24 B N3C 1 2/c 123.5797; 8.776; 27.269
90; 98.793; 90
5576.6Xu, Yincai; Xue, Yufeng; Mei, Le; Xie, Zongliang; Wu, Zhu; Yin, Zheng; Chen, Xian-Kai; Wang, Yue; Liu, Bin
Organic full-color narrowband afterglow.
Materials horizons, 2025, 12, 8555-8564
1575088 CIFC H N OP 4220.6; 20.6; 7.36
90; 90; 90
3123.29Liu, Jiaqiang; Su, Xin; Xu, Yan; Tang, Weiwei; Yang, Taimin; Gong, Junbo
Facile and scalable synthesis of high-quality three-dimensional imine-linked covalent organic frameworks <i>via</i> crystalline intermediate transformation.
Chemical science, 2025, 16, 15037-15044
1575089 CIFC228 H128 N16 O16I 41/a :224.8; 24.8; 7.86
90; 90; 90
4834.21Liu, Jiaqiang; Su, Xin; Xu, Yan; Tang, Weiwei; Yang, Taimin; Gong, Junbo
Facile and scalable synthesis of high-quality three-dimensional imine-linked covalent organic frameworks <i>via</i> crystalline intermediate transformation.
Chemical science, 2025, 16, 15037-15044
1575090 CIFC23 H29 B O4P 21 21 216.6993; 14.819; 21.974
90; 90; 90
2181.5Ramudu, G. Raghu; Patil, Vaibhav B.; Nanubolu, Jagadeesh Babu; Chegondi, Rambabu
Cu(i)-catalyzed enantioselective and stereospecific borylative annulation of cyclic 1,3-dione-tethered 1,3-enynes.
Chemical science, 2025, 16, 14988-14994
1575091 CIFC29 H32 B Br O4P 21 21 216.661; 19.722; 20.481
90; 90; 90
2690.6Ramudu, G. Raghu; Patil, Vaibhav B.; Nanubolu, Jagadeesh Babu; Chegondi, Rambabu
Cu(i)-catalyzed enantioselective and stereospecific borylative annulation of cyclic 1,3-dione-tethered 1,3-enynes.
Chemical science, 2025, 16, 14988-14994
1575092 CIFC24 H23 N O5P -18.1618; 11.0202; 12.1858
80.226; 71.038; 81.929
1017.24Isono, Tomohiro; Harada, Shingo; Yanagawa, Mai; Nemoto, Tetsuhiro
Copper-catalyzed direct regioselective C5-H alkylation reactions of functionalized indoles with α-diazomalonates.
Chemical science, 2025, 16, 14967-14975
1575093 CIFC37 H28 N4 O4P -19.3355; 11.5289; 14.8376
100.397; 93.544; 110.076
1462Huber, Alexander; Thiele, Tobias; Rex, Tobias; Daniliuc, Constantin; Wölper, Christoph; Lorberg, Rick Y.; Höfmann, Lea; Strassert, Cristian A.; Giese, Michael; Voskuhl, Jens
Steric pressure in heteropentacenes modulates the photophysical properties - a molecular design strategy for functional materials.
Chemical science, 2025, 16, 15723-15733
1575094 CIFC22 H13 F2 N3 O2C 1 2/c 130.5559; 6.7574; 21.5694
90; 124.734; 90
3660Huber, Alexander; Thiele, Tobias; Rex, Tobias; Daniliuc, Constantin; Wölper, Christoph; Lorberg, Rick Y.; Höfmann, Lea; Strassert, Cristian A.; Giese, Michael; Voskuhl, Jens
Steric pressure in heteropentacenes modulates the photophysical properties - a molecular design strategy for functional materials.
Chemical science, 2025, 16, 15723-15733
1575095 CIFC34 H22 N4 O2P -16.8945; 7.9423; 12.3462
74.095; 83.457; 82.201
642.07Huber, Alexander; Thiele, Tobias; Rex, Tobias; Daniliuc, Constantin; Wölper, Christoph; Lorberg, Rick Y.; Höfmann, Lea; Strassert, Cristian A.; Giese, Michael; Voskuhl, Jens
Steric pressure in heteropentacenes modulates the photophysical properties - a molecular design strategy for functional materials.
Chemical science, 2025, 16, 15723-15733
1575096 CIFC36 H26 N4 O4P -17.684; 7.9687; 12.3504
71.581; 72.351; 85.723
683.53Huber, Alexander; Thiele, Tobias; Rex, Tobias; Daniliuc, Constantin; Wölper, Christoph; Lorberg, Rick Y.; Höfmann, Lea; Strassert, Cristian A.; Giese, Michael; Voskuhl, Jens
Steric pressure in heteropentacenes modulates the photophysical properties - a molecular design strategy for functional materials.
Chemical science, 2025, 16, 15723-15733
1575097 CIFC23 H15 F2 N3 O2P -111.6575; 12.9957; 14.0878
66.322; 89.808; 75.429
1880.21Huber, Alexander; Thiele, Tobias; Rex, Tobias; Daniliuc, Constantin; Wölper, Christoph; Lorberg, Rick Y.; Höfmann, Lea; Strassert, Cristian A.; Giese, Michael; Voskuhl, Jens
Steric pressure in heteropentacenes modulates the photophysical properties - a molecular design strategy for functional materials.
Chemical science, 2025, 16, 15723-15733
1575098 CIFC59 H54 B3 N O2P 1 21/n 117.4318; 7.66062; 34.8985
90; 98.133; 90
4613.42Wu, Sen; Chen, Dongyang; Seinfeld, Mathilde; McKay, Aidan P.; Cordes, David B.; Zhang, Xiaohong; Zysman-Colman, Eli
A three boron doped B/O/N multi-resonant TADF emitter for improved reverse intersystem crossing rate and efficient pure blue organic light-emitting diodes.
Chemical science, 2025, 16, 15256-15264
1575099 CIFC66 H50 N6 Na4 O25 Si2R -3 c :H12.1103; 12.1103; 94.1
90; 90; 120
11952Guan, Yu-Tao; Ji, Heng; Yang, Ju; Yu, Sai-Sai; Liu, Ming
Construction of helicates based on six-coordinated silicon centres.
Chemical science, 2025, 16, 14448-14454
1575100 CIFC105 H107.5 N9.5 Na4 O23.5 Si2P 312.0214; 12.0214; 46.609
90; 90; 120
5833Guan, Yu-Tao; Ji, Heng; Yang, Ju; Yu, Sai-Sai; Liu, Ming
Construction of helicates based on six-coordinated silicon centres.
Chemical science, 2025, 16, 14448-14454
1575101 CIFC212 H232 N14 Na8 O49 Si4P 63 2 212.0134; 12.0134; 44.831
90; 90; 120
5603.3Guan, Yu-Tao; Ji, Heng; Yang, Ju; Yu, Sai-Sai; Liu, Ming
Construction of helicates based on six-coordinated silicon centres.
Chemical science, 2025, 16, 14448-14454
1575102 CIFC92 H94 N6 Na4 O33 S3 Si2P 3 1 c15.2692; 15.2692; 28.4569
90; 90; 120
5745.8Guan, Yu-Tao; Ji, Heng; Yang, Ju; Yu, Sai-Sai; Liu, Ming
Construction of helicates based on six-coordinated silicon centres.
Chemical science, 2025, 16, 14448-14454
1575103 CIFC110.6 H139.3 N6 Na4 O38.05 Si2C 1 2/c 140.459; 18.6423; 33.242
90; 95.13; 90
24972Guan, Yu-Tao; Ji, Heng; Yang, Ju; Yu, Sai-Sai; Liu, Ming
Construction of helicates based on six-coordinated silicon centres.
Chemical science, 2025, 16, 14448-14454
1575104 CIFC233 H311 N12 Na8 O66.5 Si4P 1 21/c 126.7856; 22.6021; 23.289
90; 113.954; 90
12885.1Guan, Yu-Tao; Ji, Heng; Yang, Ju; Yu, Sai-Sai; Liu, Ming
Construction of helicates based on six-coordinated silicon centres.
Chemical science, 2025, 16, 14448-14454
1575105 CIFC88 H61.5 N6 Na4 O28.5 Si2P -120.0833; 21.0558; 24.167
97.617; 111.2; 91.323
9415.9Guan, Yu-Tao; Ji, Heng; Yang, Ju; Yu, Sai-Sai; Liu, Ming
Construction of helicates based on six-coordinated silicon centres.
Chemical science, 2025, 16, 14448-14454
1575106 CIFC25 H37 N3 O4 SP 1 21 17.608; 14.414; 11.847
90; 102.228; 90
1269.7Yang, Zhongzhen; Li, Li; Chen, Jian; Hou, Jinyu; Fan, Hongying; Zhang, Xue; Lv, Guanghui; Wu, Yong
Cost-effective chiral auxiliary-assisted remote asymmetric C(sp3)–H alkylation of hydroxamic acid derivatives with glycine derivatives
Catalysis Science & Technology, 2025, 15, 4866-4871
1575107 CIFC36 H30 Cl5 In S2I 1 2 19.5069; 14.7416; 12.734
90; 90.609; 90
1784.53Qin, Ying; Tang, Yali; Pan, Yue Xiao; Chen, Yingnuo; Xiao, Hongping; Zou, Jun
Tailoring the properties of Sb<sup>3+</sup>-doped in-based organic-inorganic hybrid metal halides through A-site cation engineering.
Chemical communications (Cambridge, England), 2025, 61, 12518-12521
1575108 CIFC26 H35 Cl6 In N2 S3C 1 2 114.2222; 9.351; 12.4182
90; 93.818; 90
1647.85Qin, Ying; Tang, Yali; Pan, Yue Xiao; Chen, Yingnuo; Xiao, Hongping; Zou, Jun
Tailoring the properties of Sb<sup>3+</sup>-doped in-based organic-inorganic hybrid metal halides through A-site cation engineering.
Chemical communications (Cambridge, England), 2025, 61, 12518-12521
1575109 CIFC31 H20 N2P 1 21/c 118.6571; 16.184; 7.4554
90; 91.619; 90
2250.23Zhang, Li; Ma, Chenglin; Wang, Xin; Zhou, Yannan; Song, Jingru; Sun, Mizhen; Sun, Qikun; Zhang, Shi-Tong; Yang, Wenjun; Xue, Shanfeng
Efficient near-ultraviolet (NUV) electroluminescence based on a benzonitrile acceptor HLCT material with balanced carrier mobilities and high color purity.
Chemical science, 2025, 16, 14478-14484
1575110 CIFC31 H22 N2P -18.147; 9.625; 16.714
97.07; 100.55; 113.8
1150.29Zhang, Li; Ma, Chenglin; Wang, Xin; Zhou, Yannan; Song, Jingru; Sun, Mizhen; Sun, Qikun; Zhang, Shi-Tong; Yang, Wenjun; Xue, Shanfeng
Efficient near-ultraviolet (NUV) electroluminescence based on a benzonitrile acceptor HLCT material with balanced carrier mobilities and high color purity.
