Crystallography Open Database

Result: there are 10264 entries in the selection

Switch to the old layout of the page

Download all results as: list of COD numbers | list of CIF URLs | data in CSV format

We are unable to provide that many records as a single archive.
You can instead download the entire COD archive as a single .zip, .tgz or .txz archive.

Searching year of publication is 2025

Left arrow Left arrow First | Left arrow Previous 300 | of 35 | Next 300 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

COD ID Blue up arrow Links Formula Up arrow Space group Up arrow Cell parameters Cell volume Up arrow Bibliography
1571675 CIFC22 H27 N5 O4 SP 1 21 19.189; 12.6757; 10.9694
90; 114.013; 90
1167.1Rehman, Zainab; Lubay, Jairah; Franks, W. Trent; Bartók, Albert P; Corlett, Emily K.; Nguyen, Bao; Scrivens, Garry; Samas, Brian M.; Frericks-Schmidt, Heather; Brown, Steven P.
Organic NMR crystallography: enabling progress for applications to pharmaceuticals and plant cell walls.
Faraday discussions, 2025, 255, 222-243
1571705 CIFC9 H15 N2 O3.5P 1 21 15.9813; 11.3702; 14.985
90; 93.681; 90
1017Ramalhete, Susana M.; Nartowski, Karol P.; Green, Hayley; Angulo, Jesús; Iuga, Dinu; Fábián, László; Lloyd, Gareth O.; Khimyak, Yaroslav Z.
Probing assembly/disassembly of ordered molecular hydrogels.
Faraday discussions, 2025, 255, 495-519
1572649 CIFLi12 Nb4 O16C 1 2/m 110.389; 11.9401; 5.201
90; 109.899; 90
606.6Ko, Sarah L.; Dorrell, Jordan A.; Morris, Andrew J.; Griffith, Kent J.
Metastable layered lithium-rich niobium and tantalum oxides <i>via</i> nearly instantaneous cation exchange.
Faraday discussions, 2025, 255, 429-450
1572650 CIFNa12 Nb4 O16C 1 2/m 111.1218; 13.00203; 5.75288
90; 109.49; 90
784.23Ko, Sarah L.; Dorrell, Jordan A.; Morris, Andrew J.; Griffith, Kent J.
Metastable layered lithium-rich niobium and tantalum oxides <i>via</i> nearly instantaneous cation exchange.
Faraday discussions, 2025, 255, 429-450
1572651 CIFNa12 Nb4 O16C 1 2/m 111.0923; 12.97113; 5.73501
90; 109.429; 90
778.16Ko, Sarah L.; Dorrell, Jordan A.; Morris, Andrew J.; Griffith, Kent J.
Metastable layered lithium-rich niobium and tantalum oxides <i>via</i> nearly instantaneous cation exchange.
Faraday discussions, 2025, 255, 429-450
1572652 CIFLi12 Nb4 O16C 1 2/m 110.362; 11.9047; 5.179
90; 109.83; 90
601Ko, Sarah L.; Dorrell, Jordan A.; Morris, Andrew J.; Griffith, Kent J.
Metastable layered lithium-rich niobium and tantalum oxides <i>via</i> nearly instantaneous cation exchange.
Faraday discussions, 2025, 255, 429-450
1572854 CIF
HKL
C32 H34 N4 O9 S3P -111.2834; 13.3905; 13.4806
113.251; 105.083; 98.375
1734.64Mulholland, Michael E.; Filiatrault, Heather L.; Maris, Thierry; Skene, W. G.
Structural study of an electroactive allyl ester thiophenoazomethine for PDMS blending
Journal of Molecular Structure, 2025, 1320, 139416-1-139416-8
1572930 CIFC60 H72 N3 O3 Pd3 Se3P -114.0778; 15.5286; 31.7803
79.873; 77.515; 64.584
6099.4Sarkar, Prasenjit; Manamel, Litty Thomas; Saha, Puranjay; Jana, Chinmay; Sarmah, Amrit; Mohanan, Kannan Udaya; Das, Bikas C.; Mukherjee, Chandan
A triradical-containing trinuclear Pd(II) complex: spin-polarized electronic transmission, analog resistive switching and neuromorphic advancements.
Materials horizons, 2025, 12, 246-257
1572973 CIFC20 H21 N O3P -19.2173; 9.4972; 9.5809
88.263; 82.367; 85.479
828.51Fu, Shijie; Jia, Hao; Meng, Xinmiao; Wang, Chengyuan; Li, Qian; Li, Lei; Yang, Jiaxiang; Niu, Helin
Fine-tuning the molecular conformation and packing structures of coumarin-based luminogens to achieve distinct piezochromic properties upon mechanical grinding and under hydrostatic pressures.
Materials horizons, 2025, 12, 293-302
1572974 CIFC20 H18 N2 O2P -16.633; 7.5002; 17.4918
79.488; 81.308; 64.528
769.83Fu, Shijie; Jia, Hao; Meng, Xinmiao; Wang, Chengyuan; Li, Qian; Li, Lei; Yang, Jiaxiang; Niu, Helin
Fine-tuning the molecular conformation and packing structures of coumarin-based luminogens to achieve distinct piezochromic properties upon mechanical grinding and under hydrostatic pressures.
Materials horizons, 2025, 12, 293-302
1572975 CIFC20 H18 N2 O2P 1 21/c 111.443; 13.277; 10.8931
90; 99.297; 90
1633.24Fu, Shijie; Jia, Hao; Meng, Xinmiao; Wang, Chengyuan; Li, Qian; Li, Lei; Yang, Jiaxiang; Niu, Helin
Fine-tuning the molecular conformation and packing structures of coumarin-based luminogens to achieve distinct piezochromic properties upon mechanical grinding and under hydrostatic pressures.
Materials horizons, 2025, 12, 293-302
1572976 CIFC20 H21 N O3P 1 21/n 16.4917; 19.911; 12.759
90; 90.73; 90
1649Fu, Shijie; Jia, Hao; Meng, Xinmiao; Wang, Chengyuan; Li, Qian; Li, Lei; Yang, Jiaxiang; Niu, Helin
Fine-tuning the molecular conformation and packing structures of coumarin-based luminogens to achieve distinct piezochromic properties upon mechanical grinding and under hydrostatic pressures.
Materials horizons, 2025, 12, 293-302
1573032 CIFC18 H20 O4P b c a4.8827; 10.6999; 29.5508
90; 90; 90
1543.86Pinson, Dana M.; Eckstrom, Francesca D.; Ostrom, Gregory S.; Randall McClain, K.; Baldwin, Lawrence C.; Harvey, Benjamin G.
[Ru]-Catalyzed olefin metathesis and ethenolysis for the synthesis and recycling of bio-based polycarbonates and polycyanurates
Polymer Chemistry, 2025, 16, 133-148
1573033 CIFC21 H22 O5C 1 2/c 115.9421; 8.679; 13.2926
90; 101.624; 90
1801.46Pinson, Dana M.; Eckstrom, Francesca D.; Ostrom, Gregory S.; Randall McClain, K.; Baldwin, Lawrence C.; Harvey, Benjamin G.
[Ru]-Catalyzed olefin metathesis and ethenolysis for the synthesis and recycling of bio-based polycarbonates and polycyanurates
Polymer Chemistry, 2025, 16, 133-148
1573034 CIFC33 H33 N3 O6P 1 21/n 113.0353; 11.7214; 20.182
90; 107.691; 90
2937.8Pinson, Dana M.; Eckstrom, Francesca D.; Ostrom, Gregory S.; Randall McClain, K.; Baldwin, Lawrence C.; Harvey, Benjamin G.
[Ru]-Catalyzed olefin metathesis and ethenolysis for the synthesis and recycling of bio-based polycarbonates and polycyanurates
Polymer Chemistry, 2025, 16, 133-148
1573045 CIFC66 H44 B Cl4 F20 N O P2P -113.37; 15.247; 16.3
87.59; 75.11; 79.81
3161You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573046 CIFC63 H48 B Cl2 F20 N O P2C 1 c 110.1018; 31.87; 18.321
90; 92.637; 90
5892.1You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573047 CIFC65 H42 B F20 N O P2P -113.124; 16.183; 17.493
110.67; 95.58; 113.696
3057You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573048 CIFC32.5 H34 Cl2 N O P2P -112.944; 13.582; 19.223
103.948; 103.841; 97.75
3117.5You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573049 CIFC71 H48 B Cl2 F20 N O P2P -114.195; 15.574; 16.591
82.59; 77.118; 64.527
3226You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573050 CIFC71 H58 B Cl4 F20 N O P2P -113.127; 16.617; 17.814
114.495; 98.862; 91.899
3473.5You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573051 CIFC48 H34 Al F36 N O5 P2P b c a20.836; 18.713; 29.74
90; 90; 90
11596You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573052 CIFC63 H40 B F20 N O2 P2P 1 21/c 111.884; 16.729; 31.882
90; 96.442; 90
6298You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573053 CIFC64 H42 B F20 N O2 P2C 1 2/c 150.046; 10.705; 27.527
90; 123.266; 90
12331You, Lijun; Roth, Daniel; Greb, Lutz
Structural constraint at a P-P bond: phosphinophosphination of alkenes, alkynes, and carbonyls by a concerted mechanism.
Chemical science, 2025, 16, 1716-1721
1573160 CIFC84 H100 Ga2 N4I 41 c d17.2516; 17.2516; 47.4743
90; 90; 90
14129.2Merschel, Arne; Heda, Shkelqim; Vishnevskiy, Yury V.; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
Annulated carbocyclic gallylene and bis-gallylene with two-coordinated Ga(i) atoms.
Chemical science, 2025, 16, 2222-2230
1573161 CIFC80 H78 F16 Ga2 N4P 1 21/c 119.4377; 19.6182; 19.7964
90; 100.679; 90
7418.3Merschel, Arne; Heda, Shkelqim; Vishnevskiy, Yury V.; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
Annulated carbocyclic gallylene and bis-gallylene with two-coordinated Ga(i) atoms.
Chemical science, 2025, 16, 2222-2230
1573162 CIFC82.88 H87 Fe1.97 Ga2 I0.06 N4 O7.88P -110.8571; 14.302; 25.6182
98.115; 96.616; 102.807
3795.66Merschel, Arne; Heda, Shkelqim; Vishnevskiy, Yury V.; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
Annulated carbocyclic gallylene and bis-gallylene with two-coordinated Ga(i) atoms.
Chemical science, 2025, 16, 2222-2230
1573163 CIFC78 H90 Cl4 Ga2 N4P 1 21/n 110.3023; 18.4534; 20.0384
90; 103.039; 90
3711.3Merschel, Arne; Heda, Shkelqim; Vishnevskiy, Yury V.; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
Annulated carbocyclic gallylene and bis-gallylene with two-coordinated Ga(i) atoms.
Chemical science, 2025, 16, 2222-2230
1573164 CIFC73 H86 Ga2 N4P -112.7988; 14.6243; 18.1282
80.487; 79.632; 85.811
3288.5Merschel, Arne; Heda, Shkelqim; Vishnevskiy, Yury V.; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
Annulated carbocyclic gallylene and bis-gallylene with two-coordinated Ga(i) atoms.
Chemical science, 2025, 16, 2222-2230
1573165 CIFC66 H78 Ga2 I4 N4P -110.5694; 12.1801; 13.6704
101.963; 98.911; 107.53
1596.52Merschel, Arne; Heda, Shkelqim; Vishnevskiy, Yury V.; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
Annulated carbocyclic gallylene and bis-gallylene with two-coordinated Ga(i) atoms.
Chemical science, 2025, 16, 2222-2230
1573166 CIFC88 H88 F12 Ga2 N6C 1 2/c 121.1589; 19.2641; 19.4975
90; 91.377; 90
7945Merschel, Arne; Heda, Shkelqim; Vishnevskiy, Yury V.; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
Annulated carbocyclic gallylene and bis-gallylene with two-coordinated Ga(i) atoms.
Chemical science, 2025, 16, 2222-2230
1573171 CIFC144 H84 Cu16 F54 N12 P3 S25R 3 c :H24.815; 24.815; 66.157
90; 90; 120
35281Kumar, Shibaditya; Mishra, Saikat; Das, Aniruddha; Mahiya, Kuldeep; Laha, Sourav; Maji, Milan; Patra, Apurba K.
Analogous copper nanoclusters (Cu<sub>16/17</sub>) with two electron superatomic and mixed valence copper(II)/copper(I) and copper(I)/copper(0) characters.
Nanoscale, 2025, 17, 982-991
1573172 CIFC212 H172 Cl Cu16 F36 N12 O4 S25C 1 2/c 139.487; 20.216; 31.428
90; 113.044; 90
23086Kumar, Shibaditya; Mishra, Saikat; Das, Aniruddha; Mahiya, Kuldeep; Laha, Sourav; Maji, Milan; Patra, Apurba K.