Chemical science, 2025, 16, 14478-14484
1575111 CIFC38 H62 N4 O15 Zn4C 1 c 112.6715; 14.3504; 14.5469
90; 114.102; 90
2414.6Halder, Biplab; Middya, Puspendu; Frontera, Antonio; Drew, Michael G. B.; Chattopadhyay, Shouvik
The interplay between coordination and non-covalent interactions in three zinc coordination polymers
CrystEngComm, 2025, 27, 5583-5594
1575112 CIFC18 H27 Br N2 O7 Zn2P 1 21/n 19.483; 19.78; 13.087
90; 108.89; 90
2322.6Halder, Biplab; Middya, Puspendu; Frontera, Antonio; Drew, Michael G. B.; Chattopadhyay, Shouvik
The interplay between coordination and non-covalent interactions in three zinc coordination polymers
CrystEngComm, 2025, 27, 5583-5594
1575113 CIFC18 H27 Cl N2 O7 Zn2P 1 21/n 19.4593; 19.398; 12.964
90; 108.532; 90
2255.4Halder, Biplab; Middya, Puspendu; Frontera, Antonio; Drew, Michael G. B.; Chattopadhyay, Shouvik
The interplay between coordination and non-covalent interactions in three zinc coordination polymers
CrystEngComm, 2025, 27, 5583-5594
1575114 CIFC99 H147 Al2 Cl3 N6 O14P -116.9763; 18.1646; 19.483
93.121; 98.03; 106.488
5676.3Sharma, Vivek; Chetia, Anupam; Majumder, Moumita; Lama, Prem; Sahu, Satyajit; Metre, Ramesh K.
Dinuclear aluminum complex as an active material for RRAM switching devices.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 12567-12578
1575115 CIFC104 H99 N10 O3 Si3P 1 21/c 116.3522; 35.9188; 16.5121
90; 116.594; 90
8672.3Rychikhina, Ekaterina D.; Ivanova, Svetlana S.; Somov, Nikolay V.; Lazovskiy, Dmitry A.; Stuzhin, Pavel A.
Silicon(IV) tetraazachlorin - an unusual cycloaddition product from 3,4-diphenyl-1<i>H</i>-pyrrole-2,5-diimine.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 11822-11827
1575116 CIFC32 H42 Cl2 N2 O2 RuI 1 2/a 117.203; 22.147; 18.0772
90; 114.387; 90
6272.8Padmor, Manohar Shivaji; Pratihar, Sanjay
Near-instantaneous chemoselective transfer hydrogenation of aldehydes with visual endpoint reporting and ultrahigh TOF.
Chemical communications (Cambridge, England), 2025, 61, 12932-12935
1575117 CIFC33 H45 Cl N2 O2 RuP 1 21/c 112.2707; 14.6482; 17.8518
90; 93.439; 90
3203Padmor, Manohar Shivaji; Pratihar, Sanjay
Near-instantaneous chemoselective transfer hydrogenation of aldehydes with visual endpoint reporting and ultrahigh TOF.
Chemical communications (Cambridge, England), 2025, 61, 12932-12935
1575118 CIFC22 H20 N2 O3P -16.7738; 12.9622; 21.477
85.306; 83.425; 77.317
1824.5Wu, Qile; Chen, Jingyi; Wu, Haoxian; Wang, Shasha; Liang, Jiaxin; Lo, Tsz Woon Benedict; Zhu, Zhongzhi; Chen, Xiuwen
Dearomatization [4+2] cycloaddition for constructing bridged polycyclic lactams.
Chemical communications (Cambridge, England), 2025, 61, 12789-12792
1575119 CIFC19 H15 N O4P 1 21/c 116.448; 8.875; 11.894
90; 106.13; 90
1668Wu, Qile; Chen, Jingyi; Wu, Haoxian; Wang, Shasha; Liang, Jiaxin; Lo, Tsz Woon Benedict; Zhu, Zhongzhi; Chen, Xiuwen
Dearomatization [4+2] cycloaddition for constructing bridged polycyclic lactams.
Chemical communications (Cambridge, England), 2025, 61, 12789-12792
1575120 CIFC39.5 H46 Co3 N2 O13.5P -111.5896; 13.272; 14.6041
102.365; 105.032; 93.29
2103.93James, Charles A.; Swindells, Jessica E.; Ellis, Harry; Arjariya, Richa; Jarvis, Samuel P.; Brookfield, Adam; Fielden, John
Anion controlled selectivity in oxygen reduction catalysed by a dinuclear cobalt N,O-Schiff base complex.
Chemical communications (Cambridge, England), 2025, 61, 13201-13204
1575121 CIFC68 H78 B2 Co4 F8 N4 O16P -112.7253; 13.2722; 22.5229
97.208; 97.696; 108.398
3519.64James, Charles A.; Swindells, Jessica E.; Ellis, Harry; Arjariya, Richa; Jarvis, Samuel P.; Brookfield, Adam; Fielden, John
Anion controlled selectivity in oxygen reduction catalysed by a dinuclear cobalt N,O-Schiff base complex.
Chemical communications (Cambridge, England), 2025, 61, 13201-13204
1575122 CIFC55 H61 Br N2 P2P 1 21/c 122.58; 12.2624; 16.199
90; 94.048; 90
4474.1Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575123 CIFC54 H59 Al As Cl5 N2 P2P 1 21/c 114.8002; 19.5276; 18.1091
90; 91.085; 90
5232.8Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575124 CIFC51 H51 Cl2 N2 O P2 SbP 1 21/c 110.682; 18.781; 22.801
90; 90.795; 90
4574Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575125 CIFC52 H53 N2 O P2 Sb SeP 1 21/n 111.0961; 18.1134; 22.978
90; 101.282; 90
4529.1Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575126 CIFC56 H61 Al Cl5 N2 O2 P2 SbP 21 21 2111.017; 18.037; 27.534
90; 90; 90
5471Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575127 CIFC55 H59 Al Cl3 N2 O1.75 P2 SbP b c a24.7633; 16.3853; 26.216
90; 90; 90
10637.2Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575128 CIFC58 H68 B N2 O2.5 P2 SbC 1 2/c 137.562; 13.2376; 20.6432
90; 104.313; 90
9945.8Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575129 CIFC60 H69 Bi N2 O3 P2 TeP 1 21/n 110.1844; 15.2867; 34.707
90; 97.585; 90
5356.1Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575130 CIFC56 H63 Cl Mg N2 O2 P2P -112.1739; 12.6388; 36.2781
88.698; 81.1; 64.73
4981.1Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575131 CIFC48.5 H46 Bi Cl3 N2 P2P 1 21/c 116.2659; 19.044; 16.1671
90; 110.717; 90
4684.2Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575132 CIFC57 H51 As3 Cl6 F3 N2 O P2P -112.9688; 18.3595; 26.9379
106.082; 93.732; 105.763
5862.5Meyer, Fabio; Siumbeli, Arina; Dostál, Libor; Hupf, Emanuel; Beckmann, Jens
Nature of the heavy formal double bonds As[double bond, length as m-dash]Ch, Sb[double bond, length as m-dash]Ch and Bi[double bond, length as m-dash]Ch (Ch = S, Se, Te) in NCN-pincer supported arsinidene, stibinidene and bismuthinidene chalcogenides.
Chemical science, 2025, 16, 16232-16239
1575133 CIFC22 H16 N2P b c a15.7315; 9.3263; 21.7128
90; 90; 90
3185.6Wang, Han; Feng, Jing; Liu, Dan-Ni; Yu, Mingming; Xu, Ze-Feng; Li, Chuan-Ying
Intramolecular nitrogen insertion of oxime ester to access aminated N-heterocycles
Green Chemistry, 2025, 27, 9445-9451
1575134 CIFC19 H12 N2 SP 1 21/c 112.5897; 7.6742; 15.4587
90; 103.245; 90
1453.83Wang, Han; Feng, Jing; Liu, Dan-Ni; Yu, Mingming; Xu, Ze-Feng; Li, Chuan-Ying
Intramolecular nitrogen insertion of oxime ester to access aminated N-heterocycles
Green Chemistry, 2025, 27, 9445-9451
1575135 CIFC24 H48 Br4 Cs2 Ni O12I b c a21.3069; 21.3069; 42.148
90; 90; 90
19134.5Wang, Han; Feng, Jing; Liu, Dan-Ni; Yu, Mingming; Xu, Ze-Feng; Li, Chuan-Ying
Intramolecular nitrogen insertion of oxime ester to access aminated N-heterocycles
Green Chemistry, 2025, 27, 9445-9451
1575136 CIFC114 H114 Cu14 O12P -114.194; 14.474; 14.986
97.877; 112.526; 97.863
2756.1Liu, Zheng; Fang, Jun-Jie; Wang, Zhi-Yi; Xie, Yun-Peng; Lu, Xing
<i>Tert</i>-butylacetylene copper cluster-based metal-organic frameworks exhibit hydrophobic properties.
Chemical communications (Cambridge, England), 2025, 61, 12781-12784
1575137 CIFC36 H42 Cu7 O6R -3 :H24.9424; 24.9424; 19.3098
90; 90; 120
10403.6Liu, Zheng; Fang, Jun-Jie; Wang, Zhi-Yi; Xie, Yun-Peng; Lu, Xing
<i>Tert</i>-butylacetylene copper cluster-based metal-organic frameworks exhibit hydrophobic properties.
Chemical communications (Cambridge, England), 2025, 61, 12781-12784
1575138 CIFC51 H51 Cu7 O6P b c n20.018; 20.018; 32.569
90; 90; 90
13051Liu, Zheng; Fang, Jun-Jie; Wang, Zhi-Yi; Xie, Yun-Peng; Lu, Xing
<i>Tert</i>-butylacetylene copper cluster-based metal-organic frameworks exhibit hydrophobic properties.
Chemical communications (Cambridge, England), 2025, 61, 12781-12784
1575139 CIFC153 H153 Cu21 O18C 1 2/c 130.82; 44.212; 38.539
90; 101.634; 90
51435Liu, Zheng; Fang, Jun-Jie; Wang, Zhi-Yi; Xie, Yun-Peng; Lu, Xing
<i>Tert</i>-butylacetylene copper cluster-based metal-organic frameworks exhibit hydrophobic properties.
Chemical communications (Cambridge, England), 2025, 61, 12781-12784
1575140 CIFC45 H48 Cu7 N O6P a -326.729; 26.729; 26.729
90; 90; 90
19096Liu, Zheng; Fang, Jun-Jie; Wang, Zhi-Yi; Xie, Yun-Peng; Lu, Xing
<i>Tert</i>-butylacetylene copper cluster-based metal-organic frameworks exhibit hydrophobic properties.
Chemical communications (Cambridge, England), 2025, 61, 12781-12784
1575141 CIFC40 H38 O5 P2 PdP 21 21 2118.7562; 10.3796; 34.981
90; 90; 90
6810.2Bouley, Bailey S.; Bae, Dae Young; Chakrabarti, Sagnik; Rosen, Mari; Kennedy, Robert D.; Mirica, Liviu M.
Insights into the mechanism of active catalyst generation for the Pd<sup>II</sup>(acac)<sub>2</sub>/PPh<sub>3</sub> system in the context of telomerization of 1,3-butadiene.
Chemical science, 2025, 16, 15486-15498
1575142 CIFC30 H33 O6 P PdP 1 21/n 110.9495; 15.9935; 16.2962
90; 99.235; 90
2816.81Bouley, Bailey S.; Bae, Dae Young; Chakrabarti, Sagnik; Rosen, Mari; Kennedy, Robert D.; Mirica, Liviu M.
Insights into the mechanism of active catalyst generation for the Pd<sup>II</sup>(acac)<sub>2</sub>/PPh<sub>3</sub> system in the context of telomerization of 1,3-butadiene.
Chemical science, 2025, 16, 15486-15498
1575143 CIFC25 H25 O4 P PdP 1 21/n 113.697; 9.2164; 18.8878
90; 106.9; 90
2281.37Bouley, Bailey S.; Bae, Dae Young; Chakrabarti, Sagnik; Rosen, Mari; Kennedy, Robert D.; Mirica, Liviu M.
Insights into the mechanism of active catalyst generation for the Pd<sup>II</sup>(acac)<sub>2</sub>/PPh<sub>3</sub> system in the context of telomerization of 1,3-butadiene.
Chemical science, 2025, 16, 15486-15498
1575144 CIFC27.5 H30.5 Fe N12 O4.5 PdP -17.281; 14.499; 15.355
104.6; 99.89; 90.32
1543.3Chai, Yuqiao; Yang, Yu-Ting; Xue, Jin-Peng
Entanglement of spin transition and structural adaptability: manipulating the slow spin equilibrium by the guest-mediated fine-tuning of elastic frustration.
Chemical science, 2025, 16, 15555-15563
1575145 CIFC27.5 H30.5 Fe N12 O4.5 PdP -17.26; 14.476; 15.344
104.57; 99.87; 90.32
1535.6Chai, Yuqiao; Yang, Yu-Ting; Xue, Jin-Peng
Entanglement of spin transition and structural adaptability: manipulating the slow spin equilibrium by the guest-mediated fine-tuning of elastic frustration.
Chemical science, 2025, 16, 15555-15563
1575146 CIFC27.5 H30.5 Fe N12 O4.5 PdP -17.278; 14.5; 15.347
104.59; 99.88; 90.32
1542.1Chai, Yuqiao; Yang, Yu-Ting; Xue, Jin-Peng
Entanglement of spin transition and structural adaptability: manipulating the slow spin equilibrium by the guest-mediated fine-tuning of elastic frustration.
Chemical science, 2025, 16, 15555-15563
1575147 CIFC27.5 H30.5 Fe N12 O4.5 PdP -17.277; 14.509; 15.381
104.67; 99.99; 90.32
1545.1Chai, Yuqiao; Yang, Yu-Ting; Xue, Jin-Peng
Entanglement of spin transition and structural adaptability: manipulating the slow spin equilibrium by the guest-mediated fine-tuning of elastic frustration.
Chemical science, 2025, 16, 15555-15563
1575148 CIFC27.5 H30.5 Fe N12 O4.5 PdP -17.288; 14.504; 15.422
104.7; 100.07; 90.33
1550.4Chai, Yuqiao; Yang, Yu-Ting; Xue, Jin-Peng
Entanglement of spin transition and structural adaptability: manipulating the slow spin equilibrium by the guest-mediated fine-tuning of elastic frustration.
Chemical science, 2025, 16, 15555-15563
1575149 CIFC27.5 H30.5 Fe N12 O4.5 PdP -17.457; 14.711; 15.442
104.49; 99.92; 90.28
1613.5Chai, Yuqiao; Yang, Yu-Ting; Xue, Jin-Peng
Entanglement of spin transition and structural adaptability: manipulating the slow spin equilibrium by the guest-mediated fine-tuning of elastic frustration.
Chemical science, 2025, 16, 15555-15563
1575150 CIFC7.5 H8 Cu0.25 F1.5 N1.25 O2 P0 S0.5I b a m8.071; 16.12; 26.964
90; 90; 90
3508.1Zhang, Yuzhe; Higashino, Tomohiro; Namikawa, Keigo; Osterloh, W. Ryan; Imahori, Hiroshi
Molecular engineering of porphyrin dyes and copper complexes for enhanced dye regeneration toward high-performance dye-sensitized solar cells using copper(i/ii) redox shuttles.
Chemical science, 2025, 16, 15004-15014
1575151 CIFC28 H32 Cu F6 N4 O4 PP -19.7349; 11.1899; 15.3441
73.793; 74.976; 88.82
1547.8Zhang, Yuzhe; Higashino, Tomohiro; Namikawa, Keigo; Osterloh, W. Ryan; Imahori, Hiroshi
Molecular engineering of porphyrin dyes and copper complexes for enhanced dye regeneration toward high-performance dye-sensitized solar cells using copper(i/ii) redox shuttles.
Chemical science, 2025, 16, 15004-15014
1575152 CIFC28 H32 B Cu F4 N4 O4P 1 21/c 114.6532; 11.4428; 16.8771
90; 95.086; 90
2818.7Zhang, Yuzhe; Higashino, Tomohiro; Namikawa, Keigo; Osterloh, W. Ryan; Imahori, Hiroshi
Molecular engineering of porphyrin dyes and copper complexes for enhanced dye regeneration toward high-performance dye-sensitized solar cells using copper(i/ii) redox shuttles.
Chemical science, 2025, 16, 15004-15014
1575153 CIFC16 H33 Ir Mo N3P 1 21/c 118.3443; 8.22852; 13.382
90; 90.251; 90
2019.95Dubrawski, Zachary; Del Rosal, Iker; Jeanneau, Erwann; Maron, Laurent; Thieuleux, Chloé; Camp, Clément
Synergistic C-H bond activation across molybdenum-iridium multiply bonded complexes: a cascade of transformations.
Chemical science, 2025, 16, 14564-14577
1575154 CIFC24 H42 Ir2 Mo N2P -110.3728; 11.1282; 11.9391
86.479; 80.478; 80.646
1340.23Dubrawski, Zachary; Del Rosal, Iker; Jeanneau, Erwann; Maron, Laurent; Thieuleux, Chloé; Camp, Clément
Synergistic C-H bond activation across molybdenum-iridium multiply bonded complexes: a cascade of transformations.
Chemical science, 2025, 16, 14564-14577
1575155 CIFC19 H33 Ir Mo N3 OP 1 21/n 110.4733; 14.127; 15.97
90; 104.7; 90
2285.52Dubrawski, Zachary; Del Rosal, Iker; Jeanneau, Erwann; Maron, Laurent; Thieuleux, Chloé; Camp, Clément
Synergistic C-H bond activation across molybdenum-iridium multiply bonded complexes: a cascade of transformations.
Chemical science, 2025, 16, 14564-14577
1575156 CIFC21 H42 Ir Mo N4 OP -110.568; 14.3581; 17.6451
100.148; 101.617; 98.071
2538.22Dubrawski, Zachary; Del Rosal, Iker; Jeanneau, Erwann; Maron, Laurent; Thieuleux, Chloé; Camp, Clément
Synergistic C-H bond activation across molybdenum-iridium multiply bonded complexes: a cascade of transformations.
Chemical science, 2025, 16, 14564-14577
1575157 CIFC7 H16 N2 OP b c a9.9756; 11.6881; 15.1321
90; 90; 90
1764.34Dubrawski, Zachary; Del Rosal, Iker; Jeanneau, Erwann; Maron, Laurent; Thieuleux, Chloé; Camp, Clément
Synergistic C-H bond activation across molybdenum-iridium multiply bonded complexes: a cascade of transformations.
Chemical science, 2025, 16, 14564-14577
1575158 CIFC26 H42 Ir2 Mo N2 O4P 1 2/n 110.9967; 10.9728; 12.1515
90; 90.354; 90
1466.23Dubrawski, Zachary; Del Rosal, Iker; Jeanneau, Erwann; Maron, Laurent; Thieuleux, Chloé; Camp, Clément
Synergistic C-H bond activation across molybdenum-iridium multiply bonded complexes: a cascade of transformations.
Chemical science, 2025, 16, 14564-14577
1575159 CIFC24 H45 Ir Mo N4 O2P 1 21/c 110.3416; 18.4312; 14.9177
90; 104.443; 90
2753.57Dubrawski, Zachary; Del Rosal, Iker; Jeanneau, Erwann; Maron, Laurent; Thieuleux, Chloé; Camp, Clément
Synergistic C-H bond activation across molybdenum-iridium multiply bonded complexes: a cascade of transformations.
Chemical science, 2025, 16, 14564-14577
1575160 CIFC28 H22 Br N OP -15.8212; 14.194; 14.7214
69.915; 81.048; 86.989
1128.48Liu, Tu-Ming; Zhu, Lin-Yuan; Qi, Min-Hao; Li, Si-Jia; Wang, Xiao-Jian; Xu, Jia-Rui; Han, Bing
Photosensitized diradical rearrangement of alkenyl oxime ethers towards amino-featured oxiranes: reaction, mechanism, and structural prediction.
Chemical science, 2025, 16, 14811-14821
1575161 CIFC7 H7 N3 O12P 1 21/c 16.6576; 18.5752; 9.4128
90; 100.585; 90
1144.24Li, Huan; Zhou, Qi; Hou, Tianjiao; Yi, Zhenxin; Wang, Guixiang; Zhu, Long; Gao, Yuan; Zhang, Yu; Luo, Jun
Impact of stereochemistry in 3D energetic materials science: a case based on peripheral editing of the 2,4,10-trioxaadamantane backbone.
Chemical science, 2025, 16, 15587-15596
1575162 CIFC7 H7 N3 O12P 1 21/c 18.73; 8.696; 15.978
90; 101.351; 90
1189.3Li, Huan; Zhou, Qi; Hou, Tianjiao; Yi, Zhenxin; Wang, Guixiang; Zhu, Long; Gao, Yuan; Zhang, Yu; Luo, Jun
Impact of stereochemistry in 3D energetic materials science: a case based on peripheral editing of the 2,4,10-trioxaadamantane backbone.
Chemical science, 2025, 16, 15587-15596
1575163 CIFC7 H7 N3 O12P -16.0238; 8.8265; 12.058
69.746; 89.688; 72.481
570.07Li, Huan; Zhou, Qi; Hou, Tianjiao; Yi, Zhenxin; Wang, Guixiang; Zhu, Long; Gao, Yuan; Zhang, Yu; Luo, Jun
Impact of stereochemistry in 3D energetic materials science: a case based on peripheral editing of the 2,4,10-trioxaadamantane backbone.
Chemical science, 2025, 16, 15587-15596
1575164 CIFC7 H7 N3 O12P 1 21/c 115.062; 5.9269; 14.178
90; 113.806; 90
1158Li, Huan; Zhou, Qi; Hou, Tianjiao; Yi, Zhenxin; Wang, Guixiang; Zhu, Long; Gao, Yuan; Zhang, Yu; Luo, Jun
Impact of stereochemistry in 3D energetic materials science: a case based on peripheral editing of the 2,4,10-trioxaadamantane backbone.
Chemical science, 2025, 16, 15587-15596
1575165 CIFC7 H6 N4 O13P 21 21 218.3535; 9.1128; 15.6114
90; 90; 90
1188.4Li, Huan; Zhou, Qi; Hou, Tianjiao; Yi, Zhenxin; Wang, Guixiang; Zhu, Long; Gao, Yuan; Zhang, Yu; Luo, Jun
Impact of stereochemistry in 3D energetic materials science: a case based on peripheral editing of the 2,4,10-trioxaadamantane backbone.
Chemical science, 2025, 16, 15587-15596
1575166 CIFC7 H6 N4 O13P 1 21/n 17.1632; 12.3721; 13.9868
90; 92.234; 90
1238.6Li, Huan; Zhou, Qi; Hou, Tianjiao; Yi, Zhenxin; Wang, Guixiang; Zhu, Long; Gao, Yuan; Zhang, Yu; Luo, Jun
Impact of stereochemistry in 3D energetic materials science: a case based on peripheral editing of the 2,4,10-trioxaadamantane backbone.
Chemical science, 2025, 16, 15587-15596
1575167 CIFC7 H6 N4 O13P 1 21/c 18.5994; 7.2097; 20.1577
90; 92.167; 90
1248.87Li, Huan; Zhou, Qi; Hou, Tianjiao; Yi, Zhenxin; Wang, Guixiang; Zhu, Long; Gao, Yuan; Zhang, Yu; Luo, Jun
Impact of stereochemistry in 3D energetic materials science: a case based on peripheral editing of the 2,4,10-trioxaadamantane backbone.