Analogous copper nanoclusters (Cu<sub>16/17</sub>) with two electron superatomic and mixed valence copper(II)/copper(I) and copper(I)/copper(0) characters.
Nanoscale, 2025, 17, 982-991
1573173 CIFC163 H113 Cu17 F54 N13 O2 P3 S24R 3 c :H24.8645; 24.8645; 66.598
90; 90; 120
35658Kumar, Shibaditya; Mishra, Saikat; Das, Aniruddha; Mahiya, Kuldeep; Laha, Sourav; Maji, Milan; Patra, Apurba K.
Analogous copper nanoclusters (Cu<sub>16/17</sub>) with two electron superatomic and mixed valence copper(II)/copper(I) and copper(I)/copper(0) characters.
Nanoscale, 2025, 17, 982-991
1573192 CIF
Paper
C20 H12P 1 21/c 14.5384; 20.439; 13.531
90; 97.006; 90
1245.8Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573193 CIFC20 H12P 1 21/c 14.2338; 19.838; 12.9059
90; 95.613; 90
1078.8Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573194 CIFC20 H12P 1 21/c 13.5971; 21.658; 12.7908
90; 95.339; 90
992.2Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573195 CIFC20 H12P -13.4912; 12.687; 21.531
91.51; 90.434; 95.82
948.4Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573196 CIFC20 H12P -13.4134; 12.5674; 21.367
91.675; 90.433; 95.755
911.5Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573197 CIFC20 H12P -13.3501; 12.453; 21.244
91.709; 90.417; 95.599
881.6Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573198 CIFC20 H12P -13.2931; 12.347; 21.133
91.42; 90.439; 95.29
855.3Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573199 CIFC20 H12P -13.1883; 12.1605; 20.825
91.99; 90.297; 95.206
803.6Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573200 CIFC20 H12P -13.1077; 11.995; 20.571
91.56; 89.92; 95.171
763.4Zhou, Wenju; Aslandukov, Andrey; Minchenkova, Anastasiia; Hanfland, Michael; Dubrovinsky, Leonid; Dubrovinskaia, Natalia
Structural transformations and stability of benzo[a]pyrene under high pressure.
IUCrJ, 2025, 12
1573201 CIFC20 H14 O2P 1 21/c 17.1494; 10.9139; 17.7592
90; 102.584; 90
1352.42Zwolenik, A.; Makal, A.
Tracking anharmonic oscillations in the structure of β-1,3-diacetylpyrene.
IUCrJ, 2025, 12
1573202 CIFC20 H14 O2P 1 21/c 17.17156; 10.9455; 17.7694
90; 102.742; 90
1360.48Zwolenik, A.; Makal, A.
Tracking anharmonic oscillations in the structure of β-1,3-diacetylpyrene.
IUCrJ, 2025, 12
1573203 CIFC20 H14 O2P 1 21/c 17.1945; 10.9948; 17.7698
90; 102.926; 90
1370.01Zwolenik, A.; Makal, A.
Tracking anharmonic oscillations in the structure of β-1,3-diacetylpyrene.
IUCrJ, 2025, 12
1573204 CIFC20 H14 O2P 1 21/c 17.2211; 11.0779; 17.7769
90; 103.161; 90
1384.7Zwolenik, A.; Makal, A.
Tracking anharmonic oscillations in the structure of β-1,3-diacetylpyrene.
IUCrJ, 2025, 12
1573205 CIFC20 H14 O2P 1 21/c 17.2277; 11.248; 17.7562
90; 103.578; 90
1403.2Zwolenik, A.; Makal, A.
Tracking anharmonic oscillations in the structure of β-1,3-diacetylpyrene.
IUCrJ, 2025, 12
1573206 CIFC20 H14 O2P 1 21/c 17.2522; 11.4389; 17.705
90; 104.385; 90
1422.71Zwolenik, A.; Makal, A.
Tracking anharmonic oscillations in the structure of β-1,3-diacetylpyrene.
IUCrJ, 2025, 12
1573216 CIFC17 H24 Cu2 I3 N5 OP 1 21/c 110.8995; 16.7093; 13.8142
90; 108.662; 90
2383.61Chen, Jingwen; Zhou, Kang; Li, Jingbai; Xu, Guozhong; Hei, Xiuze; Li, Jing
Strongly photoluminescent and radioluminescent copper(i) iodide hybrid materials made of coordinated ionic chains.
Chemical science, 2025, 16, 1106-1114
1573217 CIFC18 H26 Cu2 I3 N5 OP 1 21/c 111.453; 17.025; 12.8883
90; 94.855; 90
2504Chen, Jingwen; Zhou, Kang; Li, Jingbai; Xu, Guozhong; Hei, Xiuze; Li, Jing
Strongly photoluminescent and radioluminescent copper(i) iodide hybrid materials made of coordinated ionic chains.
Chemical science, 2025, 16, 1106-1114
1573218 CIFC34 H47 Cu4 I6 N9 O2P -110.1107; 11.2297; 11.9172
73.93; 67.168; 71.862
1166.1Chen, Jingwen; Zhou, Kang; Li, Jingbai; Xu, Guozhong; Hei, Xiuze; Li, Jing
Strongly photoluminescent and radioluminescent copper(i) iodide hybrid materials made of coordinated ionic chains.
Chemical science, 2025, 16, 1106-1114
1573219 CIFC15 H19 Cu2 I3 N4 O2P 1 21/n 111.4886; 13.4361; 15.0603
90; 98.972; 90
2296.3Chen, Jingwen; Zhou, Kang; Li, Jingbai; Xu, Guozhong; Hei, Xiuze; Li, Jing
Strongly photoluminescent and radioluminescent copper(i) iodide hybrid materials made of coordinated ionic chains.
Chemical science, 2025, 16, 1106-1114
1573220 CIFC26 H58 B F4 N P2 PtP 1 21/n 18.585; 12.11; 29.773
90; 90.461; 90
3095.2Atterberry, Benjamin A.; Wimmer, Erik J.; Klostermann, Sina; Frey, Wolfgang; Kästner, Johannes; Estes, Deven P.; Rossini, Aaron J.
Structural characterization of surface immobilized platinum hydrides by sensitivity-enhanced <sup>195</sup>Pt solid state NMR spectroscopy and DFT calculations.
Chemical science, 2025, 16, 1271-1287
1573221 CIFC24 H57 B F4 O P2 PtP 1 21/c 111.5231; 16.5896; 16.5713
90; 106.8; 90
3032.63Atterberry, Benjamin A.; Wimmer, Erik J.; Klostermann, Sina; Frey, Wolfgang; Kästner, Johannes; Estes, Deven P.; Rossini, Aaron J.
Structural characterization of surface immobilized platinum hydrides by sensitivity-enhanced <sup>195</sup>Pt solid state NMR spectroscopy and DFT calculations.
Chemical science, 2025, 16, 1271-1287
1573222 CIFC26 H59 B Cl4 F4 P2 PtC 1 c 111.1587; 19.7667; 16.9439
90; 96.666; 90
3712.06Atterberry, Benjamin A.; Wimmer, Erik J.; Klostermann, Sina; Frey, Wolfgang; Kästner, Johannes; Estes, Deven P.; Rossini, Aaron J.
Structural characterization of surface immobilized platinum hydrides by sensitivity-enhanced <sup>195</sup>Pt solid state NMR spectroscopy and DFT calculations.
Chemical science, 2025, 16, 1271-1287
1573223 CIFC70 H92 Cl2 N6 O26 Zr6P n m a14.0277; 31.9593; 20.8847
90; 90; 90
9362.9Morey, Merissa N.; Montone, Christine M.; Dworzak, Michael R.; Yap, Glenn P. A.; Bloch, Eric D.
Tunable synthesis of heteroleptic zirconium-based porous coordination cages.
Chemical science, 2025, 16, 816-823
1573224 CIFC9 H5 As S2P 1 21/n 110.5045; 6.2032; 13.9819
90; 102.093; 90
890.86Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573225 CIFC17 H9 As S2C 1 2/c 113.4892; 8.5408; 23.219
90; 97.422; 90
2652.6Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573226 CIFC17 H9 As S2P 1 21/c 113.1348; 8.5422; 12.1986
90; 93.983; 90
1365.38Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573227 CIFC17 H9 P S2C 1 2/c 113.2423; 8.4253; 23.582
90; 97.092; 90
2610.9Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573228 CIFC34 H20 O3 P2 S4P -17.4187; 13.2453; 17.9755
77.315; 81.898; 76.885
1670.53Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573229 CIFC34 H16 As2 S4P -18.0954; 11.366; 15.4655
87.822; 85.309; 80.114
1396.77Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573230 CIFC17 H9 As S2P 1 21/c 114.5703; 3.9421; 23.8017
90; 99.317; 90
1349.08Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573231 CIFC15 H11 As O4 S2P 1 21/c 110.403; 14.0494; 10.7101
90; 99.246; 90
1545.01Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573232 CIFC9 H5 As S2P 1 n 16.1248; 11.3296; 12.9122
90; 95.535; 90
891.82Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573233 CIFC14 H5 As O5 S2 WP -17.312; 10.1653; 11.2954
92.355; 106.909; 100.48
785.92Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573234 CIFC23 H13 As S2I 1 2/a 116.1897; 7.1373; 31.4478
90; 90.732; 90
3633.5Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573235 CIFC23 H15 As O4 S2P n a 2117.8326; 7.736; 30.234
90; 90; 90
4170.9Sumida, Akifumi; Saeki, Akinori; Matsuo, Kyohei; Naka, Kensuke; Imoto, Hiroaki
Dithienoarsinines: stable and planar π-extended arsabenzenes.
Chemical science, 2025, 16, 1126-1135
1573239 CIFC40 H54 Ag6 F9 N5 O7 S3P b c a21.868; 22.557; 22.892
90; 90; 90
11292Nakatani, Riki; Sakai, Jin; Saha, Aishik; Kondo, Ayumu; Tomioka, Rina; Kawawaki, Tokuhisa; Das, Saikat; Negishi, Yuichi
Designed construction of two new atom-precise three-dimensional and two-dimensional Ag<sub>12</sub> cluster-assembled materials.
Nanoscale, 2025, 17, 813-822
1573240 CIFC18 H23 Ag2 F3 N O3.5 SR -3 :H24.5604; 24.5604; 21.6065
90; 90; 120
11287.2Nakatani, Riki; Sakai, Jin; Saha, Aishik; Kondo, Ayumu; Tomioka, Rina; Kawawaki, Tokuhisa; Das, Saikat; Negishi, Yuichi
Designed construction of two new atom-precise three-dimensional and two-dimensional Ag<sub>12</sub> cluster-assembled materials.
Nanoscale, 2025, 17, 813-822
1573241 CIFC72 H86 O9 P4 Ru2C 1 2/c 113.34263; 22.71892; 22.67074
90; 98.27; 90
6800.72Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573242 CIFC59 H69 O6 P2 RuP -113.32259; 13.34539; 17.15744
103.497; 94.3216; 118.437
2545.56Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573243 CIFC42 H34 O6 P2 RuP -4 21 c14.82724; 14.82724; 16.45463
90; 90; 90
3617.5Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573244 CIFC34 H38 P2 RuI 1 2/a 120.4141; 13.33648; 22.581
90; 104.798; 90
5943.81Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573245 CIFC41 H52 O6 P2 RuP 1 21/n 111.0204; 20.042; 18.3864
90; 97.977; 90
4021.72Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573246 CIFC61 H52 Cl2 F12 O9 P4 Ru2P 1 21/c 119.9752; 19.5957; 16.0602
90; 96.739; 90
6243Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573247 CIFC41 H36 O6 P2 RuP b c a17.3865; 18.59091; 22.10176
90; 90; 90
7143.97Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573248 CIFC338 H309 O41 P16 Ru8P -114.1251; 23.585; 23.8891
88.9659; 76.443; 76.138
7505.2Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573249 CIFC99 H114 O10 P4 Ru2P 1 21/n 113.8453; 24.5721; 29.3748
90; 101.926; 90
9777.8Saib, Asad; Goy, Roman; Medlock, Jonathan; Wüstenberg, Bettina; Kociok-Köhn, Gabriele; Lyall, Catherine L.; Lowe, John P.; Hintermair, Ulrich
Catalyst speciation and deactivation in the ruthenium-mediated transformation of ethynyl-β-ionol to α,β-unsaturated esters for vitamin A synthesis
Catalysis Science & Technology, 2025, 15, 355-375
1573253 CIFC27 H40 B2 Cu F8 N10 O2P 1 21/n 112.4491; 13.8403; 19.8972
90; 97.153; 90
3401.59Nowicka, Daria; Garbaczewski, Karol; Łuczak, Teresa; Forte, Giuseppe; Consiglio, Giuseppe; Kubicki, Maciej; Patroniak, Violetta; Gorczyński, Adam
Application of a simple copper(II) complex compound as an epinephrine selective voltammetric sensor in the presence of uric acid under aqueous conditions.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 1000-1012
1573257 CIFC32 H60 N Ni S8P 1 21/c 114.6673; 17.9434; 16.4154
90; 115.109; 90
3912Abhervé, Alexandre; Mroweh, Nabil; Cui, HengBo; Kato, Reizo; Vanthuyne, Nicolas; Alemany, Pere; Canadell, Enric; Avarvari, Narcis
Enantiomorphic single component conducting nickel(II) and platinum(II) bis(diethyl-dddt) crystalline complexes.