Chemical science, 2025, 16, 15587-15596
1575168 CIFC13 H13 N5P 1 21/n 16.4181; 14.161; 13.2275
90; 101.423; 90
1178.39Yu, Xuanchi; Zhang, Chenyu; Dong, Dongfang; Liu, Bing; Wang, Dali; Li, Tao
Visible-light-responsive indoleazopyrazole photoswitches: dual enhancement of redshift and half-life by ester modification at the <i>ortho</i> position.
Chemical science, 2025, 16, 15620-15627
1575169 CIFC13 H13 N5P 21 21 215.6017; 8.7826; 23.5685
90; 90; 90
1159.51Yu, Xuanchi; Zhang, Chenyu; Dong, Dongfang; Liu, Bing; Wang, Dali; Li, Tao
Visible-light-responsive indoleazopyrazole photoswitches: dual enhancement of redshift and half-life by ester modification at the <i>ortho</i> position.
Chemical science, 2025, 16, 15620-15627
1575170 CIFC13 H13 N5P 1 21 17.0795; 13.8474; 12.6001
90; 101.205; 90
1211.68Yu, Xuanchi; Zhang, Chenyu; Dong, Dongfang; Liu, Bing; Wang, Dali; Li, Tao
Visible-light-responsive indoleazopyrazole photoswitches: dual enhancement of redshift and half-life by ester modification at the <i>ortho</i> position.
Chemical science, 2025, 16, 15620-15627
1575171 CIFC15 H15 N5 O2P -16.3008; 7.7125; 15.2437
88.117; 80.529; 83.044
725.23Yu, Xuanchi; Zhang, Chenyu; Dong, Dongfang; Liu, Bing; Wang, Dali; Li, Tao
Visible-light-responsive indoleazopyrazole photoswitches: dual enhancement of redshift and half-life by ester modification at the <i>ortho</i> position.
Chemical science, 2025, 16, 15620-15627
1575172 CIFC18 H16 N2P 1 21/c 18.1945; 16.3667; 10.3703
90; 92.658; 90
1389.34McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575173 CIFC12 H9 F4 N O2P 1 21/n 19.977; 8.3959; 13.3658
90; 92.807; 90
1118.25McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575174 CIFC23 H16 F4 N2 O2P 1 21/n 115.31; 7.35; 17.3
90; 98.5; 90
1925McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575175 CIFC23 H16 F4 N2 O2P 1 21/n 115.5; 7.4; 17.33
90; 97.8; 90
1969McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575176 CIFC66 H36 F12 N6 O6P -111.0644; 15.0753; 16.1709
89.004; 81.638; 89.699
2668.2McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575177 CIFC66 H36 F12 N6 O6P -110.8897; 15.0104; 16.1121
89.101; 81.495; 88.995
2604.07McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575178 CIFC23 H16 F4 N2 O2P 1 21/n 115.3845; 7.331; 17.2664
90; 97.766; 90
1929.51McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575179 CIFC24 H19 F5 N2 O2P 1 21/c 111.3122; 10.4156; 18.078
90; 99.131; 90
2103.02McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575180 CIFC23 H16 F4 N2 O2P 1 21/n 115.1449; 7.3085; 17.1746
90; 98.376; 90
1880.72McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575181 CIFC24 H18 F4 N2 O2P 1 21/c 111.7285; 17.8213; 10.0082
90; 95.225; 90
2083.19McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575182 CIFC17 H12 N2P 21 21 218.5533; 12.55218; 23.37782
90; 90; 90
2509.9McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575183 CIFC24 H18 F4 N2 O2P 1 21/c 111.6008; 17.7066; 9.8638
90; 95.439; 90
2017.01McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575184 CIFC19 H18 N2P 1 21/c 18.0182; 17.9791; 10.2551
90; 93.387; 90
1475.79McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575185 CIFC19 H18 N2P -19.1685; 9.4713; 19.6236
87.73; 85.797; 62.356
1505.45McDonald, Peter W.; Goerigk, Lars; Ritchie, Chris
Planarisation or a twist? Using steric engineering to unlock the origin of mechanofluorochromic red-shifts.
Chemical science, 2025, 16, 15320-15332
1575186 CIFC108 H80 O32 Zr6P 6/m m m49.038; 49.038; 16.641
90; 90; 120
34656Liu, Yi-Fan; He, Huihui; Gao, Lei; Liang, Rong-Ran; Li, Ji; Huang, Jinyi; Yin, Ya; Meng, Yuxuan; Zhong, Yuxiu; Luo, Rengan; Zhang, Liang-Liang; Zhou, Hong-Cai; Yuan, Shuai
Chemical and mechanical modifications of flexible metal-organic frameworks for enhancing photocatalysis.
Chemical science, 2025, 16, 14995-15003
1575187 CIFC108 H64 O32 Zr6P 6/m m m50.076; 50.076; 15.169
90; 90; 120
32942Liu, Yi-Fan; He, Huihui; Gao, Lei; Liang, Rong-Ran; Li, Ji; Huang, Jinyi; Yin, Ya; Meng, Yuxuan; Zhong, Yuxiu; Luo, Rengan; Zhang, Liang-Liang; Zhou, Hong-Cai; Yuan, Shuai
Chemical and mechanical modifications of flexible metal-organic frameworks for enhancing photocatalysis.
Chemical science, 2025, 16, 14995-15003
1575188 CIFC108 H76 O32 Zr6P 6/m m m50.274; 50.274; 15.6837
90; 90; 120
34329Liu, Yi-Fan; He, Huihui; Gao, Lei; Liang, Rong-Ran; Li, Ji; Huang, Jinyi; Yin, Ya; Meng, Yuxuan; Zhong, Yuxiu; Luo, Rengan; Zhang, Liang-Liang; Zhou, Hong-Cai; Yuan, Shuai
Chemical and mechanical modifications of flexible metal-organic frameworks for enhancing photocatalysis.
Chemical science, 2025, 16, 14995-15003
1575189 CIFC108 H80 O32 Zr6P 6/m m m50.711; 50.711; 15.1298
90; 90; 120
33695Liu, Yi-Fan; He, Huihui; Gao, Lei; Liang, Rong-Ran; Li, Ji; Huang, Jinyi; Yin, Ya; Meng, Yuxuan; Zhong, Yuxiu; Luo, Rengan; Zhang, Liang-Liang; Zhou, Hong-Cai; Yuan, Shuai
Chemical and mechanical modifications of flexible metal-organic frameworks for enhancing photocatalysis.
Chemical science, 2025, 16, 14995-15003
1575190 CIFC89 H71.67 Ca4 N9 O29.48C 1 2/c 141.8161; 10.3669; 24.5777
90; 125.549; 90
8668.7Huang, Zhi; Wei, Jianwei; Wang, Xiang-Yu; Xu, Shaojie; Huang, Ling; Zeng, Le
Wavelength-dependent tri-state photoswitching in crystals <i>via</i> synergistic dimer confinement and charge-transfer stacking.
Materials horizons, 2025, 12, 9079-9086
1575191 CIFC56 H48 N6 O16 Sr2I 41/a :228.4224; 28.4224; 13.716
90; 90; 90
11080.2Huang, Zhi; Wei, Jianwei; Wang, Xiang-Yu; Xu, Shaojie; Huang, Ling; Zeng, Le
Wavelength-dependent tri-state photoswitching in crystals <i>via</i> synergistic dimer confinement and charge-transfer stacking.
Materials horizons, 2025, 12, 9079-9086
1575192 CIFC24 H24 I4 N2 PbP 1 21/c 119.2091; 8.9415; 8.2849
90; 94.122; 90
1419.32Zugasti-Fernández, Dulce; Román-Román, Priscila I; Gutierrez-Avila, Mara; Gómora-Figueroa, A Paulina; Hernández-Cordero, Juan; Jancik, Vojtech; Hernández-Como, Norberto; Solis-Ibarra, Diego
Air-processed, ultraresponsive NIR photodetectors using 2D perovskite hybrids.
Chemical science, 2025, 16, 15597-15601
1575193 CIFC24 H12 O6 S3P -18.481; 11.5996; 11.9086
111.195; 96.371; 107.702
1007.86Cui, Hao; Chen, Xiang; She, Xiong; Su, Wen-Xin; Chen, Shi-Chao; Zhang, Xiao
A pair of strongly reductive and oxidative photocatalysts for the general upcycling of biomass derivatives and plastic wastes.
Chemical science, 2025, 16, 16070-16080
1575194 CIFC29 H21 N O8 S3P 1 21/c 114.4269; 18.7578; 10.6226
90; 108.077; 90
2732.8Cui, Hao; Chen, Xiang; She, Xiong; Su, Wen-Xin; Chen, Shi-Chao; Zhang, Xiao
A pair of strongly reductive and oxidative photocatalysts for the general upcycling of biomass derivatives and plastic wastes.
Chemical science, 2025, 16, 16070-16080
1575195 CIFC72 H100 Cu4 I0 N4 O24I m m m9.61; 10.687; 20.153
90; 90; 90
2069.8Xiao, Zongjing; Li, Pengfei; Sun, Beibei; Bao, Xinrui; Gan, Lei; Yang, Huajun
Water-mediated synthesis of hydrogen-bonded metal-organic frameworks.
Chemical science, 2025, 16, 14919-14923
1575196 CIFC36 H50 I0 N2 Ni2 O12I m m m9.339; 10.761; 20.275
90; 90; 90
2037.6Xiao, Zongjing; Li, Pengfei; Sun, Beibei; Bao, Xinrui; Gan, Lei; Yang, Huajun
Water-mediated synthesis of hydrogen-bonded metal-organic frameworks.
Chemical science, 2025, 16, 14919-14923
1575197 CIFC49 H107 Ce I Li N4 O4 Si3P n a 2117.7985; 17.8628; 19.3154
90; 90; 90
6141Combourieu, Adrien; Christodoulou, Stella; Maron, Laurent; Assendjee, Eachann; Casaretto, Nicolas; Phung, Bich Tuyen; Banyasz, Akos; Maury, Olivier; Gregson, Matthew; Wooles, Ashley J.; Liddle, Stephen T.; Tard, Cédric; Nocton, Grégory; Danoun, Grégory
Visible light activation of C-Cl and C-F bonds in persistent organic pollutants using cerium(iii) triamidoamine complex.
Chemical science, 2025, 16, 15510-15517
1575198 CIFC45 H99 Ce I Li N4 O3 Si3P 1 21/n 115.5528; 19.1984; 19.4099
90; 91.1; 90
5794.5Combourieu, Adrien; Christodoulou, Stella; Maron, Laurent; Assendjee, Eachann; Casaretto, Nicolas; Phung, Bich Tuyen; Banyasz, Akos; Maury, Olivier; Gregson, Matthew; Wooles, Ashley J.; Liddle, Stephen T.; Tard, Cédric; Nocton, Grégory; Danoun, Grégory
Visible light activation of C-Cl and C-F bonds in persistent organic pollutants using cerium(iii) triamidoamine complex.