Nanoscale, 2025, 17, 1350-1361
1573258 CIFC16 H24 Ni S8P 41 21 214.6382; 14.6382; 20.8242
90; 90; 90
4462.15Abhervé, Alexandre; Mroweh, Nabil; Cui, HengBo; Kato, Reizo; Vanthuyne, Nicolas; Alemany, Pere; Canadell, Enric; Avarvari, Narcis
Enantiomorphic single component conducting nickel(II) and platinum(II) bis(diethyl-dddt) crystalline complexes.
Nanoscale, 2025, 17, 1350-1361
1573259 CIFC16 H24 Ni S8P 41 21 214.2738; 14.2738; 21.703
90; 90; 90
4421.8Abhervé, Alexandre; Mroweh, Nabil; Cui, HengBo; Kato, Reizo; Vanthuyne, Nicolas; Alemany, Pere; Canadell, Enric; Avarvari, Narcis
Enantiomorphic single component conducting nickel(II) and platinum(II) bis(diethyl-dddt) crystalline complexes.
Nanoscale, 2025, 17, 1350-1361
1573260 CIFC16 H24 Pt S8P 41 21 214.313; 14.313; 21.769
90; 90; 90
4459.6Abhervé, Alexandre; Mroweh, Nabil; Cui, HengBo; Kato, Reizo; Vanthuyne, Nicolas; Alemany, Pere; Canadell, Enric; Avarvari, Narcis
Enantiomorphic single component conducting nickel(II) and platinum(II) bis(diethyl-dddt) crystalline complexes.
Nanoscale, 2025, 17, 1350-1361
1573261 CIFC16 H24 Pt S8P 43 21 214.7208; 14.7208; 20.8598
90; 90; 90
4520.36Abhervé, Alexandre; Mroweh, Nabil; Cui, HengBo; Kato, Reizo; Vanthuyne, Nicolas; Alemany, Pere; Canadell, Enric; Avarvari, Narcis
Enantiomorphic single component conducting nickel(II) and platinum(II) bis(diethyl-dddt) crystalline complexes.
Nanoscale, 2025, 17, 1350-1361
1573269 CIFC166 H123C 1 2/c 143.6143; 10.572; 25.1335
90; 98.309; 90
11467.2Sanderson, Hugh J.; Helbig, Andreas; Kociok-Köhn, Gabriele; Helten, Holger; Hintermair, Ulrich
Reversible formation of tetraphenylpentalene, a room temperature stable antiaromatic hydrocarbon.
Chemical science, 2025, 16, 952-961
1573283 CIFC35 H21 N3 OP 1 21/n 115.5452; 4.78961; 32.495
90; 103.488; 90
2352.7Singh, Hemant K.; Bodzioch, Agnieszka; Pietrzak, Anna; Kaszyński, Piotr
π-Curved Blatter radicals: Blatter helicenes.
Chemical communications (Cambridge, England), 2025, 61, 496-499
1573284 CIFC27 H16 N3 OR -3 :H43.189; 43.189; 5.1711
90; 90; 120
8353.3Singh, Hemant K.; Bodzioch, Agnieszka; Pietrzak, Anna; Kaszyński, Piotr
π-Curved Blatter radicals: Blatter helicenes.
Chemical communications (Cambridge, England), 2025, 61, 496-499
1573285 CIFC35 H20 N3 OP 1 21/c 121.3059; 11.4684; 9.6844
90; 94.685; 90
2358.42Singh, Hemant K.; Bodzioch, Agnieszka; Pietrzak, Anna; Kaszyński, Piotr
π-Curved Blatter radicals: Blatter helicenes.
Chemical communications (Cambridge, England), 2025, 61, 496-499
1573300 CIFC30 H25 N O3P 19.9067; 11.5214; 11.6032
93.702; 109.012; 103.102
1205.68He, Yicheng; Yan, Biwei; Ma, Cheng; Ni, Shaofei; Guo, Wusheng
Ni-catalyzed asymmetric decarboxylation for the construction of carbocycles with contiguous quaternary carbon stereocenters.
Chemical science, 2025, 16, 834-839
1573301 CIFC30 H27 N O3P 21 21 217.51317; 15.2775; 21.463
90; 90; 90
2463.58He, Yicheng; Yan, Biwei; Ma, Cheng; Ni, Shaofei; Guo, Wusheng
Ni-catalyzed asymmetric decarboxylation for the construction of carbocycles with contiguous quaternary carbon stereocenters.
Chemical science, 2025, 16, 834-839
1573302 CIFC28 H21 N O2P 21 21 216.22984; 15.4298; 22.0803
90; 90; 90
2122.47He, Yicheng; Yan, Biwei; Ma, Cheng; Ni, Shaofei; Guo, Wusheng
Ni-catalyzed asymmetric decarboxylation for the construction of carbocycles with contiguous quaternary carbon stereocenters.
Chemical science, 2025, 16, 834-839
1573303 CIFC22 H24 Cu F12 N10 O8 S4P -110.3863; 13.163; 14.3802
90.6959; 101.511; 104.786
1858.52Nishiguchi, Taichi; Ohara, Yuki; Kadota, Kentaro; Zheng, Xin; Noro, Shin-Ichiro; Horike, Satoshi
Mechanically induced polyamorphism in a one-dimensional coordination polymer.
Chemical science, 2025, 16, 621-626
1573304 CIFC36 H39 Au3 N6P -15.92744; 13.7395; 20.7053
79.4971; 83.0769; 85.9397
1643.84Solea, Atena B.; Dermutas, Davide; Fadaei-Tirani, Farzaneh; Leanza, Luigi; Delle Piane, Massimo; Pavan, Giovanni M.; Severin, Kay
Nano onions based on an amphiphilic Au<sub>3</sub>(pyrazolate)<sub>3</sub> complex.
Nanoscale, 2025, 17, 1007-1012
1573306 CIFC36 H31 N2 O0.5P 21 21 221.6586; 12.8689; 9.8744
90; 90; 90
2752.22Wei, Xuyang; Li, Dong; Liu, Xitong; Zhang, Weifeng; Li, Hao; Yang, Shuai; Luo, Hao; Yu, Gui
Magnetoresistance effect of pyridine-capped <i>s</i>-indacene-based conjugated radicals.
Materials horizons, 2025, 12, 1524-1531
1573307 CIFC36 H30 N2P b c a15.9161; 17.8282; 18.1544
90; 90; 90
5151.4Wei, Xuyang; Li, Dong; Liu, Xitong; Zhang, Weifeng; Li, Hao; Yang, Shuai; Luo, Hao; Yu, Gui
Magnetoresistance effect of pyridine-capped <i>s</i>-indacene-based conjugated radicals.
Materials horizons, 2025, 12, 1524-1531
1573308 CIFC39 H55 Cl N2 O2 P2 RuP 1 21/c 110.6687; 15.5241; 22.9366
90; 92.854; 90
3794.1Donnelly, Laurie J.; Gelfand, Benjamin S.; Piers, Warren E.
Rapid and selective formic acid dehydrogenation catalysis by molecular ruthenium hydrides supported by rigid PCcarbeneP pincer ligands
Catalysis Science & Technology, 2025, 15, 100-106
1573309 CIFC14 H15 N3P -18.7161; 9.2511; 9.8844
63.309; 64.432; 72.772
637.16Mandal, Mrinal; Mardanya, Sukumar; Saha, Arijit; Singh, Manjeev; Ghosh, Swarnali; Chatterjee, Tanmay; Patra, Ramen; Bhunia, Surojit; Mandal, Saptarshi; Mukherjee, Soumen; Debnath, Rahul; Reddy, C. Malla; Das, Mousumi; Mandal, Prasun K.
Charge-transfer mediated J-aggregation in red emitting ultra-small-single-benzenic <i>meta</i>-fluorophore crystals.
Chemical science, 2025, 16, 901-909
1573310 CIFC12 H11 N3P 1 21/c 115.292; 10.45; 6.872
90; 97.614; 90
1088.5Mandal, Mrinal; Mardanya, Sukumar; Saha, Arijit; Singh, Manjeev; Ghosh, Swarnali; Chatterjee, Tanmay; Patra, Ramen; Bhunia, Surojit; Mandal, Saptarshi; Mukherjee, Soumen; Debnath, Rahul; Reddy, C. Malla; Das, Mousumi; Mandal, Prasun K.
Charge-transfer mediated J-aggregation in red emitting ultra-small-single-benzenic <i>meta</i>-fluorophore crystals.
Chemical science, 2025, 16, 901-909
1573311 CIFC29 H20 Cl NP 1 21/n 113.644; 9.9782; 15.7628
90; 91.274; 90
2145.5Chaturvedi, Anjali; Sharma, Vishal; Rawal, Ravindra K.; Singh, Manpreet; Singh, Virender
Sustainable protocol for Cu-catalysed A<sup>3</sup>-coupling under solvent-free conditions.
Organic & biomolecular chemistry, 2025, 23, 854-863
1573312 CIFC26 H32 O15P -17.3123; 8.6811; 22.3521
80.512; 83.401; 69.983
1312.31Mo, Shuyuan; Huang, Zhihong; Zeng, Hanxiao; Wang, Jianping; Zhang, Yonghui; Hu, Zhengxi
Penicichrysol A: an unprecedented polyketide produced by <i>Penicillium chrysogenum</i>.
Organic & biomolecular chemistry, 2025, 23, 608-613
1573313 CIFC18 H18 O8P 1 21/n 110.8884; 13.4388; 11.5204
90; 99.491; 90
1662.67Mo, Shuyuan; Huang, Zhihong; Zeng, Hanxiao; Wang, Jianping; Zhang, Yonghui; Hu, Zhengxi
Penicichrysol A: an unprecedented polyketide produced by <i>Penicillium chrysogenum</i>.
Organic & biomolecular chemistry, 2025, 23, 608-613
1573348 CIFO10 Si2 Zn4P n n 28.1695; 10.658; 5.0531
90; 90; 90
439.98Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573349 CIFH4 O10 Si2 Zn4I m m 28.35707; 10.714; 5.11006
90; 90; 90
457.54Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573350 CIFO10 Si2 Zn4P n n 28.1572; 10.64; 5.0499
90; 90; 90
438.29Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573351 CIFO10 Si2 Zn4P n n 28.0991; 10.54; 5.0319
90; 90; 90
429.5Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573352 CIFO10 Si2 Zn4P n n 28.1701; 10.6651; 5.0554
90; 90; 90
440.5Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573353 CIFO10 Si2 Zn4I m m 28.2334; 10.717; 5.0641
90; 90; 90
446.8Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573354 CIFO10 Si2 Zn4P n n 28.1412; 10.6227; 5.0448
90; 90; 90
436.28Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573355 CIFO10 Si2 Zn4P n n 28.1559; 10.636; 5.0475
90; 90; 90
437.85Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573356 CIFO10 Si2 Zn4P n n 28.1865; 10.67; 5.0479
90; 90; 90
440.9Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573357 CIFO10 Si2 Zn4I m m 28.2501; 10.694; 5.06794
90; 90; 90
447.13Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573358 CIFH4 O10 Si2 Zn4I m m 28.2846; 10.697; 5.0823
90; 90; 90
450.4Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573359 CIFH0 O10 Si2 Zn4P n n 28.0977; 10.5415; 5.0266
90; 90; 90
429.08Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573360 CIFH4 O10 Si2 Zn4P n n 28.2199; 10.6921; 5.0603
90; 90; 90
444.74Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573361 CIFH4 O10 Si2 Zn4P n n 28.1356; 10.6329; 5.0386
90; 90; 90
435.86Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573362 CIFH4 O10 Si2 Zn4P n n 28.0899; 10.5425; 5.0237
90; 90; 90
428.46Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573363 CIFH4 O10 Si2 Zn4I m m 28.31709; 10.706; 5.09489
90; 90; 90
453.66Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573364 CIFH4 O10 Si2 Zn4I m m 28.2502; 10.685; 5.0695
90; 90; 90
446.89Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573365 CIFH4 O10 Si2 Zn4P n n 28.2161; 10.673; 5.0579
90; 90; 90
443.53Gajda, Roman; Sławiński, Wojciech; Poręba, Tomasz; Parafiniuk, Jan; Mezouar, Mohamed; Dera, Przemysław; Woźniak, Krzysztof
Incommensurately modulated structure of Zn<sub>4</sub>Si<sub>2</sub>O<sub>7</sub>(OH)<sub>2</sub>·H<sub>2</sub>O at high pressure.
IUCrJ, 2025, 12
1573368 CIFC59 H82 Ga2 N4 O P2P 1 21/c 123.5423; 13.8181; 17.4303
90; 96.371; 90
5635.2Sharma, Mahendra K.; Wölper, Christoph; Siera, Hannah; Haberhauer, Gebhard; Schulz, Stephan
Synthesis and reactivity of a six-membered heterocyclic 1,3-diphosphaallene.
Chemical science, 2025, 16, 1189-1196
1573369 CIFC72 H108 Ga2 N6 O P2C 1 2/c 126.3977; 13.4903; 40.1349
90; 91.7723; 90
14285.7Sharma, Mahendra K.; Wölper, Christoph; Siera, Hannah; Haberhauer, Gebhard; Schulz, Stephan
Synthesis and reactivity of a six-membered heterocyclic 1,3-diphosphaallene.
Chemical science, 2025, 16, 1189-1196
1573370 CIFC69 H106 Ga2 N4 O P2 SiP 1 21/c 115.1894; 13.1269; 34.6139
90; 96.719; 90
6854.3Sharma, Mahendra K.; Wölper, Christoph; Siera, Hannah; Haberhauer, Gebhard; Schulz, Stephan
Synthesis and reactivity of a six-membered heterocyclic 1,3-diphosphaallene.
Chemical science, 2025, 16, 1189-1196
1573371 CIFC79 H111 Ga2 N6 O P2C 1 2/c 120.731; 18.24; 39.5206
90; 95.9543; 90
14863.4Sharma, Mahendra K.; Wölper, Christoph; Siera, Hannah; Haberhauer, Gebhard; Schulz, Stephan
Synthesis and reactivity of a six-membered heterocyclic 1,3-diphosphaallene.
Chemical science, 2025, 16, 1189-1196
1573374 CIFC15 H23 B O4P -19.1472; 9.2824; 9.3217
97.608; 94.602; 101.377
764.48Vyas, Het; Gangani, Ashvin J.; Mini, Aiswarya; Pathil, Melissa; Ruth, Austin; Sharma, Abhishek
Strain-release enables access to carbonyl conjugated allylic diborons and alkenyl boronates having multiple contiguous stereocenters in a one-pot process.
Chemical science, 2025, 16, 1205-1215
1573375 CIFC22 H28 B N O7P 1 21/c 117.4121; 10.4286; 13.1111
90; 109.67; 90
2241.84Vyas, Het; Gangani, Ashvin J.; Mini, Aiswarya; Pathil, Melissa; Ruth, Austin; Sharma, Abhishek
Strain-release enables access to carbonyl conjugated allylic diborons and alkenyl boronates having multiple contiguous stereocenters in a one-pot process.
Chemical science, 2025, 16, 1205-1215
1573376 CIFC9 H7 F6 N5P n a 2110.0705; 18.6804; 5.758
90; 90; 90
1083.2Michelini, Lorenzo; Slaney, Tanya; Virk, Seerat; Rafic, Estefanía; Qie, L. Charlie; Corejova, Klara; Lepage, Mathieu L.; Musolino, Stefania F.; Oliver, Allen G.; Etchenique, Roberto; Hong, W. David; DiLabio, Gino A.; Wulff, Jeremy E.
A diazirine's central carbon is sp<sup>2</sup>-hybridized, facilitating conjugation to dye molecules.
Chemical science, 2025, 16, 970-979
1573377 CIFC24 H56 Cd Cl4 N2C 1 2/c 132.768; 13.9365; 15.0048
90; 109.374; 90
6464.2Xu, Ou; Peng, Hui; Wei, Qilin; Kong, Linghang; Wang, Xiao; Zhang, Heng; Zhao, Jialong; Zou, Bingsuo
Large-scale preparation of Sb<sup>3+</sup>-activated hybrid metal halides with efficient tunable emission from visible to near-infrared regions for advanced photonic applications.
Materials horizons, 2025, 12, 1596-1608
1573378 CIFC24 H56 Br4 Cd N2C 1 2/c 133.373; 14.437; 14.999
90; 111.357; 90
6730Xu, Ou; Peng, Hui; Wei, Qilin; Kong, Linghang; Wang, Xiao; Zhang, Heng; Zhao, Jialong; Zou, Bingsuo
Large-scale preparation of Sb<sup>3+</sup>-activated hybrid metal halides with efficient tunable emission from visible to near-infrared regions for advanced photonic applications.
Materials horizons, 2025, 12, 1596-1608
1573381 CIFC22 H29 Al N O4P -17.0781; 11.3798; 12.8321
79.573; 86.427; 88.799
1014.5Ganta, Prasanna Kumar; Huang, Fei; Halima, Taoufik Ben; Kamaraj, Rajiv; Chu, Yu-Ting; Tseng, Hsi-Ching; Ding, Shangwu; Wu, Kuo-Hui; Chen, Hsuan-Ying
Evolution of aluminum aminophenolate complexes in the ring-opening polymerization of ε-caprolactone: electronic and amino-chelating effects.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 511-532
1573382 CIFC23 H31 Al Br2 N2 O3P 1 21/c 117.3914; 10.0911; 14.2716
90; 104.702; 90
2422.64Ganta, Prasanna Kumar; Huang, Fei; Halima, Taoufik Ben; Kamaraj, Rajiv; Chu, Yu-Ting; Tseng, Hsi-Ching; Ding, Shangwu; Wu, Kuo-Hui; Chen, Hsuan-Ying
Evolution of aluminum aminophenolate complexes in the ring-opening polymerization of ε-caprolactone: electronic and amino-chelating effects.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 511-532
1573383 CIFC18 H30 Al N O2P n a 2119.0286; 8.4573; 11.545
90; 90; 90
1857.94Ganta, Prasanna Kumar; Huang, Fei; Halima, Taoufik Ben; Kamaraj, Rajiv; Chu, Yu-Ting; Tseng, Hsi-Ching; Ding, Shangwu; Wu, Kuo-Hui; Chen, Hsuan-Ying
Evolution of aluminum aminophenolate complexes in the ring-opening polymerization of ε-caprolactone: electronic and amino-chelating effects.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 511-532
1573384 CIFC40 H56 Al Cl O3P b c a10.6759; 17.5313; 40.2687
90; 90; 90
7536.8Ganta, Prasanna Kumar; Huang, Fei; Halima, Taoufik Ben; Kamaraj, Rajiv; Chu, Yu-Ting; Tseng, Hsi-Ching; Ding, Shangwu; Wu, Kuo-Hui; Chen, Hsuan-Ying
Evolution of aluminum aminophenolate complexes in the ring-opening polymerization of ε-caprolactone: electronic and amino-chelating effects.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 511-532
1573385 CIFC39 H56 Al N O7P b c a14.5245; 19.871; 25.5065
90; 90; 90
7361.6Ganta, Prasanna Kumar; Huang, Fei; Halima, Taoufik Ben; Kamaraj, Rajiv; Chu, Yu-Ting; Tseng, Hsi-Ching; Ding, Shangwu; Wu, Kuo-Hui; Chen, Hsuan-Ying
Evolution of aluminum aminophenolate complexes in the ring-opening polymerization of ε-caprolactone: electronic and amino-chelating effects.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 511-532
1573388 CIFC74 H172 Ag16 Cl4 O24 P12 Pd S26P 1 21/n 118.2605; 21.6169; 18.9717
90; 96.372; 90
7442.5Ni, Yu-Rong; Pillay, Michael N.; Chiu, Tzu-Hao; Liang, Hao; Kahlal, Samia; Chen, Jie-Ying; Chen, Yuan-Jang; Saillard, Jean-Yves; Liu, C. W.
Sulfide-mediated growth of NIR luminescent Pd/Ag atomically precise nanoclusters.
Nanoscale, 2025, 17, 1990-1996
1573389 CIFC96 H216 Ag16 O24 P12 Pd S26P c c n26.454; 27.073; 23.35
90; 90; 90
16723Ni, Yu-Rong; Pillay, Michael N.; Chiu, Tzu-Hao; Liang, Hao; Kahlal, Samia; Chen, Jie-Ying; Chen, Yuan-Jang; Saillard, Jean-Yves; Liu, C. W.
Sulfide-mediated growth of NIR luminescent Pd/Ag atomically precise nanoclusters.
Nanoscale, 2025, 17, 1990-1996
1573390 CIFC96 H216 Ag14 O24 P12 Pd6 S25P -115.605; 18.06; 18.102
119.776; 93.951; 103.556
4200Ni, Yu-Rong; Pillay, Michael N.; Chiu, Tzu-Hao; Liang, Hao; Kahlal, Samia; Chen, Jie-Ying; Chen, Yuan-Jang; Saillard, Jean-Yves; Liu, C. W.
Sulfide-mediated growth of NIR luminescent Pd/Ag atomically precise nanoclusters.
Nanoscale, 2025, 17, 1990-1996
1573391 CIFC87 H81 B Cu F4 N4 O2.5 P2C 1 2/c 119.927; 21.694; 34.974
90; 104.466; 90
14640Wang, Xinwei; Li, Weijun; Li, Xiao; Hou, Chenlu; Wei, Sanyue; Lei, Wenxin; Chen, Xu-Lin
TADF-emitting copper(i) and silver(i) complexes featuring intra-ligand charge transfer based on a donor–acceptor–donor ligand
New Journal of Chemistry, 2025, 49, 755-760
1573392 CIFC85 H76 Ag B F4 N4 O2 P2P -119.2498; 25.6897; 31.4864
77.9013; 78.6755; 89.8003
14916.9Wang, Xinwei; Li, Weijun; Li, Xiao; Hou, Chenlu; Wei, Sanyue; Lei, Wenxin; Chen, Xu-Lin
TADF-emitting copper(i) and silver(i) complexes featuring intra-ligand charge transfer based on a donor–acceptor–donor ligand
New Journal of Chemistry, 2025, 49, 755-760
1573393 CIFC9 H7 N7 O5P 1 21/c 110.556; 5.7279; 21.606
90; 97.049; 90
1296.5Cai, Ziwu; Shi, Junhao; Yu, Qian; Jiang, Tianyu; Zhang, Wenquan
4-Amino-1,2,3-triazine 2-oxide: a promising structural unit for the design and synthesis of novel energetic materials with good thermal stability and low impact sensitivity
New Journal of Chemistry, 2025, 49, 302-310
1573394 CIFC7 H5 N7 O5P 21 21 215.8169; 10.8115; 15.0344
90; 90; 90
945.5Cai, Ziwu; Shi, Junhao; Yu, Qian; Jiang, Tianyu; Zhang, Wenquan
4-Amino-1,2,3-triazine 2-oxide: a promising structural unit for the design and synthesis of novel energetic materials with good thermal stability and low impact sensitivity
New Journal of Chemistry, 2025, 49, 302-310
1573395 CIFC14 H13 N OP b c a9.1158; 9.8374; 25.365
90; 90; 90
2274.6Qin, Chang-Qing; Liu, Xin-Ni; Gu, Man-Zhen; Xu, Yi-Bing; Chen, Guo-Shu; Liu, Yun-Lin
DBU-mediated synthesis of amides from carbodiimides and unstrained 1,3-diketones
New Journal of Chemistry, 2025, 49, 366-370
1573396 CIFC14 H13 N3 O2P b c a9.9581; 9.1704; 27.6575
90; 90; 90
2525.68Maessen, Stefan J. D.; Lekanne Deprez, Siebe; Vermeeren, Pascal; van den Bersselaar, Bart W. L.; Lutz, Martin; Heuts, Johan P. A.; Fonseca Guerra, Célia; Palmans, Anja R. A.
Structure-property relationships to direct the dynamic properties of acylsemicarbazide-based materials.
Polymer chemistry, 2025, 16, 290-300
1573397 CIFC15 H13 N3 O3P 1 21/c 19.7633; 27.5437; 10.4855
90; 98.644; 90
2787.7Maessen, Stefan J. D.; Lekanne Deprez, Siebe; Vermeeren, Pascal; van den Bersselaar, Bart W. L.; Lutz, Martin; Heuts, Johan P. A.; Fonseca Guerra, Célia; Palmans, Anja R. A.
Structure-property relationships to direct the dynamic properties of acylsemicarbazide-based materials.
Polymer chemistry, 2025, 16, 290-300
1573398 CIFC34 H28 N2 O6P b c a10.6143; 13.2575; 19.9774
90; 90; 90
2811.2Zhou, Huan; Zhang, Yuxuan; Zheng, Zhiye; Wan, Junhua; Zhang, Hui; Lin, Kunhua; Sessler, Jonathan L.; Wang, Hongyu
Internally diketopyrrolopyrrole-bridged bis-anthracene macrocycle: a multifunctional fluorescent platform.
Chemical science, 2025, 16, 910-919
1573399 CIFC80 H66 N16 O8P -111.1096; 11.2145; 15.2337
68.402; 79.501; 69.937
1654.2Zhou, Huan; Zhang, Yuxuan; Zheng, Zhiye; Wan, Junhua; Zhang, Hui; Lin, Kunhua; Sessler, Jonathan L.; Wang, Hongyu
Internally diketopyrrolopyrrole-bridged bis-anthracene macrocycle: a multifunctional fluorescent platform.