Chemical science, 2025, 16, 15510-15517
1575199 CIFC33 H75 Br Ce N4 Si3P 1 21/n 113.0115; 15.7902; 20.3365
90; 90.712; 90
4177.9Combourieu, Adrien; Christodoulou, Stella; Maron, Laurent; Assendjee, Eachann; Casaretto, Nicolas; Phung, Bich Tuyen; Banyasz, Akos; Maury, Olivier; Gregson, Matthew; Wooles, Ashley J.; Liddle, Stephen T.; Tard, Cédric; Nocton, Grégory; Danoun, Grégory
Visible light activation of C-Cl and C-F bonds in persistent organic pollutants using cerium(iii) triamidoamine complex.
Chemical science, 2025, 16, 15510-15517
1575200 CIFC33 H75 Ce N4 Si3P 1 21/n 19.499; 22.531; 19.0088
90; 91.907; 90
4066Combourieu, Adrien; Christodoulou, Stella; Maron, Laurent; Assendjee, Eachann; Casaretto, Nicolas; Phung, Bich Tuyen; Banyasz, Akos; Maury, Olivier; Gregson, Matthew; Wooles, Ashley J.; Liddle, Stephen T.; Tard, Cédric; Nocton, Grégory; Danoun, Grégory
Visible light activation of C-Cl and C-F bonds in persistent organic pollutants using cerium(iii) triamidoamine complex.
Chemical science, 2025, 16, 15510-15517
1575201 CIFC33 H75 Ce Cl N4 Si3P 1 21/n 112.9683; 15.5387; 20.3785
90; 90.572; 90
4106.3Combourieu, Adrien; Christodoulou, Stella; Maron, Laurent; Assendjee, Eachann; Casaretto, Nicolas; Phung, Bich Tuyen; Banyasz, Akos; Maury, Olivier; Gregson, Matthew; Wooles, Ashley J.; Liddle, Stephen T.; Tard, Cédric; Nocton, Grégory; Danoun, Grégory
Visible light activation of C-Cl and C-F bonds in persistent organic pollutants using cerium(iii) triamidoamine complex.
Chemical science, 2025, 16, 15510-15517
1575202 CIFC264 H600 Ce8 F8 N32 Si24P 1 21/n 120.3562; 19.958; 20.6752
90; 103.739; 90
8159.4Combourieu, Adrien; Christodoulou, Stella; Maron, Laurent; Assendjee, Eachann; Casaretto, Nicolas; Phung, Bich Tuyen; Banyasz, Akos; Maury, Olivier; Gregson, Matthew; Wooles, Ashley J.; Liddle, Stephen T.; Tard, Cédric; Nocton, Grégory; Danoun, Grégory
Visible light activation of C-Cl and C-F bonds in persistent organic pollutants using cerium(iii) triamidoamine complex.
Chemical science, 2025, 16, 15510-15517
1575203 CIFC83 H118 K N3 O6 UP 1 21/n 115.80343; 22.6493; 21.5753
90; 96.5821; 90
7671.69Pang, Yue; Rajeshkumar, Thayalan; Scopelliti, Rosario; Maron, Laurent; Mazzanti, Marinella
C-C bond cleavage and carbonylation enabled by an NNN-pincer uranium scaffold <i>via</i> metal-arene interaction.
Chemical science, 2025, 16, 16101-16109
1575204 CIFC83 H122 K N3 O3 UP 1 21/n 114.81503; 15.69327; 33.7005
90; 93.4484; 90
7821.05Pang, Yue; Rajeshkumar, Thayalan; Scopelliti, Rosario; Maron, Laurent; Mazzanti, Marinella
C-C bond cleavage and carbonylation enabled by an NNN-pincer uranium scaffold <i>via</i> metal-arene interaction.
Chemical science, 2025, 16, 16101-16109
1575205 CIFC126 H188 Cl4 K2 N6 O8 U2P -111.6846; 15.7796; 18.592
103.309; 94.0723; 107.288
3149.13Pang, Yue; Rajeshkumar, Thayalan; Scopelliti, Rosario; Maron, Laurent; Mazzanti, Marinella
C-C bond cleavage and carbonylation enabled by an NNN-pincer uranium scaffold <i>via</i> metal-arene interaction.
Chemical science, 2025, 16, 16101-16109
1575206 CIFC119.2 H187 K6 N6 O6.3P 1 21/n 115.91762; 14.57188; 26.4106
90; 99.07; 90
6049.33Pang, Yue; Rajeshkumar, Thayalan; Scopelliti, Rosario; Maron, Laurent; Mazzanti, Marinella
C-C bond cleavage and carbonylation enabled by an NNN-pincer uranium scaffold <i>via</i> metal-arene interaction.
Chemical science, 2025, 16, 16101-16109
1575207 CIFC92 H134 K N3 O9 UP -113.394; 14.0175; 25.0941
89.5052; 75.245; 69.4982
4250.57Pang, Yue; Rajeshkumar, Thayalan; Scopelliti, Rosario; Maron, Laurent; Mazzanti, Marinella
C-C bond cleavage and carbonylation enabled by an NNN-pincer uranium scaffold <i>via</i> metal-arene interaction.
Chemical science, 2025, 16, 16101-16109
1575208 CIFC122 H186 Cl3 K3 N6 O7 U2I 1 a 122.70041; 22.5404; 26.0053
90; 111.315; 90
12396.1Pang, Yue; Rajeshkumar, Thayalan; Scopelliti, Rosario; Maron, Laurent; Mazzanti, Marinella
C-C bond cleavage and carbonylation enabled by an NNN-pincer uranium scaffold <i>via</i> metal-arene interaction.
Chemical science, 2025, 16, 16101-16109
1575209 CIFC67 H102 N3 O5 UP 1 21/n 128.4069; 15.1709; 30.045
90; 95.1738; 90
12895.4Pang, Yue; Rajeshkumar, Thayalan; Scopelliti, Rosario; Maron, Laurent; Mazzanti, Marinella
C-C bond cleavage and carbonylation enabled by an NNN-pincer uranium scaffold <i>via</i> metal-arene interaction.
Chemical science, 2025, 16, 16101-16109
1575210 CIFC56 H79 N6 P ZnP 1 21/c 121.026; 13.762; 21.097
90; 118.1; 90
5385Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575211 CIFC53 H74 N4 P ZnP -113.2792; 13.7788; 15.3972
70.153; 76.765; 79.146
2560.6Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575212 CIFC56 H79 N4 P ZnP 1 21/c 124.9688; 10.7308; 21.6707
90; 96.88; 90
5764.5Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575213 CIFC88 H106 Au F6 N5 O4 P2 S2 ZnP -113.2738; 16.5149; 19.8649
85.59; 86.806; 84.517
4316.8Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575214 CIFC56 H79 N4 P ZnP 1 21/c 114.9188; 17.12; 20.8807
90; 94.451; 90
5317.1Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575215 CIFC58 H79 Ag F6 N5 O4 P S2 ZnP -112.4129; 13.8443; 18.128
99.423; 91.21; 101.739
3004.2Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575216 CIFC61 H86 N4 Ni P ZnP -111.4773; 12.3292; 21.4352
98.574; 98.849; 105.039
2837.1Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575217 CIFC57 H79 N4 O P ZnP 1 21/c 121.0168; 13.7828; 20.9785
90; 118.003; 90
5365.4Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575218 CIFC57 H79 N4 O2 P ZnP 21 21 2114.1786; 14.4517; 26.2054
90; 90; 90
5369.6Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575219 CIFC70.5 H97 N8 P ZnP 1 21/c 122.5888; 17.4697; 19.2725
90; 109.369; 90
7174.9Jiang, Shengjie; Wang, Ganping; Cai, Yanping; Maron, Laurent; Xu, Xin
Zinc substituted carbenes: synthesis, structure, and ambiphilic reactivity.
Chemical science, 2025, 16, 15462-15468
1575220 CIFC56 H54 N2 O6 SiP -18.9542; 14.7938; 20.8352
106.669; 93.269; 90.445
2638.8Stoess, Lennart; Greb, Lutz
What distinguishes the strength and the effect of a Lewis base: insights with a strong chromogenic silicon Lewis acid.
Chemical science, 2025, 16, 15387-15395
1575221 CIFC84.5 H111 Cl6 N2 O6 P SiP -115.0843; 15.9059; 20.643
108.857; 95.289; 114.939
4096.6Stoess, Lennart; Greb, Lutz
What distinguishes the strength and the effect of a Lewis base: insights with a strong chromogenic silicon Lewis acid.
Chemical science, 2025, 16, 15387-15395
1575222 CIFC83.92 H81.84 Cl8.84 N2 O6 P SiP 1 21/c 123.7594; 12.8395; 27.154
90; 101.651; 90
8112.9Stoess, Lennart; Greb, Lutz
What distinguishes the strength and the effect of a Lewis base: insights with a strong chromogenic silicon Lewis acid.
Chemical science, 2025, 16, 15387-15395
1575223 CIFC24 H16 Mn N4 S6P -19.988; 10.1205; 13.3556
83.945; 83.632; 69.237
1251.38Wang, Yanqi; Zhai, Longfei; Xiong, Wei-Wei
Preparing an MnS@CN composite with lasagna-like nanostructure through pyrolysis of an organic hybrid manganese sulfide for electrochemical lithium storage.
Nanoscale, 2025, 17, 18315-18324
1575224 CIFC24 H43 Fe Mg O3.5 P5P b c n31.9024; 11.255; 16.6438
90; 90; 90
5976.15Adlbert, Lukas; Weber, Martin; Riesinger, Christoph; Seidl, Michael; Scheer, Manfred
A simple synthesis of group 2 anthracenides and their use as reducing agents for polypnictogen ligand complexes.
Chemical science, 2025, 16, 15446-15454
1575225 CIFC109 H150 Fe2 Mg2 N4 P12P 1 21/c 114.4098; 21.064; 18.1097
90; 95.055; 90
5475.4Adlbert, Lukas; Weber, Martin; Riesinger, Christoph; Seidl, Michael; Scheer, Manfred
A simple synthesis of group 2 anthracenides and their use as reducing agents for polypnictogen ligand complexes.
Chemical science, 2025, 16, 15446-15454
1575226 CIFC44 H78 Ba Fe2 O6 P10P c a 2127.7184; 40.4538; 20.3254
90; 90; 90
22791.2Adlbert, Lukas; Weber, Martin; Riesinger, Christoph; Seidl, Michael; Scheer, Manfred
A simple synthesis of group 2 anthracenides and their use as reducing agents for polypnictogen ligand complexes.
Chemical science, 2025, 16, 15446-15454
1575227 CIFC66 H96 Fe2 Mg O5 P12P 43 21 210.7346; 10.7346; 60.8
90; 90; 90
7006.08Adlbert, Lukas; Weber, Martin; Riesinger, Christoph; Seidl, Michael; Scheer, Manfred
A simple synthesis of group 2 anthracenides and their use as reducing agents for polypnictogen ligand complexes.
Chemical science, 2025, 16, 15446-15454
1575228 CIFC78 H120 Fe2 O8 P12 Sr2P 1 21/n 110.7954; 20.3376; 19.5093
90; 90.312; 90
4283.25Adlbert, Lukas; Weber, Martin; Riesinger, Christoph; Seidl, Michael; Scheer, Manfred
A simple synthesis of group 2 anthracenides and their use as reducing agents for polypnictogen ligand complexes.
Chemical science, 2025, 16, 15446-15454
1575229 CIFC60 H108 Fe2 O10 P10 Sr2P 1 21/n 112.3561; 15.515; 20.0866
90; 103.304; 90
3747.36Adlbert, Lukas; Weber, Martin; Riesinger, Christoph; Seidl, Michael; Scheer, Manfred
A simple synthesis of group 2 anthracenides and their use as reducing agents for polypnictogen ligand complexes.
Chemical science, 2025, 16, 15446-15454
1575230 CIFC38 H76 Fe2 Mg O8 P10P 1 21/c 110.5512; 14.2205; 37.349
90; 95.224; 90
5580.7Adlbert, Lukas; Weber, Martin; Riesinger, Christoph; Seidl, Michael; Scheer, Manfred
A simple synthesis of group 2 anthracenides and their use as reducing agents for polypnictogen ligand complexes.
Chemical science, 2025, 16, 15446-15454
1575231 CIFC38 H28 N2 O8P 1 21/n 17.8266; 15.0675; 24.1674
90; 97.197; 90
2827.54Martínez-Visiedo, Joel; Ibáñez, Susana; Dawe, Louise N.; Peris, Eduardo
A metallosupramolecular-based ring-in-ring complex showing reversible host-guest dynamics and switchable electrochemical properties.
Nanoscale, 2025, 17, 20089-20095
1575232 CIFC198 H216 Ir4 N22 O8C 1 2/c 134.3083; 25.6152; 41.4962
90; 117.491; 90
32350Martínez-Visiedo, Joel; Ibáñez, Susana; Dawe, Louise N.; Peris, Eduardo
A metallosupramolecular-based ring-in-ring complex showing reversible host-guest dynamics and switchable electrochemical properties.
Nanoscale, 2025, 17, 20089-20095
1575233 CIFC50 H40 Cl2 N4 Ni2 O2 P2P 1 21/n 115.2233; 11.5814; 25.9382
90; 99.271; 90
4513.4Sabharwal, Gazal; Dwivedi, Khilesh C.; Balakrishna, Maravanji S.
Multifunctional PNN-NiII pincer catalyst for C–C and C–N bond formation via alkylation, cross-coupling, and hydroamination reactions
Catalysis Science & Technology, 2025, 15, 5275-5284
1575234 CIFC28 H26 Cl5 N2 Ni O2 PP -110.5132; 10.9249; 14.5672
107.373; 107.332; 95.323
1493.66Sabharwal, Gazal; Dwivedi, Khilesh C.; Balakrishna, Maravanji S.
Multifunctional PNN-NiII pincer catalyst for C–C and C–N bond formation via alkylation, cross-coupling, and hydroamination reactions
Catalysis Science & Technology, 2025, 15, 5275-5284
1575235 CIFC25 H21 N2 O2 PP 21 21 219.2533; 14.3859; 15.5532
90; 90; 90
2070.4Sabharwal, Gazal; Dwivedi, Khilesh C.; Balakrishna, Maravanji S.
Multifunctional PNN-NiII pincer catalyst for C–C and C–N bond formation via alkylation, cross-coupling, and hydroamination reactions
Catalysis Science & Technology, 2025, 15, 5275-5284
1575236 CIFC66 H78 B3 F12 N3 O3R -3 :H27.228; 27.228; 15.692
90; 90; 120
10075Wang, Hui; Sun, Chuanqi; Jia, Xu; Liu, Hui; Li, Cheng; Zhao, Yingjie
Reversible transformation of single-crystal two-dimensional polymer framework for photo/thermal reversible photolithography.
Chemical science, 2025, 16, 15734-15741
1575237 CIFC19 H15 Br OP 1 n 19.7011; 12.6871; 12.0065
90; 91.03; 90
1477.51Gao, Yunpeng; Jiang, Julong; Maeda, Satoshi; Kubota, Koji; Ito, Hajime
A cooperative electron-deficient phosphine/olefin ligand system for the site-selective mechanochemical Suzuki-Miyaura cross-coupling of 2,4-dibromoaryl ethers.
Chemical science, 2025, 16, 15964-15976
1575238 CIFC17 H13 Br OP 21 21 216.4748; 9.6162; 21.7688
90; 90; 90
1355.39Gao, Yunpeng; Jiang, Julong; Maeda, Satoshi; Kubota, Koji; Ito, Hajime
A cooperative electron-deficient phosphine/olefin ligand system for the site-selective mechanochemical Suzuki-Miyaura cross-coupling of 2,4-dibromoaryl ethers.
Chemical science, 2025, 16, 15964-15976
1575239 CIFC22 H20 O3P 1 21/c 17.2726; 34.397; 7.1925
90; 114.07; 90
1642.8Gao, Yunpeng; Jiang, Julong; Maeda, Satoshi; Kubota, Koji; Ito, Hajime
A cooperative electron-deficient phosphine/olefin ligand system for the site-selective mechanochemical Suzuki-Miyaura cross-coupling of 2,4-dibromoaryl ethers.
Chemical science, 2025, 16, 15964-15976
1575240 CIFC46 H43 Br2 F12 O3 P PdP 1 21/n 113.1518; 19.2859; 18.429
90; 90.849; 90
4673.9Gao, Yunpeng; Jiang, Julong; Maeda, Satoshi; Kubota, Koji; Ito, Hajime
A cooperative electron-deficient phosphine/olefin ligand system for the site-selective mechanochemical Suzuki-Miyaura cross-coupling of 2,4-dibromoaryl ethers.
Chemical science, 2025, 16, 15964-15976
1575241 CIFC31 H23 N5 Ni O7P -110.0751; 13.7318; 14.6404
91.336; 107.416; 90.799
1931.6Tai, Hongbo; Zhang, Xuan; Rong, Yang; Liu, Zhiliang
Rational crystal engineering of conductive metal-organic frameworks for promising electrochemical energy storage.
Chemical science, 2025, 16, 15438-15445
1575242 CIFC31 H27 N5 Ni O8P -110.1; 13.535; 14.671
104.991; 109.272; 94.427
1799.5Tai, Hongbo; Zhang, Xuan; Rong, Yang; Liu, Zhiliang
Rational crystal engineering of conductive metal-organic frameworks for promising electrochemical energy storage.
Chemical science, 2025, 16, 15438-15445
1575243 CIFC37 H27 N5 O7P n a 2112.0923; 11.969; 21.896
90; 90; 90
3169.1Maharana, Prabhat Kumar; Muthuraja, Perumal; Kar, Subhradeep; Veerappan, Tamilthendral; Punniyamurthy, Tharmalingam
Cascade C-H functionalization/annulation of arylamides: access to succinimide-tethered isoquinoline-1,3-diones.
Chemical communications (Cambridge, England), 2025, 61, 13449-13452
1575244 CIFC82 H72 N10 O17 S3P -115.0035; 15.2445; 19.376
79.425; 72.534; 64.12
3796.3Maharana, Prabhat Kumar; Muthuraja, Perumal; Kar, Subhradeep; Veerappan, Tamilthendral; Punniyamurthy, Tharmalingam
Cascade C-H functionalization/annulation of arylamides: access to succinimide-tethered isoquinoline-1,3-diones.
Chemical communications (Cambridge, England), 2025, 61, 13449-13452
1575245 CIFC34 H21 N2 O5 ReP 1 21/n 19.9934; 14.8953; 18.5528
90; 97.49; 90
2738.11Kushwaha, Rajesh; Singh, Virendra; Koch, Biplob; Banerjee, Samya
A bexarotene-attached Re(I) tricarbonyl complex for NADH oxidation and ROS-mediated cancer phototherapy.
Chemical communications (Cambridge, England), 2025, 61, 12713-12716
1575246 CIFC12 H10 Br2 N2 PbP 1 2/c 120.88; 4.1316; 17.4968
90; 114.092; 90
1377.93Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575247 CIFC12 I2 N2 PbP 21 21 29.6885; 17.909; 4.336
90; 90; 90
752.35Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575248 CIFC12 H10 I2 N2 PbP b c n19.6147; 10.211; 7.2904
90; 90; 90
1460.16Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575249 CIFC12 Br2 N2 PbC 1 2/m 112.1435; 14.3139; 4.1064
90; 91.303; 90
713.59Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575250 CIFC12 H10 Cl2 N2 PbP -14.0476; 8.8861; 9.5086
74.107; 85.675; 81.7
325.25Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575251 CIFC12 H10 I2 N2 PbC 1 2/m 112.8252; 14.2484; 4.2928
90; 90.172; 90
784.46Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575252 CIFC12 Br2 N2 PbP n n m8.8284; 18.8885; 4.1504
90; 90; 90
692.1Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575253 CIFC12 I2 N2 PbP m c 214.366; 9.7804; 18.0733
90; 90; 90
771.75Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575254 CIFC12 H10 Cl2 N2 PbC 1 2/c 13.9385; 28.0476; 11.9766
90; 97.269; 90
1312.37Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575255 CIFC12 H10 I2 N2 PbC 1 2/m 111.995; 14.728; 4.3566
90; 95.427; 90
766.2Chen, Zhongwei; Wu, Jin; Deng, Zeyu; Chen, Congcong; Feng, Jianning; Ma, Baixu; Tao, Lizhi; Mao, Lingling; Lu, Haipeng
Topochemical photocycloaddition in two-dimensional lead-halide coordination polymers with tunable phosphorescence.
Chemical science, 2025, 16, 16004-16015
1575256 CIFC120 H96 Cu8 F12 N8 P8P 21 323.0137; 23.0137; 23.0137
90; 90; 90
12188.8Lin, Yan-Yan; Luo, Jian; Dai, Bo-Wen; Yao, Jun-Fei; Xu, Liang-Jin; Lei, Zhen; Wei, Qiao-Hua
Lantern-like Cu8 cluster for high-efficiency electrically driven light-emitting diodes.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 13483-13491
1575257 CIFNa24 O180 U24I 4/m19.719; 19.719; 22.155
90; 90; 90
8614.7Samarasiri, Vidumini S.; Rajapaksha, Harindu; McGee, Sarah; Mason, Sara E.; Forbes, Tori Z.
Formation of U(VI) peroxide nanoclusters from cascade reactions with a persulfate radical initiator.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 13129-13142
1575258 CIFC28 H31 N O11P 1 21/c 110.507; 10.7999; 22.6843
90; 103.214; 90
2505.94Surampudi, Anuja Venkata Sai Durga; Prasad, Sai Ram; Swain, Debasish; Soujanya, Yarasi; Ramakrishna, Sistla; Balasubramanian, Sridhar
Influence of the crystallisation approach on multicomponent systems of palmatine chloride
CrystEngComm, 2025, 27, 5901-5917
1575259 CIFC90 H80 N2 O21 SP 1 21/c 124.428; 13.7192; 22.38
90; 90.459; 90
7500Surampudi, Anuja Venkata Sai Durga; Prasad, Sai Ram; Swain, Debasish; Soujanya, Yarasi; Ramakrishna, Sistla; Balasubramanian, Sridhar
Influence of the crystallisation approach on multicomponent systems of palmatine chloride
CrystEngComm, 2025, 27, 5901-5917
1575260 CIFC28 H30 Cl N O9P 1 21/n 18.3964; 28.9669; 11.1056
90; 103.121; 90
2630.56Surampudi, Anuja Venkata Sai Durga; Prasad, Sai Ram; Swain, Debasish; Soujanya, Yarasi; Ramakrishna, Sistla; Balasubramanian, Sridhar
Influence of the crystallisation approach on multicomponent systems of palmatine chloride
CrystEngComm, 2025, 27, 5901-5917
1575261 CIFC54 H39 Mn2 N5 O4 S2P -112.8991; 13.3726; 14.7277
65.97; 89.366; 89.621
2320.12Ikbal, Asik; Das, Gouri Sankar; Mehta, Sakshi; Agrawalla, Suraj Kumar; Purohit, Chandra Shekhar; Diyali, Nilankar; Mondal, Abhishake; Biswas, Bhaskar; Das, Hari Sankar
N<sub>2</sub>O<sub>2</sub>S-donor redox-active ligand coordinated dinuclear manganese(II) and cobalt(II) complexes: crystal structures, magnetic properties and electrochemical hydrogen evolution.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 12447-12453
1575262 CIFC58 H52 Co2 N6 O7 S2P -112.725; 13.2973; 17.8496
101.053; 108.164; 108.19
2582.84Ikbal, Asik; Das, Gouri Sankar; Mehta, Sakshi; Agrawalla, Suraj Kumar; Purohit, Chandra Shekhar; Diyali, Nilankar; Mondal, Abhishake; Biswas, Bhaskar; Das, Hari Sankar
N<sub>2</sub>O<sub>2</sub>S-donor redox-active ligand coordinated dinuclear manganese(II) and cobalt(II) complexes: crystal structures, magnetic properties and electrochemical hydrogen evolution.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 12447-12453
1575263 CIFC20 H21 N O4P c a 2117.72; 5.998; 33.06
90; 90; 90
3514Vinod, Kavya; Noushad, Najuma; Tanaka, Hidetoshi; Mohan, Nitha; Kokado, Yuya; Tomiya, Daiki; Kobori, Yasuhiro; Hariharan, Mahesh
Aggregation-assisted energy gap modulation controls delayed emission in hybrid charge-transfer emitters.