Chemical science, 2025, 16, 910-919
1573400 CIFC100 H92 Cl3 N16 O18P -114.3247; 17.1233; 23.0646
96.822; 98.846; 108.196
5226.07Wang, Shuhe; Sigl, Johannes; Allmendinger, Lars; Maurizot, Victor; Huc, Ivan
Design of an abiotic unimolecular three-helix bundle.
Chemical science, 2025, 16, 1136-1146
1573401 CIFC104.52 H93.44 Cl2 N19 O17.94P -113.1606; 17.3713; 24.34
95.661; 93.989; 105.354
5313.14Wang, Shuhe; Sigl, Johannes; Allmendinger, Lars; Maurizot, Victor; Huc, Ivan
Design of an abiotic unimolecular three-helix bundle.
Chemical science, 2025, 16, 1136-1146
1573402 CIFC17 H16 F N O2P 1 21 16.4767; 15.7755; 7.425
90; 100.19; 90
746.67Tian, Kui; Jin, Zhuan; Liu, Xin-Lian; He, Ling; Liu, Hong-Fu; Yu, Pin-Ke; Chang, Xin; Dong, Xiu-Qin; Wang, Chun-Jiang
Stereodivergent assembly of δ-valerolactones with an azaarene-containing quaternary stereocenter enabled by Cu/Ru relay catalysis.
Chemical science, 2025, 16, 1233-1240
1573403 CIFC16 H19 N3P 1 21 17.8385; 5.253; 16.8163
90; 103.167; 90
674.22Pilopp, Yannic; Beer, Henrik; Bresien, Jonas; Michalik, Dirk; Villinger, Alexander; Schulz, Axel
Designing a visible light-mediated double photoswitch: a combination of biradical and azobenzene structural motifs that can be switched independently.
Chemical science, 2025, 16, 876-888
1573404 CIFC65 H67 N5 P2P 1 21/c 110.8196; 21.236; 24.229
90; 102.703; 90
5430.7Pilopp, Yannic; Beer, Henrik; Bresien, Jonas; Michalik, Dirk; Villinger, Alexander; Schulz, Axel
Designing a visible light-mediated double photoswitch: a combination of biradical and azobenzene structural motifs that can be switched independently.
Chemical science, 2025, 16, 876-888
1573405 CIFC17 H17 N3P 1 21/c 17.2792; 9.3758; 20.838
90; 99.559; 90
1402.4Pilopp, Yannic; Beer, Henrik; Bresien, Jonas; Michalik, Dirk; Villinger, Alexander; Schulz, Axel
Designing a visible light-mediated double photoswitch: a combination of biradical and azobenzene structural motifs that can be switched independently.
Chemical science, 2025, 16, 876-888
1573406 CIFC65 H66 F N5 P2P 1 21/n 110.8647; 21.2993; 24.1947
90; 102.911; 90
5457.4Pilopp, Yannic; Beer, Henrik; Bresien, Jonas; Michalik, Dirk; Villinger, Alexander; Schulz, Axel
Designing a visible light-mediated double photoswitch: a combination of biradical and azobenzene structural motifs that can be switched independently.
Chemical science, 2025, 16, 876-888
1573407 CIFC17 H19 N3 OP 21 21 214.6237; 9.0404; 35.034
90; 90; 90
1464.4Pilopp, Yannic; Beer, Henrik; Bresien, Jonas; Michalik, Dirk; Villinger, Alexander; Schulz, Axel
Designing a visible light-mediated double photoswitch: a combination of biradical and azobenzene structural motifs that can be switched independently.
Chemical science, 2025, 16, 876-888
1573408 CIFC206 H123 Al8 F233 O24 Y2P 1 21/n 118.06498; 19.02813; 39.8336
90; 94.9425; 90
13641.6Corner, Sophie C.; Blackmore, William J. A.; Gransbury, Gemma K.; Mattioni, Andrea; Whitehead, George F. S.; Chilton, Nicholas F.; Mills, David P.
A fluorobenzene-bound dysprosium half-sandwich dication single-molecule magnet.
Chemical science, 2025, 16, 610-620
1573409 CIFC74 H154 B12 Dy6P -115.6166; 16.3417; 21.7358
90.725; 110.278; 117.066
4536Corner, Sophie C.; Blackmore, William J. A.; Gransbury, Gemma K.; Mattioni, Andrea; Whitehead, George F. S.; Chilton, Nicholas F.; Mills, David P.
A fluorobenzene-bound dysprosium half-sandwich dication single-molecule magnet.
Chemical science, 2025, 16, 610-620
1573410 CIFC62 H25 Al2 Dy F78 O8P 1 21/c 121.7517; 20.9203; 18.7796
90; 93.564; 90
8529.2Corner, Sophie C.; Blackmore, William J. A.; Gransbury, Gemma K.; Mattioni, Andrea; Whitehead, George F. S.; Chilton, Nicholas F.; Mills, David P.
A fluorobenzene-bound dysprosium half-sandwich dication single-molecule magnet.
Chemical science, 2025, 16, 610-620
1573411 CIFC10 H23 B2 DyP 1 21/c 18.3735; 20.8167; 8.5037
90; 117.93; 90
1309.61Corner, Sophie C.; Blackmore, William J. A.; Gransbury, Gemma K.; Mattioni, Andrea; Whitehead, George F. S.; Chilton, Nicholas F.; Mills, David P.
A fluorobenzene-bound dysprosium half-sandwich dication single-molecule magnet.
Chemical science, 2025, 16, 610-620
1573412 CIFC40 H92 B8 Y4P 1 21/c 116.9654; 21.7125; 14.5559
90; 90.735; 90
5361.39Corner, Sophie C.; Blackmore, William J. A.; Gransbury, Gemma K.; Mattioni, Andrea; Whitehead, George F. S.; Chilton, Nicholas F.; Mills, David P.
A fluorobenzene-bound dysprosium half-sandwich dication single-molecule magnet.
Chemical science, 2025, 16, 610-620
1573413 CIFC60 H54 Al2 F57 O6 Si3 YP -116.6426; 16.7663; 18.4889
105.461; 104.692; 113.53
4163.3Corner, Sophie C.; Blackmore, William J. A.; Gransbury, Gemma K.; Mattioni, Andrea; Whitehead, George F. S.; Chilton, Nicholas F.; Mills, David P.
A fluorobenzene-bound dysprosium half-sandwich dication single-molecule magnet.
Chemical science, 2025, 16, 610-620
1573414 CIFC206 H123 Al8 Dy2 F233 O24P 1 21/n 118.2139; 19.314; 40.1803
90; 94.849; 90
14084.2Corner, Sophie C.; Blackmore, William J. A.; Gransbury, Gemma K.; Mattioni, Andrea; Whitehead, George F. S.; Chilton, Nicholas F.; Mills, David P.
A fluorobenzene-bound dysprosium half-sandwich dication single-molecule magnet.
Chemical science, 2025, 16, 610-620
1573415 CIFC14 H16 N4 O4 WC 1 2/c 18.6484; 14.2399; 13.3208
90; 97.498; 90
1626.5Jankins, Tanner C.; Rubel, Camille Z.; Ho, Hang Chi; Martin-Montero, Raul; Engle, Keary M.
Tungsten-catalyzed stereodivergent isomerization of terminal olefins.
Chemical science, 2025, 16, 2307-2315
1573416 CIFC38 H46 N2 O12 W2P -18.9455; 10.6935; 12.0535
66.56; 71.07; 71.049
974.88Jankins, Tanner C.; Rubel, Camille Z.; Ho, Hang Chi; Martin-Montero, Raul; Engle, Keary M.
Tungsten-catalyzed stereodivergent isomerization of terminal olefins.
Chemical science, 2025, 16, 2307-2315
1573417 CIFC18 H20 Cl N O Pd SeP -19.2684; 13.6019; 14.1589
86.53; 85.322; 82.685
1762.29Singh, Sohan; Mahala, Suman; Bhuvanesh, Nattamai; Joshi, Hemant
Pd(ii) NCSe–pincer complexes for regioselective cross-dehydrogenative coupling of arylthiophenes with hetero(arenes)
Catalysis Science & Technology, 2025, 15, 523-536
1573418 CIFC24 H26 Cl N O Pd SeP 1 21/c 16.7272; 20.8455; 15.5747
90; 92.371; 90
2182.2Singh, Sohan; Mahala, Suman; Bhuvanesh, Nattamai; Joshi, Hemant
Pd(ii) NCSe–pincer complexes for regioselective cross-dehydrogenative coupling of arylthiophenes with hetero(arenes)
Catalysis Science & Technology, 2025, 15, 523-536
1573419 CIFC92 H94 Cl4 N5 O12P 114.924; 15.705; 17.535
89.652; 88.476; 78.232
4022.1Gao, Ke; Lee, Sang Hyuk; Zhao, Wenkai; Ahn, Jaeyong; Kim, Tae Woo; Li, Zhenping; Zhuo, Huagui; Wang, Zhiwei; Zheng, Xinglong; Yan, Yang; Chang, Gang; Ma, Wei; Zhang, Mingming; Long, Guankui; Oh, Joon Hak; Shang, Xiaobo
Reversal of chirality in solutions and aggregates of chiral tetrachlorinated diperylene diimides towards efficient circularly polarized light detection.
Materials horizons, 2025, 12, 1903-1912
1573430 CIFC51 H43 N3P 1 21/n 112.0996; 10.9016; 29.2496
90; 96.378; 90
3834.3Liu, Le; Song, Shuangji; Lee, Jiyeon; Rao, Yutao; Xu, Ling; Zhou, Mingbo; Yin, Bangshao; Oh, Juwon; Kim, Jiwon; Osuka, Atsuhiro; Song, Jianxin
Sub-<i>m</i>-benziporphyrin: a subcarbaporphyrinoid and its B<sup>III</sup> complex with an unprecedented planar tridentate 14π-aromatic network.
Chemical science, 2025, 16, 1155-1160
1573431 CIFC49 H39 B N2 O2P 1 21/c 113.211; 20.856; 15.732
90; 114.86; 90
3933Liu, Le; Song, Shuangji; Lee, Jiyeon; Rao, Yutao; Xu, Ling; Zhou, Mingbo; Yin, Bangshao; Oh, Juwon; Kim, Jiwon; Osuka, Atsuhiro; Song, Jianxin
Sub-<i>m</i>-benziporphyrin: a subcarbaporphyrinoid and its B<sup>III</sup> complex with an unprecedented planar tridentate 14π-aromatic network.
Chemical science, 2025, 16, 1155-1160
1573432 CIFC55 H43 B N2P -112.2357; 13.4613; 14.9649
78.284; 77.397; 76.902
2312.08Liu, Le; Song, Shuangji; Lee, Jiyeon; Rao, Yutao; Xu, Ling; Zhou, Mingbo; Yin, Bangshao; Oh, Juwon; Kim, Jiwon; Osuka, Atsuhiro; Song, Jianxin
Sub-<i>m</i>-benziporphyrin: a subcarbaporphyrinoid and its B<sup>III</sup> complex with an unprecedented planar tridentate 14π-aromatic network.
Chemical science, 2025, 16, 1155-1160
1573433 CIFC50 H41 B N2 O2P -114.4553; 15.13; 21.027
92.22; 94.235; 98.658
4528.2Liu, Le; Song, Shuangji; Lee, Jiyeon; Rao, Yutao; Xu, Ling; Zhou, Mingbo; Yin, Bangshao; Oh, Juwon; Kim, Jiwon; Osuka, Atsuhiro; Song, Jianxin
Sub-<i>m</i>-benziporphyrin: a subcarbaporphyrinoid and its B<sup>III</sup> complex with an unprecedented planar tridentate 14π-aromatic network.
Chemical science, 2025, 16, 1155-1160
1573434 CIFC49 H39 B N2 OP -111.919; 12.5825; 14.8081
104.186; 110.328; 96.071
1974Liu, Le; Song, Shuangji; Lee, Jiyeon; Rao, Yutao; Xu, Ling; Zhou, Mingbo; Yin, Bangshao; Oh, Juwon; Kim, Jiwon; Osuka, Atsuhiro; Song, Jianxin
Sub-<i>m</i>-benziporphyrin: a subcarbaporphyrinoid and its B<sup>III</sup> complex with an unprecedented planar tridentate 14π-aromatic network.
Chemical science, 2025, 16, 1155-1160
1573435 CIFC49 H39 B N2P -111.6677; 12.7694; 14.5328
103.399; 109.908; 94.935
1948Liu, Le; Song, Shuangji; Lee, Jiyeon; Rao, Yutao; Xu, Ling; Zhou, Mingbo; Yin, Bangshao; Oh, Juwon; Kim, Jiwon; Osuka, Atsuhiro; Song, Jianxin
Sub-<i>m</i>-benziporphyrin: a subcarbaporphyrinoid and its B<sup>III</sup> complex with an unprecedented planar tridentate 14π-aromatic network.