Chemical science, 2025, 16, 15546-15554
1575264 CIFC20 H20 Br N O4P 1 21/c 110.8941; 19.285; 9.3345
90; 106.773; 90
1877.7Vinod, Kavya; Noushad, Najuma; Tanaka, Hidetoshi; Mohan, Nitha; Kokado, Yuya; Tomiya, Daiki; Kobori, Yasuhiro; Hariharan, Mahesh
Aggregation-assisted energy gap modulation controls delayed emission in hybrid charge-transfer emitters.
Chemical science, 2025, 16, 15546-15554
1575265 CIFC17 H16 N4P 1 21 16.5089; 8.2692; 13.0732
90; 101.411; 90
689.74Laluk, Andrew L. D. M.; Buschmann, Dennis A.; Takano, Shinjiro; Sullivan, Angus I.; Aminfar, Parimah; Stamplecoskie, Kevin; Tsukuda, Tatsuya; Crudden, Cathleen M.
Tuning the surface chemistry of NHC-protected Au<sub>13</sub> nanoclusters <i>via</i> a robust amide coupling procedure.
Chemical science, 2025, 16, 18278-18285
1575266 CIFC56 H60 Au Cl2 N4 O10P -110.4502; 10.814; 12.2059
92.928; 108.465; 97.633
1290.38Laluk, Andrew L. D. M.; Buschmann, Dennis A.; Takano, Shinjiro; Sullivan, Angus I.; Aminfar, Parimah; Stamplecoskie, Kevin; Tsukuda, Tatsuya; Crudden, Cathleen M.
Tuning the surface chemistry of NHC-protected Au<sub>13</sub> nanoclusters <i>via</i> a robust amide coupling procedure.
Chemical science, 2025, 16, 18278-18285
1575267 CIFC46 H48 Au F6 N4 O8 PP -17.3204; 12.4682; 12.7462
83.405; 75.025; 89.663
1116.08Laluk, Andrew L. D. M.; Buschmann, Dennis A.; Takano, Shinjiro; Sullivan, Angus I.; Aminfar, Parimah; Stamplecoskie, Kevin; Tsukuda, Tatsuya; Crudden, Cathleen M.
Tuning the surface chemistry of NHC-protected Au<sub>13</sub> nanoclusters <i>via</i> a robust amide coupling procedure.
Chemical science, 2025, 16, 18278-18285
1575268 CIFC210 H222 Au13 Cl9 F12 N18 O36 P2P 1 21/n 122.7415; 27.9306; 36.9007
90; 101.763; 90
22946.5Laluk, Andrew L. D. M.; Buschmann, Dennis A.; Takano, Shinjiro; Sullivan, Angus I.; Aminfar, Parimah; Stamplecoskie, Kevin; Tsukuda, Tatsuya; Crudden, Cathleen M.
Tuning the surface chemistry of NHC-protected Au<sub>13</sub> nanoclusters <i>via</i> a robust amide coupling procedure.
Chemical science, 2025, 16, 18278-18285
1575269 CIFC30 H69 B20 O2 P3P 1 21/c 119.5502; 12.5616; 18.7554
90; 105.33; 90
4442.1Riffle, Jared R.; Jowers, Cash L.; Luna, Sarah; Smith, Mark D.; Peryshkov, Dmitry V.
Non-spectator behavior of a neutral phosphine ligand driven by a redox-active boron cluster.
Chemical science, 2025, 16, 15997-16003
1575270 CIFC30 H69 B20 Cl Cu O P3P -110.3745; 10.5931; 21.3748
77.677; 84.292; 77.488
2236.93Riffle, Jared R.; Jowers, Cash L.; Luna, Sarah; Smith, Mark D.; Peryshkov, Dmitry V.
Non-spectator behavior of a neutral phosphine ligand driven by a redox-active boron cluster.
Chemical science, 2025, 16, 15997-16003
1575271 CIFC50 H81 B21 Cu P3P -112.4794; 14.7895; 16.138
88.786; 72.01; 88.654
2831.79Riffle, Jared R.; Jowers, Cash L.; Luna, Sarah; Smith, Mark D.; Peryshkov, Dmitry V.
Non-spectator behavior of a neutral phosphine ligand driven by a redox-active boron cluster.
Chemical science, 2025, 16, 15997-16003
1575272 CIFC30 H67 B20 Cu N5 P3P -110.3603; 11.3077; 20.9212
79.915; 84.143; 74.576
2322.2Riffle, Jared R.; Jowers, Cash L.; Luna, Sarah; Smith, Mark D.; Peryshkov, Dmitry V.
Non-spectator behavior of a neutral phosphine ligand driven by a redox-active boron cluster.
Chemical science, 2025, 16, 15997-16003
1575273 CIFC32 H70 B20 Cl Cu N3 P3P 1 21/c 111.325; 41.3884; 10.463
90; 102.191; 90
4793.7Riffle, Jared R.; Jowers, Cash L.; Luna, Sarah; Smith, Mark D.; Peryshkov, Dmitry V.
Non-spectator behavior of a neutral phosphine ligand driven by a redox-active boron cluster.
Chemical science, 2025, 16, 15997-16003
1575274 CIFC60 H60 B N3P 1 21/c 115.8245; 9.6398; 32.533
90; 101.82; 90
4857.5Chen, Yi-Kuan; Lei, Jian; Chao, Yu-Chieh; Kung, Yu-Cheng; Hung, Wen-Yi; Hsu, Liang-Yan; Wu, Tien-Lin
Strategic azepine engineering realizes highly efficient and stable blue narrowband light-emitting diodes.
Materials horizons, 2025, 12, 9737-9748
1575275 CIFC72 H58 B D10 N3P b c a11.4583; 29.8119; 32.0343
90; 90; 90
10942.7Chen, Yi-Kuan; Lei, Jian; Chao, Yu-Chieh; Kung, Yu-Cheng; Hung, Wen-Yi; Hsu, Liang-Yan; Wu, Tien-Lin
Strategic azepine engineering realizes highly efficient and stable blue narrowband light-emitting diodes.
Materials horizons, 2025, 12, 9737-9748
1575276 CIFC72 H68 B N3P b c a11.46318; 29.88427; 32.1321
90; 90; 90
11007.5Chen, Yi-Kuan; Lei, Jian; Chao, Yu-Chieh; Kung, Yu-Cheng; Hung, Wen-Yi; Hsu, Liang-Yan; Wu, Tien-Lin
Strategic azepine engineering realizes highly efficient and stable blue narrowband light-emitting diodes.
Materials horizons, 2025, 12, 9737-9748
1575277 CIFC70 H66 N6 O16 Zn2P -111.013; 15.456; 18.53
86.382; 89.951; 79.749
3097.4Chanda, Alokananda; Mandal, Sanjay K.
Synthesis of metal–organic rectangles decorated with primary amide groups for the synergistic Lewis acid and Brønsted base heterogeneous catalysis
Catalysis Science & Technology, 2025, 15, 6379-6390
1575278 CIFC70 H66 Cd2 N6 O14P -111.0764; 15.4916; 18.8224
86.924; 89.289; 80.435
3180.2Chanda, Alokananda; Mandal, Sanjay K.
Synthesis of metal–organic rectangles decorated with primary amide groups for the synergistic Lewis acid and Brønsted base heterogeneous catalysis
Catalysis Science & Technology, 2025, 15, 6379-6390
1575279 CIFC28 H20 S4P -15.2197; 8.8113; 11.4168
88.594; 77.55; 86.718
511.86Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575280 CIFC28 H20 O4P 1 21/n 110.8606; 12.9849; 13.7224
90; 103.074; 90
1885.02Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575281 CIFC28 H20 O4P 1 21/n 110.9191; 13.1598; 13.7566
90; 102.816; 90
1927.48Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575282 CIFC26 H20 O4P 1 21/n 19.7178; 10.8952; 17.343
90; 91.835; 90
1835.3Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575283 CIFC26 H20 O4P 1 21/n 19.6782; 10.8375; 17.2665
90; 92.011; 90
1809.92Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575284 CIFC26 H20 S4P -15.101; 9.1362; 11.3735
89.639; 77.413; 87.365
516.758Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575285 CIFC26 H20 O4P -110.9983; 18.9426; 19.1861
86.1432; 75.6762; 79.232
3803.78Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575286 CIFC26 H20 O4P -110.9472; 18.8237; 19.0718
85.8795; 75.9202; 79.808
3750.14Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575287 CIFC28 H20 S4P -15.2372; 8.8932; 11.4399
88.844; 77.845; 86.23
519.74Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575288 CIFC28 H20 S4P -15.2396; 8.8512; 11.4251
88.761; 77.638; 86.513
516.6Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575289 CIFC28 H20 O4P 1 21/n 110.8892; 13.0557; 13.7463
90; 102.879; 90
1905.09Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575290 CIFC26 H20 O4P 1 21/n 19.768; 10.9262; 17.4458
90; 91.678; 90
1861.14Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575291 CIFC26 H20 S4P -15.0737; 9.0307; 11.309
89.351; 77.263; 87.865
505.06Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575292 CIFC26 H20 S4P -15.0914; 9.0718; 11.3386
89.469; 77.308; 87.639
510.479Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575293 CIFC26 H20 O4P -110.8935; 18.743; 18.9847
85.8831; 76.1584; 79.9947
3704.58Pal, Prasanta; Bulgarevich, Kirill; Hanaki, Ryota; Kawabata, Kohsuke; Takimiya, Kazuo
Extension of the π-conjugated core of methylchalcogenolated polycyclic aromatic hydrocarbons: synthesis and characterization of 1,4,7,10-tetrakis(methylthio)- and tetramethoxy-coronene.