Chemical science, 2025, 16, 1155-1160
1573436 CIFC20 H27 Br Co N3 O5P 1 21/c 19.5864; 13.892; 17.545
90; 100.802; 90
2295.1Sahoo, Sangita; Pandey, Vipin K.; Barik, Jogendrananda; Rit, Arnab
Cobalt–NHC promoted selective functionalization of alkynes via auxiliary-ligand modulation
Catalysis Science & Technology, 2025, 15, 734-740
1573437 CIFC126 H170 Mo12 N26 O74P 1 21/n 123.4316; 20.2535; 24.6419
90; 104.086; 90
11342.7Yadav, Ankit K.; Gładysiak, Andrzej; Wolpert, Emma H.; Ganose, Alex M.; Samel-Garloff, Bronson; Koley, Dipankar; Jelfs, Kim E.; Stylianou, Kyriakos C.
Solvatomorphic diversity dictates the stability and solubility of metal-organic polyhedra.
Chemical science, 2025, 16, 2589-2599
1573438 CIFC108 H108 Mo12 N18 O72P 6/m20.6212; 20.6212; 15.9529
90; 90; 120
5874.87Yadav, Ankit K.; Gładysiak, Andrzej; Wolpert, Emma H.; Ganose, Alex M.; Samel-Garloff, Bronson; Koley, Dipankar; Jelfs, Kim E.; Stylianou, Kyriakos C.
Solvatomorphic diversity dictates the stability and solubility of metal-organic polyhedra.
Chemical science, 2025, 16, 2589-2599
1573439 CIFC120 H132 Mo12 N18 O72P -118.9295; 20.8274; 31.777
84.01; 86.075; 80.923
12286.5Yadav, Ankit K.; Gładysiak, Andrzej; Wolpert, Emma H.; Ganose, Alex M.; Samel-Garloff, Bronson; Koley, Dipankar; Jelfs, Kim E.; Stylianou, Kyriakos C.
Solvatomorphic diversity dictates the stability and solubility of metal-organic polyhedra.
Chemical science, 2025, 16, 2589-2599
1573440 CIFC144 H204 Mo12 N24 O72P 1 21/n 123.4926; 21.0361; 24.7119
90; 103.643; 90
11867.9Yadav, Ankit K.; Gładysiak, Andrzej; Wolpert, Emma H.; Ganose, Alex M.; Samel-Garloff, Bronson; Koley, Dipankar; Jelfs, Kim E.; Stylianou, Kyriakos C.
Solvatomorphic diversity dictates the stability and solubility of metal-organic polyhedra.
Chemical science, 2025, 16, 2589-2599
1573441 CIFC112 H122 Mo12 N20 O72C m c e37.4589; 29.3487; 20.1896
90; 90; 90
22195.8Yadav, Ankit K.; Gładysiak, Andrzej; Wolpert, Emma H.; Ganose, Alex M.; Samel-Garloff, Bronson; Koley, Dipankar; Jelfs, Kim E.; Stylianou, Kyriakos C.
Solvatomorphic diversity dictates the stability and solubility of metal-organic polyhedra.
Chemical science, 2025, 16, 2589-2599
1573442 CIFC54.83 H67.65 Cl1.65 N6 O2P -18.0413; 14.3206; 21.6156
78.691; 88.151; 87.222
2437.3Szymański, Bartosz; Sahoo, Smruti Ranjan; Vakuliuk, Olena; Valiev, Rashid; Ramazanov, Ruslan; Łaski, Piotr; Jarzembska, Katarzyna N.; Kamiński, Radosław; Teimouri, Mohammad B.; Baryshnikov, Glib; Gryko, Daniel T.
Shedding new light on quadrupolar 1,4-dihydropyrrolo[3,2-<i>b</i>]pyrroles: impact of electron-deficient scaffolds over emission.
Chemical science, 2025, 16, 2170-2179
1573443 CIFC54 H66 N6 S2P -16.81179; 8.26449; 20.8251
92.8453; 96.3218; 95.0155
1158.7Szymański, Bartosz; Sahoo, Smruti Ranjan; Vakuliuk, Olena; Valiev, Rashid; Ramazanov, Ruslan; Łaski, Piotr; Jarzembska, Katarzyna N.; Kamiński, Radosław; Teimouri, Mohammad B.; Baryshnikov, Glib; Gryko, Daniel T.
Shedding new light on quadrupolar 1,4-dihydropyrrolo[3,2-<i>b</i>]pyrroles: impact of electron-deficient scaffolds over emission.
Chemical science, 2025, 16, 2170-2179
1573444 CIFC54 H64 N8 O6C 1 2/c 147.3727; 10.9462; 9.5717
90; 90.519; 90
4963.2Szymański, Bartosz; Sahoo, Smruti Ranjan; Vakuliuk, Olena; Valiev, Rashid; Ramazanov, Ruslan; Łaski, Piotr; Jarzembska, Katarzyna N.; Kamiński, Radosław; Teimouri, Mohammad B.; Baryshnikov, Glib; Gryko, Daniel T.
Shedding new light on quadrupolar 1,4-dihydropyrrolo[3,2-<i>b</i>]pyrroles: impact of electron-deficient scaffolds over emission.
Chemical science, 2025, 16, 2170-2179
1573445 CIFC32 H22 N6 S2P 1 21/c 16.73075; 13.0685; 14.6429
90; 91.099; 90
1287.76Szymański, Bartosz; Sahoo, Smruti Ranjan; Vakuliuk, Olena; Valiev, Rashid; Ramazanov, Ruslan; Łaski, Piotr; Jarzembska, Katarzyna N.; Kamiński, Radosław; Teimouri, Mohammad B.; Baryshnikov, Glib; Gryko, Daniel T.
Shedding new light on quadrupolar 1,4-dihydropyrrolo[3,2-<i>b</i>]pyrroles: impact of electron-deficient scaffolds over emission.
Chemical science, 2025, 16, 2170-2179
1573446 CIFC32 H22 N6 O2C 1 2/c 123.4345; 7.9786; 13.6019
90; 105.599; 90
2449.54Szymański, Bartosz; Sahoo, Smruti Ranjan; Vakuliuk, Olena; Valiev, Rashid; Ramazanov, Ruslan; Łaski, Piotr; Jarzembska, Katarzyna N.; Kamiński, Radosław; Teimouri, Mohammad B.; Baryshnikov, Glib; Gryko, Daniel T.
Shedding new light on quadrupolar 1,4-dihydropyrrolo[3,2-<i>b</i>]pyrroles: impact of electron-deficient scaffolds over emission.
Chemical science, 2025, 16, 2170-2179
1573447 CIFC54 H66 N6 S2P 1 21/c 126.3539; 5.7949; 16.2792
90; 106.857; 90
2379.3Szymański, Bartosz; Sahoo, Smruti Ranjan; Vakuliuk, Olena; Valiev, Rashid; Ramazanov, Ruslan; Łaski, Piotr; Jarzembska, Katarzyna N.; Kamiński, Radosław; Teimouri, Mohammad B.; Baryshnikov, Glib; Gryko, Daniel T.
Shedding new light on quadrupolar 1,4-dihydropyrrolo[3,2-<i>b</i>]pyrroles: impact of electron-deficient scaffolds over emission.
Chemical science, 2025, 16, 2170-2179
1573448 CIFC46 H50 N6 O4P 1 21/n 112.653; 17.7756; 18.8818
90; 102.848; 90
4140.47Szymański, Bartosz; Sahoo, Smruti Ranjan; Vakuliuk, Olena; Valiev, Rashid; Ramazanov, Ruslan; Łaski, Piotr; Jarzembska, Katarzyna N.; Kamiński, Radosław; Teimouri, Mohammad B.; Baryshnikov, Glib; Gryko, Daniel T.
Shedding new light on quadrupolar 1,4-dihydropyrrolo[3,2-<i>b</i>]pyrroles: impact of electron-deficient scaffolds over emission.
Chemical science, 2025, 16, 2170-2179
1573449 CIFC60 H59 N24 O29.5 Zn9R -3 c :H15.31573; 15.31573; 56.9773
90; 90; 120
11574.7Tao, Ye; Dong, Qiubing; Wan, Jingmeng; Huang, Fu-Ping; Duan, Jingui; Zeng, Ming-Hua
Evolution from [Zn<sub>9</sub>] to a record-high [Zn<sub>54</sub>] subblock and engineering a hierarchical supramolecular framework for enhanced iodine uptake.
Chemical science, 2025, 16, 1730-1736
1573450 CIFC348 H288 I56.6 N156 O118.8 Zn54F d -3 :258.9792; 58.9792; 58.9792
90; 90; 90
205162Tao, Ye; Dong, Qiubing; Wan, Jingmeng; Huang, Fu-Ping; Duan, Jingui; Zeng, Ming-Hua
Evolution from [Zn<sub>9</sub>] to a record-high [Zn<sub>54</sub>] subblock and engineering a hierarchical supramolecular framework for enhanced iodine uptake.
Chemical science, 2025, 16, 1730-1736
1573451 CIFC523.2 H705.2 N195.61 O170 Zn54F d -3 :258.3017; 58.3017; 58.3017
90; 90; 90
198173Tao, Ye; Dong, Qiubing; Wan, Jingmeng; Huang, Fu-Ping; Duan, Jingui; Zeng, Ming-Hua
Evolution from [Zn<sub>9</sub>] to a record-high [Zn<sub>54</sub>] subblock and engineering a hierarchical supramolecular framework for enhanced iodine uptake.
Chemical science, 2025, 16, 1730-1736
1573452 CIFC18 H30 Co2 Mo8 N14 O34P b c a15.5814; 16.4046; 17.843
90; 90; 90
4560.8Xie, Tinghui; Wang, Xinfang; Cao, Tingting; Huang, Zuogang; Yu, Huaguang
A series of isostructural polyoxometalate-based metal-organic frameworks of 3,5-bis(1',2',4'-triazol-1'-yl)pyridine: synthesis, structures and electrocatalytic properties.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 903-907
1573453 CIFC18 H30 Mo8 N14 O34 Zn2P b c a15.5823; 16.4405; 17.8841
90; 90; 90
4581.6Xie, Tinghui; Wang, Xinfang; Cao, Tingting; Huang, Zuogang; Yu, Huaguang
A series of isostructural polyoxometalate-based metal-organic frameworks of 3,5-bis(1',2',4'-triazol-1'-yl)pyridine: synthesis, structures and electrocatalytic properties.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 903-907
1573454 CIFC18 H30 Mo8 N14 Ni2 O34P b c a15.7082; 16.2936; 17.7195
90; 90; 90
4535.2Xie, Tinghui; Wang, Xinfang; Cao, Tingting; Huang, Zuogang; Yu, Huaguang
A series of isostructural polyoxometalate-based metal-organic frameworks of 3,5-bis(1',2',4'-triazol-1'-yl)pyridine: synthesis, structures and electrocatalytic properties.
Dalton transactions (Cambridge, England : 2003), 2025, 54, 903-907
1573455 CIFC34 H22 Br2 F2 N4 O2C 1 2/c 113.8725; 29.1188; 9.362
90; 127.298; 90
3008.4Qi, Liang-Wen; Twumasi, Emmanuella Bema; Li, Xiao-Wei; Li, Rui; Lu, Yixin
Reductive coupling of azonaphthalenes for the synthesis of BINAMs <i>via</i> a diboron-enabled [5,5]-sigmatropic rearrangement.
Chemical science, 2025, 16, 1441-1446
1573456 CIFC28 H19 N O SP 1 21/c 120.812; 7.486; 13.413
90; 105.313; 90
2015.5Sharangi, Sanhati; Chakraborty, Barsha; Jha, Raushan Kumar; Mandal, Swarnadeep; Koner, Apurba Lal; Kumar, Sangit
Regio- and diastereoselective synthesis of cyclobutylated phenothiazines <i>via</i> [2 + 2] photocycloaddition: demonstrating wavelength-gated cycloreversion inside live cells.
Chemical science, 2025, 16, 709-720
1573457 CIFC25 N O SP 1 21/c 123.545; 7.4959; 24.005
90; 117.294; 90
3765Sharangi, Sanhati; Chakraborty, Barsha; Jha, Raushan Kumar; Mandal, Swarnadeep; Koner, Apurba Lal; Kumar, Sangit
Regio- and diastereoselective synthesis of cyclobutylated phenothiazines <i>via</i> [2 + 2] photocycloaddition: demonstrating wavelength-gated cycloreversion inside live cells.
Chemical science, 2025, 16, 709-720
1573458 CIFC24 H17 N O SP 1 21/n 111.7018; 13.6726; 21.985
90; 91.133; 90
3516.8Sharangi, Sanhati; Chakraborty, Barsha; Jha, Raushan Kumar; Mandal, Swarnadeep; Koner, Apurba Lal; Kumar, Sangit
Regio- and diastereoselective synthesis of cyclobutylated phenothiazines <i>via</i> [2 + 2] photocycloaddition: demonstrating wavelength-gated cycloreversion inside live cells.