Chemical science, 2025, 16, 15368-15377
1575294 CIFC22 H18 Cl3 N O S TiP 1 21/n 123.9688; 8.5432; 30.1063
90; 113.366; 90
5659.3Zhu, Guangyu; Wang, Liang; Tao, Wenjie; Hou, Hongbin; Xu, Guangqiang; Wang, Bo; Wang, Qinggang
The side-arm-effect controlled stereodivergent polymerization of 1-butene
Polymer Chemistry, 2025, 16, 3675-3682
1575295 CIFC23 H21 Cl3 N2 O TiP -18.607; 9.769; 14.479
99.66; 99.136; 105.067
1132.4Zhu, Guangyu; Wang, Liang; Tao, Wenjie; Hou, Hongbin; Xu, Guangqiang; Wang, Bo; Wang, Qinggang
The side-arm-effect controlled stereodivergent polymerization of 1-butene
Polymer Chemistry, 2025, 16, 3675-3682
1575296 CIFC11.5 H9 Cl1.5 N0.5 O Ti0.5P -19.883; 11.2698; 14.447
105.467; 94.575; 115.251
1367.63Zhu, Guangyu; Wang, Liang; Tao, Wenjie; Hou, Hongbin; Xu, Guangqiang; Wang, Bo; Wang, Qinggang
The side-arm-effect controlled stereodivergent polymerization of 1-butene
Polymer Chemistry, 2025, 16, 3675-3682
1575297 CIFC27.5 H21 Cl3 N2 O TiP -19.7237; 11.7183; 14.3455
108.652; 109.153; 92.134
1444.45Zhu, Guangyu; Wang, Liang; Tao, Wenjie; Hou, Hongbin; Xu, Guangqiang; Wang, Bo; Wang, Qinggang
The side-arm-effect controlled stereodivergent polymerization of 1-butene
Polymer Chemistry, 2025, 16, 3675-3682
1575298 CIFC54 H74 D6 Ga2 N2 P2P 1 21/n 113.2842; 14.0429; 13.797
90; 93.272; 90
2569.6Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575299 CIFC75 H90 Ga2 N2 P2P -112.0391; 12.1205; 22.5729
91.413; 96.822; 96.004
3250.28Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575300 CIFC70 H86 Ga2 N2 P2P c a 2114.0253; 16.5037; 26.1487
90; 90; 90
6052.62Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575301 CIFC34 H41 Ga N PP -19.8258; 10.6897; 15.1671
80.922; 76.755; 75.256
1491.24Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575302 CIFC60 H47 B F22 Ga N PP 1 21/n 115.0973; 23.9872; 17.0383
90; 116.108; 90
5540.7Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575303 CIFC52 H41 B F15 Ga N PP 1 21/c 114.3929; 14.7735; 21.6915
90; 92.238; 90
4608.8Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575304 CIFC108 H84 B2 F42 Ga2 N2 P2P 1 21/c 113.8266; 24.9376; 16.2676
90; 111.413; 90
5221.9Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575305 CIFC56 H78 D6 Ga2 N2 P2P n a 2128.6854; 8.599; 21.4708
90; 90; 90
5296.1Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575306 CIFC45 H40 B F15 Ga N PP b c a15.4213; 17.247; 31.7812
90; 90; 90
8452.9Schwamm, Ryan J.; Bhide, Malavika A.; Nichol, Gary S.; Cowley, Michael J.
Reversible addition of ethene to gallium(i) monomers and dimers.
Chemical science, 2025, 16, 13333-13344
1575307 CIFC30 H28 Cu N10 O8P 1 21/c 113.043; 12.8084; 9.2763
90; 103.57; 90
1506.44Shekhawat, Bhawana; Ahamed, Subuhan; Gahlaut, Puneet Singh; Ghosh, Saurav; Gautam, Deepak; Mondal, Kartik Chandra; Jana, Barun
Developing highly active Cu(ii)-triazolyl-pyridine complexes for C–H functionalization of 9H-fluorene and indole via a borrowing hydrogen strategy
Catalysis Science & Technology, 2025, 15, 6001-6010
1575308 CIFC19 H23 N O2P 21 21 215.83723; 11.91509; 23.6848
90; 90; 90
1647.3Ali, Siraj Z.; Manno, Nicolás A; Shen, Jeff; Schenker, Alessia; Lipshultz, Jeffrey M.; White, Nicholas A.; Radosevich, Alexander T.
Nitrilation of carboxylic acids by P<sup>III</sup>/P<sup>V</sup>-catalysis.
Chemical science, 2025, 16, 16145-16150
1575309 CIFC33 H25 N O2P -110.405; 11.265; 11.901
103.318; 104.698; 109.45
1194.1Bera, Satyajit; Bhunia, Supriya; Dolai, Anirban; Box, Sk Majid; Das, Arpan; Samanta, Subhas
Arylpyrrolylidene-indanones as readily synthesised photoswitches offering dual- and single-colour fluorescence toggling with nearly quantitative <i>E</i>/<i>Z</i> isomerisation under visible light.
Chemical science, 2025, 16, 16196-16204
1575310 CIFC36 H36 Cu6 N6 S6R -3 :H12.5474; 12.5474; 21.7649
90; 90; 120
2967.53Toyama, Kazuki; Tanaka, Yuya; Yoshizawa, Michito
Multinuclear Cu <sub><i>n</i></sub> S <sub><i>m</i></sub> clusters encapsulated by aromatic micelles as aqueous red-to-NIR phosphorescent ink.
Chemical science, 2025, 16, 16751-16756
1575311 CIFC36 H36 Cu6 N6 S6C 1 2/c 122.1291; 9.5391; 18.9461
90; 94.215; 90
3988.55Toyama, Kazuki; Tanaka, Yuya; Yoshizawa, Michito
Multinuclear Cu <sub><i>n</i></sub> S <sub><i>m</i></sub> clusters encapsulated by aromatic micelles as aqueous red-to-NIR phosphorescent ink.
Chemical science, 2025, 16, 16751-16756
1575312 CIFC21 H18 F3 N O3C 1 2 120.1984; 6.0121; 29.4619
90; 92.317; 90
3574.8Lin, Chuiyi; Zhang, Jiwu; Zhang, Zhihan; Chong, Qinglei; Meng, Fanke
Cobalt-catalyzed diastereo- and enantioselective reductive coupling of cyclobutenes and aldehydes through umpolung reactivity.
Chemical science, 2025, 16, 16250-16258
1575313 CIFC33 H27 N O4P 21 21 2110.5121; 12.4941; 20.0428
90; 90; 90
2632.4Lin, Chuiyi; Zhang, Jiwu; Zhang, Zhihan; Chong, Qinglei; Meng, Fanke
Cobalt-catalyzed diastereo- and enantioselective reductive coupling of cyclobutenes and aldehydes through umpolung reactivity.
Chemical science, 2025, 16, 16250-16258
1575314 CIFC22 H24 Cl F6 N3 O4 P Pd0.5 S2P 1 21/n 118.0287; 8.6686; 19.3834
90; 115.664; 90
2730.5Qadir, Muhammad I.; Chacón-Rosales, Gustavo; Ebersol, Camila P.; Abarca, Gabriel; Matias, Pedro H. F.; de Oliveira, Heibbe Cristhian B.; Pontes, Renato B.; Stieler, Rafael; Dupont, Jairton
Surface palladium nanoparticles in ionic liquids modified with phosphorus ligands for enhanced catalytic semi-hydrogenation.
Nanoscale, 2025, 17, 16705-16712
1575315 CIFC38 H33 B O2 SP -112.1313; 13.8706; 18.5739
88.012; 77.103; 78.727
2987.65Chen, Rui; Li, Shengyu; Huang, Hao; Tong, Xingwen; Liu, Yuchao; Ren, Zhongjie; Ying, Shian; Liu, Liqun; Yan, Shouke
Achieving high efficiency ultrapure violet OLEDs with a CIE <sub><i>y</i></sub> coordinate of below 0.015 through precise manipulation of peripheral heavy atom sulfur.
Chemical science, 2025, 16, 16304-16313
1575316 CIFC38 H33 B O2 SP 1 21/n 112.9176; 18.834; 13.4181
90; 115.122; 90
2955.7Chen, Rui; Li, Shengyu; Huang, Hao; Tong, Xingwen; Liu, Yuchao; Ren, Zhongjie; Ying, Shian; Liu, Liqun; Yan, Shouke
Achieving high efficiency ultrapure violet OLEDs with a CIE <sub><i>y</i></sub> coordinate of below 0.015 through precise manipulation of peripheral heavy atom sulfur.
Chemical science, 2025, 16, 16304-16313
1575317 CIFC12 H28 Br6 N2 SnC 1 2/m 120.8427; 7.5744; 7.1881
90; 97.696; 90
1124.57Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575318 CIFC6 H14 Br3 N SnP 1 21/n 19.8482; 8.2935; 15.0756
90; 102.233; 90
1203.36Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575319 CIFC12 H28 Br6 N2 SnC 1 2 120.8576; 7.5452; 7.1743
90; 97.556; 90
1119.25Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575320 CIFC12 H28 Br4 N2 SnP 21 21 216.3412; 12.0486; 25.9872
90; 90; 90
1985.49Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575321 CIFC12 H28 Br6 N2 SnC 1 2 120.8205; 7.5406; 7.167
90; 97.444; 90
1115.73Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575322 CIFC12 H28 Br4 N2 SnP 21 21 216.3457; 12.0368; 25.9787
90; 90; 90
1984.3Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575323 CIFC13 H12 N2 O5 SC 1 c 15.171; 12.9028; 19.7324
90; 94.42; 90
1312.64Oblazny, Mark; Hamaker, Christhoper G.
Structural Comparison of Three N-(4-Methoxyphenyl)-Nitrobenzenesulfonamide Derivatives
Crystals, 2025, 15, 673
1575324 CIFC13 H12 N2 O5 SP 1 21/c 120.5686; 5.1731; 13.0803
90; 107.76; 90
1325.46Oblazny, Mark; Hamaker, Christhoper G.
Structural Comparison of Three N-(4-Methoxyphenyl)-Nitrobenzenesulfonamide Derivatives
Crystals, 2025, 15, 673
1575325 CIFC13 H12 N2 O5 SP 1 21/c 112.0195; 7.2684; 15.0297
90; 91.529; 90
1312.57Oblazny, Mark; Hamaker, Christhoper G.
Structural Comparison of Three N-(4-Methoxyphenyl)-Nitrobenzenesulfonamide Derivatives
Crystals, 2025, 15, 673
1575326 CIFC19 H26 Cu N2 O4C 1 2/c 110.9402; 12.2115; 15.0631
90; 107.479; 90
1919.46Mensing, Luca; Schäfer, Tim; Layh, Marcus; Hebenbrock, Marian
Gone with the Wind—Adducts of Volatile Pyridine Derivatives and Copper(II) Acetylacetonate
Crystals, 2025, 15, 690
1575327 CIFC37 H43 Cl15 Cu2 N2 O8P -19.1804; 11.2336; 13.2041
78.857; 86.404; 86.933
1332.2Mensing, Luca; Schäfer, Tim; Layh, Marcus; Hebenbrock, Marian
Gone with the Wind—Adducts of Volatile Pyridine Derivatives and Copper(II) Acetylacetonate
Crystals, 2025, 15, 690
1575328 CIFC22 H24 Cu N2 O4P -18.2115; 8.6888; 8.7538
69.733; 62.251; 76.494
516.55Mensing, Luca; Schäfer, Tim; Layh, Marcus; Hebenbrock, Marian
Gone with the Wind—Adducts of Volatile Pyridine Derivatives and Copper(II) Acetylacetonate
Crystals, 2025, 15, 690
1575329 CIFC15 H18 Br Cu N O4P -18.6807; 10.2923; 11.4344
112.053; 110.583; 96.89
848.22Mensing, Luca; Schäfer, Tim; Layh, Marcus; Hebenbrock, Marian
Gone with the Wind—Adducts of Volatile Pyridine Derivatives and Copper(II) Acetylacetonate
Crystals, 2025, 15, 690

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