Chemical science, 2025, 16, 709-720
1573459 CIFC25 H19 N O SP 1 21/n 18.381; 20.496; 11.336
90; 105.075; 90
1880.3Sharangi, Sanhati; Chakraborty, Barsha; Jha, Raushan Kumar; Mandal, Swarnadeep; Koner, Apurba Lal; Kumar, Sangit
Regio- and diastereoselective synthesis of cyclobutylated phenothiazines <i>via</i> [2 + 2] photocycloaddition: demonstrating wavelength-gated cycloreversion inside live cells.
Chemical science, 2025, 16, 709-720
1573460 CIFC24 H19 N O SR -3 :H32.1279; 32.1279; 9.3505
90; 90; 120
8358.5Sharangi, Sanhati; Chakraborty, Barsha; Jha, Raushan Kumar; Mandal, Swarnadeep; Koner, Apurba Lal; Kumar, Sangit
Regio- and diastereoselective synthesis of cyclobutylated phenothiazines <i>via</i> [2 + 2] photocycloaddition: demonstrating wavelength-gated cycloreversion inside live cells.
Chemical science, 2025, 16, 709-720
1573461 CIFC30 H21 N O SP 1 21 15.9514; 16.6; 22.163
90; 90.368; 90
2189.5Sharangi, Sanhati; Chakraborty, Barsha; Jha, Raushan Kumar; Mandal, Swarnadeep; Koner, Apurba Lal; Kumar, Sangit
Regio- and diastereoselective synthesis of cyclobutylated phenothiazines <i>via</i> [2 + 2] photocycloaddition: demonstrating wavelength-gated cycloreversion inside live cells.
Chemical science, 2025, 16, 709-720
1573462 CIFC26 H19 N O SP 1 21/n 112.2581; 25.0852; 12.7705
90; 95.524; 90
3908.7Sharangi, Sanhati; Chakraborty, Barsha; Jha, Raushan Kumar; Mandal, Swarnadeep; Koner, Apurba Lal; Kumar, Sangit
Regio- and diastereoselective synthesis of cyclobutylated phenothiazines <i>via</i> [2 + 2] photocycloaddition: demonstrating wavelength-gated cycloreversion inside live cells.
Chemical science, 2025, 16, 709-720
1573463 CIFC24 H17 N O2 SP 21 21 217.3105; 9.5818; 26.479
90; 90; 90
1854.8Sharangi, Sanhati; Chakraborty, Barsha; Jha, Raushan Kumar; Mandal, Swarnadeep; Koner, Apurba Lal; Kumar, Sangit
Regio- and diastereoselective synthesis of cyclobutylated phenothiazines <i>via</i> [2 + 2] photocycloaddition: demonstrating wavelength-gated cycloreversion inside live cells.
Chemical science, 2025, 16, 709-720
1573464 CIFC26 H25 F O6P -17.2891; 9.7884; 15.6447
88.064; 84.589; 80.174
1094.77Zhang, Kuan; Gao, Zhengyang; Xia, Yan; Li, Pengfei; Gao, Pin; Duan, Xin-Hua; Guo, Li-Na
Synthesis of fluorine-containing bicyclo[4.1.1]octenes <i>via</i> photocatalyzed defluorinative (4 + 3) annulation of bicyclo[1.1.0]butanes with <i>gem</i>-difluoroalkenes.
Chemical science, 2025, 16, 1411-1416
1573465 CIFC22 H19 F O2P n a 2111.4103; 16.6264; 9.2337
90; 90; 90
1751.75Zhang, Kuan; Gao, Zhengyang; Xia, Yan; Li, Pengfei; Gao, Pin; Duan, Xin-Hua; Guo, Li-Na
Synthesis of fluorine-containing bicyclo[4.1.1]octenes <i>via</i> photocatalyzed defluorinative (4 + 3) annulation of bicyclo[1.1.0]butanes with <i>gem</i>-difluoroalkenes.
Chemical science, 2025, 16, 1411-1416
1573466 CIFC27 H22 F3 Fe N O2 SP 21 21 219.5134; 9.874; 24.656
90; 90; 90
2316.1Parganiha, Devendra; Thorat, Raviraj Ananda; Dhumale, Ashwini Dilip; Upadhyay, Yagya Dutt; Jha, Raushan Kumar; Raju, Saravanan; Kumar, Sangit
Substrate NOBINAc ligand affinity for Pd<sup>II</sup>-catalyzed enantioselective C-H activation over reactive β-C-H bonds in ferrocenyl amines.
Chemical science, 2025, 16, 700-708
1573467 CIFC22 H20 F3 Fe N O2 SP -19.65; 10.5668; 11.6109
89.893; 69.144; 67.203
1007.15Parganiha, Devendra; Thorat, Raviraj Ananda; Dhumale, Ashwini Dilip; Upadhyay, Yagya Dutt; Jha, Raushan Kumar; Raju, Saravanan; Kumar, Sangit
Substrate NOBINAc ligand affinity for Pd<sup>II</sup>-catalyzed enantioselective C-H activation over reactive β-C-H bonds in ferrocenyl amines.
Chemical science, 2025, 16, 700-708
1573468 CIFC27 H22 F3 Fe N O2 SP 21 21 219.5665; 9.829; 25.415
90; 90; 90
2389.8Parganiha, Devendra; Thorat, Raviraj Ananda; Dhumale, Ashwini Dilip; Upadhyay, Yagya Dutt; Jha, Raushan Kumar; Raju, Saravanan; Kumar, Sangit
Substrate NOBINAc ligand affinity for Pd<sup>II</sup>-catalyzed enantioselective C-H activation over reactive β-C-H bonds in ferrocenyl amines.
Chemical science, 2025, 16, 700-708
1573469 CIFC24 H21 Ag2 Cl3 F12 N12 P2P -18.0608; 14.5789; 16.1846
72.495; 82.655; 74.413
1744.9Panda, Subhra Jyoti; Khator, Kanha Ram; Deswal, Priyanka; Nayak, Shashwat; Pandey, Durgesh; Patel, Suraj K.; Agrawalla, Suraj Kumar; Ghosh, Dibyajyoti; Senanayak, Satyaprasad P.; Purohit, Chandra Shekhar
Silver-purine MOFs for high-performance multi-terminal neuromorphic memory.
Materials horizons, 2025, 12, 2208-2222
1573470 CIFC6 H5 Ag Cl F6 N4 SbP 1 21/c 112.0279; 8.6719; 12.8186
90; 108.416; 90
1268.57Panda, Subhra Jyoti; Khator, Kanha Ram; Deswal, Priyanka; Nayak, Shashwat; Pandey, Durgesh; Patel, Suraj K.; Agrawalla, Suraj Kumar; Ghosh, Dibyajyoti; Senanayak, Satyaprasad P.; Purohit, Chandra Shekhar
Silver-purine MOFs for high-performance multi-terminal neuromorphic memory.
Materials horizons, 2025, 12, 2208-2222
1573471 CIFC6 H5 Ag Cl F6 N4 PP 1 21/c 111.9676; 8.4366; 12.5599
90; 108.484; 90
1202.7Panda, Subhra Jyoti; Khator, Kanha Ram; Deswal, Priyanka; Nayak, Shashwat; Pandey, Durgesh; Patel, Suraj K.; Agrawalla, Suraj Kumar; Ghosh, Dibyajyoti; Senanayak, Satyaprasad P.; Purohit, Chandra Shekhar
Silver-purine MOFs for high-performance multi-terminal neuromorphic memory.
Materials horizons, 2025, 12, 2208-2222
1573472 CIFC24 H21 Ag2 Cl3 F12 N12 Sb2P 1 21/c 116.2142; 17.5601; 13.5028
90; 106.381; 90
3688.5Panda, Subhra Jyoti; Khator, Kanha Ram; Deswal, Priyanka; Nayak, Shashwat; Pandey, Durgesh; Patel, Suraj K.; Agrawalla, Suraj Kumar; Ghosh, Dibyajyoti; Senanayak, Satyaprasad P.; Purohit, Chandra Shekhar
Silver-purine MOFs for high-performance multi-terminal neuromorphic memory.
Materials horizons, 2025, 12, 2208-2222
1573473 CIFC11 H11 Cl2 N3 O2 PdI 1 2/a 119.6202; 9.6407; 14.9332
90; 91.131; 90
2824.1Reusser, Esaïe; Aeschlimann, Michael; Albrecht, Martin
Enhancing activity and selectivity of palladium catalysts in ketone α-arylation by tailoring the imine chelate of pyridinium amidate (PYA) ligands.
Catalysis science & technology, 2025, 15, 867-877
1573474 CIFC19 H20 Cl2 N4 O PdP 1 21/n 111.62997; 14.78476; 11.92053
90; 105.047; 90
1979.42Reusser, Esaïe; Aeschlimann, Michael; Albrecht, Martin
Enhancing activity and selectivity of palladium catalysts in ketone α-arylation by tailoring the imine chelate of pyridinium amidate (PYA) ligands.
Catalysis science & technology, 2025, 15, 867-877
1573475 CIFC14 H18 Cl2 N4 O PdP 21 21 218.91557; 10.26115; 18.9836
90; 90; 90
1736.7Reusser, Esaïe; Aeschlimann, Michael; Albrecht, Martin
Enhancing activity and selectivity of palladium catalysts in ketone α-arylation by tailoring the imine chelate of pyridinium amidate (PYA) ligands.
Catalysis science & technology, 2025, 15, 867-877
1573476 CIFC12 H14 Cl2 N4 O PdP c c n10.9705; 23.0363; 14.0725
90; 90; 90
3556.4Reusser, Esaïe; Aeschlimann, Michael; Albrecht, Martin
Enhancing activity and selectivity of palladium catalysts in ketone α-arylation by tailoring the imine chelate of pyridinium amidate (PYA) ligands.
Catalysis science & technology, 2025, 15, 867-877
1573477 CIF
Paper
C16 H16 N2 O4I 1 2/a 116.6633; 4.7294; 19.6488
90; 110.091; 90
1454.24Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573478 CIFC16 H16 N2 O4I 1 2/a 116.6728; 4.7388; 19.668
90; 110.024; 90
1460.01Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573479 CIFC16 H16 N2 O4I 1 2/a 116.6842; 4.7293; 19.692
90; 110.036; 90
1459.75Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573480 CIFC16 H16 N2 O4I 1 2/a 116.6876; 4.7329; 19.6859
90; 110.002; 90
1461.02Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573481 CIFC16 H16 N2 O4I 1 2/a 116.6834; 4.7362; 19.6927
90; 109.981; 90
1462.37Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573482 CIFC16 H16 N2 O4I 1 2/a 116.6852; 4.7457; 19.6763
90; 109.949; 90
1464.54Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573483 CIFC16 H16 N2 O4I 1 2/a 116.6821; 4.7392; 19.6849
90; 109.948; 90
1462.91Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573484 CIFC16 H16 N2 O4I 1 2/a 116.6868; 4.7394; 19.6945
90; 109.936; 90
1464.21Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573485 CIFC16 H16 N2 O4I 1 2/a 116.6819; 4.7422; 19.6945
90; 109.915; 90
1464.84Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573486 CIFC16 H16 N2 O4I 1 2/a 116.6847; 4.7475; 19.6847
90; 109.844; 90
1466.65Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573487 CIFC16 H16 N2 O4I 1 2/a 116.6837; 4.75; 19.6845
90; 109.814; 90
1467.6Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573488 CIFC16 H16 N2 O4I 1 2/a 116.6837; 4.7513; 19.6812
90; 109.784; 90
1468.03Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573489 CIFC16 H16 N2 O4I 1 2/a 116.68; 4.7547; 19.6846
90; 109.773; 90
1469.11Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573490 CIFC16 H16 N2 O4I 1 2/a 116.6841; 4.7564; 19.6818
90; 109.74; 90
1470.09Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573491 CIFC16 H16 N2 O4I 1 2/a 116.6798; 4.7618; 19.6808
90; 109.657; 90
1472.07Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573492 CIFC16 H16 N2 O4I 1 2/a 116.684; 4.7634; 19.6972
90; 109.674; 90
1474.01Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573493 CIFC16 H16 N2 O4I 1 2/a 116.6906; 4.7903; 19.6824
90; 109.367; 90
1484.62Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573494 CIFC16 H16 N2 O4I 1 2/a 116.692; 4.8145; 19.6756
90; 109.059; 90
1494.53Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573495 CIFC16 H16 N2 O4I 1 2/a 116.6911; 4.8164; 19.6669
90; 109.032; 90
1494.62Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573496 CIFC16 H18 N2 O4I 1 2/a 116.6; 4.7781; 19.218
90; 110.32; 90
1429Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573497 CIFC16 H18 N2 O4I 1 2/a 116.56; 4.7226; 19.187
90; 110.99; 90
1401Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573498 CIFC16 H18 N2 O4I 1 2/a 116.6147; 4.8463; 19.3274
90; 109.551; 90
1466.51Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573499 CIFC16 H18 N2 O4I 1 2/a 116.6128; 4.8607; 19.3367
90; 109.37; 90
1473.05Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573500 CIFC16 H18 N2 O4I 1 2/a 116.55; 4.6266; 19.089
90; 111.96; 90
1356Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573501 CIFC16 H18 N2 O4I 1 2/a 116.6153; 4.8619; 19.34
90; 109.35; 90
1474.07Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573502 CIFC16 H18 N2 O4I 1 2/a 116.6155; 4.8646; 19.3384
90; 109.321; 90
1475.05Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573503 CIFC16 H18 N2 O4I 1 2/a 116.6252; 4.8647; 19.3379
90; 109.278; 90
1476.3Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573504 CIFC16 H18 N2 O4I 1 2/a 116.6176; 4.8671; 19.3394
90; 109.301; 90
1476.25Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573505 CIFC16 H18 N2 O4I 1 2/a 116.6174; 4.8695; 19.3375
90; 109.268; 90
1477.11Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573506 CIFC16 H18 N2 O4I 1 2/a 116.6187; 4.872; 19.3377
90; 109.242; 90
1478.23Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573507 CIFC16 H18 N2 O4I 1 2/a 116.6197; 4.8747; 19.3362
90; 109.217; 90
1479.25Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573508 CIFC16 H18 N2 O4I 1 2/a 116.6216; 4.877; 19.3388
90; 109.193; 90
1480.54Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573509 CIFC16 H18 N2 O4I 1 2/a 116.6256; 4.8792; 19.3393
90; 109.164; 90
1481.86Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573510 CIFC16 H18 N2 O4I 1 2/a 116.6268; 4.881; 19.3397
90; 109.141; 90
1482.75Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573511 CIFC16 H18 N2 O4I 1 2/a 116.6279; 4.8825; 19.3411
90; 109.105; 90
1483.73Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573512 CIFC16 H18 N2 O4I 1 2/a 116.53; 4.5612; 19.065
90; 112.63; 90
1326.8Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573513 CIFC16 H18 N2 O4I 1 2/a 116.6313; 4.8871; 19.3441
90; 109.05; 90
1486.16Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573514 CIFC16 H18 N2 O4I 1 2/a 116.6408; 4.8878; 19.3501
90; 109.048; 90
1487.7Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573515 CIFC16 H18 N2 O4I 1 2/a 116.48; 4.5205; 19.083
90; 113.24; 90
1306Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573516 CIFC16 H18 N2 O4I 1 2/a 116.6494; 4.9069; 19.3575
90; 108.812; 90
1497Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573517 CIFC16 H18 N2 O4I 1 2/a 116.469; 4.4857; 19.042
90; 113.63; 90
1288.8Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573518 CIFC16 H18 N2 O4I 1 2/a 116.462; 4.4828; 19.038
90; 113.66; 90
1286.8Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573519 CIFC16 H18 N2 O4I 1 2/a 116.446; 4.46879; 19.038
90; 113.81; 90
1280.1Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573520 CIFC16 H18 N2 O4I 1 2/a 116.33; 4.4824; 19.06
90; 113.4; 90
1280Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573521 CIFC16 H18 N2 O4I 1 2/a 116.6688; 4.9269; 19.3733
90; 108.522; 90
1508.63Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573522 CIFC16 H18 N2 O4I 1 2/a 116.661; 4.9284; 19.3767
90; 108.52; 90
1508.7Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573523 CIFC16 H18 N2 O4I 1 2/a 116.429; 4.4214; 19.02
90; 114.32; 90
1259Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573524 CIFC16 H18 N2 O4I 1 2/a 116.44; 4.4104; 18.97
90; 114; 90
1257Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573525 CIFC16 H18 N2 O4I 1 2/a 116.46; 4.3839; 18.94
90; 114.3; 90
1246Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573526 CIFC16 H18 N2 O4I 1 2/a 116.6711; 4.9272; 19.3744
90; 108.512; 90
1509.1Patyk-Kaźmierczak, Ewa; Szymańska, Kornelia; Kaźmierczak, Michał
Managing negative linear compressibility and thermal expansion through steric hindrance: a case study of 1,2-bis(4'-pyridyl)ethane cocrystals.
IUCrJ, 2025, 12
1573527 CIFC16 H21 Cl2 O2 P SP 1 21/n 16.6911; 21.7491; 12.1069
90; 103.068; 90
1716.23Bouzid, Moad; Poinsot, Didier; Mboyi, Clève D; Ochmann, Lukas; Domenichini, Bruno; Schreiner, Peter R.; Hierso, Jean-Cyrille
Sulfur functionalized diamondoid phosphines enable building nanocomposites interfacing sp<sup>3</sup>-carbon and gold nanolayers.
Nanoscale, 2025, 17, 4123-4131
1573528 CIFC14 H21 P SP 1 21/c 17.7405; 13.6302; 12.6387
90; 104.82; 90
1289.08Bouzid, Moad; Poinsot, Didier; Mboyi, Clève D; Ochmann, Lukas; Domenichini, Bruno; Schreiner, Peter R.; Hierso, Jean-Cyrille
Sulfur functionalized diamondoid phosphines enable building nanocomposites interfacing sp<sup>3</sup>-carbon and gold nanolayers.
Nanoscale, 2025, 17, 4123-4131
1573529 CIFAl2 Ca H6 O13 Si3C 1 c 16.5252; 18.9769; 9.7779
90; 108.857; 90
1145.79Tajiri, Hiroo; Kohara, Shinji; Kimura, Koji; Halubai, Sekhar; Morimoto, Haruto; Happo, Naohisa; Stellhorn, Jens R.; Onodera, Yohei; Qiao, Xvsheng; Urushihara, Daisuke; Hu, Peidong; Wakihara, Toru; Kinoshita, Toyohiko; Hayashi, Koichi
Diffractometer for element-specific analysis on local structures using a combination of X-ray fluorescence holography and anomalous X-ray scattering.
Journal of synchrotron radiation, 2025, 32, 125-132
1573535 CIF
Paper
C30 H41 La2 N10 O18.5P 1 21/c 111.117; 17.8366; 11.8094
90; 114.213; 90
2135.7Ndiaye-Gueye, Mbossé; Traoré, Bocar; Thiam, Ibrahima Elhadji; Diouf, Ousmane; Wenger, Emmanuel; Sall, Abdou Salam; Lecomte, Claude; Gaye, Mohamed
Acta Crystallographica, Section E: Crystallographic Communications, 2025, 81, 85-89
1573538 CIF
Paper
C9 H10 N4 O2P 1 21/c 13.7638; 9.286; 26.194
90; 93.786; 90
913.5Boutheina, Boualia; Zakaria, Bouhidel; Cherouana, Aouatef; El-Eulmi, Bendeif
Acta Crystallographica, Section E: Crystallographic Communications, 2025, 81, 80-84
1573541 CIFC22 H28 Na4 O10 P2P 1 21/c 112.6672; 6.1624; 18.016
90; 106.967; 90
1345.1Zhang, Yan; Apostol, Petru; Rambabu, Darsi; Guo, Xiaolong; Liu, Xuelian; Lin, Xiaodong; Xie, Haijiao; Chen, Xiaohua; Robeyns, Koen; Wang, Jiande; Wang, Junzhong; Vlad, Alexandru
Ionically conducting Li- and Na-phosphonates as organic electrode materials for rechargeable batteries.
Chemical science, 2025, 16, 1819-1825
1573542 CIFC86 H44 N2I 1 2/a 115.8224; 21.9763; 28.7119
90; 93.501; 90
9965Nakamura, Tomoya; Nagai, Takabumi; Miyake, Yuki; Yamada, Takumi; Miura, Makoto; Yoshida, Hiroyuki; Kanemitsu, Yoshihiko; Truong, Minh Anh; Murdey, Richard; Wakamiya, Atsushi
Single-isomer bis(pyrrolidino)fullerenes as electron-transporting materials for tin halide perovskite solar cells.
Chemical science, 2025, 16, 2265-2272
1573543 CIFC27 H20 F2 O3P -19.86943; 17.5275; 26.1199
95.7908; 99.8803; 106.339
4218.1Li, Na; Li, Chenghui; Zhou, Qianying; Zhang, Xin; Deng, Zhouming; Jiang, Zhong-Xing; Yang, Zhigang
General access to furan-substituted <i>gem</i>-difluoroalkenes enabled by PFTB-promoted cross-coupling of ene-yne-ketones and difluorocarbene.
Chemical science, 2025, 16, 1455-1464
1573544 CIFC11 H21 B O3 SP 1 21/c 113.0315; 6.515; 15.334
90; 98.689; 90
1286.9Kumar, Ashok; Gupta, Rohit; Subramaniyan, Vasudevan; Mani, Ganesan
DMSO-catalyzed CO2 reduction with 9-BBN: selective formation of either formoxy- or methoxyborane under mild conditions and C-methylenation of indoles
Catalysis Science & Technology, 2025, 15, 678-688
1573545 CIFC26 H21 B N4 OP 1 21/n 19.804; 16.35; 13.564
90; 108.989; 90
2056Watson, Alexander E. R.; Boyle, Paul D.; Ragogna, Paul J.; Gilroy, Joe B.
Ligand protonation leads to highly fluorescent boronium cations.
Chemical science, 2025, 16, 2258-2264
1573546 CIFC34 H32 B Cl3 N4 OP 21 21 219.673; 16.008; 20.119
90; 90; 90
3115Watson, Alexander E. R.; Boyle, Paul D.; Ragogna, Paul J.; Gilroy, Joe B.
Ligand protonation leads to highly fluorescent boronium cations.
Chemical science, 2025, 16, 2258-2264
1573547 CIFB2 Ba Ca Cs F O5P -4 21 m8.8668; 8.8668; 8.7669
90; 90; 90
689.25Chen, Fuqiang; Wu, Hongping; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng; Yu, Hongwei
Rational design of a series of non-centrosymmetric antiperovskite and double antiperovskite borate fluorides.
Chemical science, 2025, 16, 2015-2023
1573548 CIFB2 Ba Ca F O5 RbP -4 21 m8.7713; 8.7713; 4.3173
90; 90; 90
332.15Chen, Fuqiang; Wu, Hongping; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng; Yu, Hongwei
Rational design of a series of non-centrosymmetric antiperovskite and double antiperovskite borate fluorides.
Chemical science, 2025, 16, 2015-2023
1573549 CIFB2 Ba Ca F K O5P -4 21 m8.7276; 8.7276; 4.284
90; 90; 90
326.32Chen, Fuqiang; Wu, Hongping; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng; Yu, Hongwei
Rational design of a series of non-centrosymmetric antiperovskite and double antiperovskite borate fluorides.
Chemical science, 2025, 16, 2015-2023
1573550 CIFC38 H32 N4 O2P -17.2089; 9.3281; 11.0857
97.148; 92.22; 96.254
734.23Mandal, Debasish; Sarkar, Abani; Behera, Kanhu Charan; Ravikanth, Mangalampalli
pH-responsive supramolecular switch of a rationally designed dipyrroethene-based chromophore.
Chemical science, 2025, 16, 1772-1782
1573551 CIFC42 H34 F6 N4 O6C 1 2/c 113.3398; 12.3038; 25.4069
90; 97.608; 90
4133.3Mandal, Debasish; Sarkar, Abani; Behera, Kanhu Charan; Ravikanth, Mangalampalli
pH-responsive supramolecular switch of a rationally designed dipyrroethene-based chromophore.
Chemical science, 2025, 16, 1772-1782
1573552 CIFC19 H17 N3P -19.295; 9.499; 10.348
79.673; 65.183; 63.713
743.5Mandal, Debasish; Sarkar, Abani; Behera, Kanhu Charan; Ravikanth, Mangalampalli
pH-responsive supramolecular switch of a rationally designed dipyrroethene-based chromophore.
Chemical science, 2025, 16, 1772-1782
1573553 CIFC64 H92 N4 Tb2P n a 2130.8903; 10.27991; 18.11204
90; 90; 90
5751.47Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573554 CIFC10.09 H14.96 Cl0.17 Dy0.17 N0.7C 1 2/c 123.9612; 10.5893; 22.5423
90; 112.235; 90
5294.4Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573555 CIFC65 H94 I N4 YI 1 2/a 125.2282; 10.9625; 23.8393
90; 116.041; 90
5923.8Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573556 CIFC58 H86 Cl N4 TbC 1 2/c 123.9599; 10.5837; 22.4979
90; 112.183; 90
5282.8Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573557 CIFC67 H99 Dy2 N4P 1 21/c 110.8382; 38.9439; 15.0078
90; 105.063; 90
6116.87Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573558 CIFC67 H99 N4 Y2P 1 21/c 110.8398; 38.9679; 15.0051
90; 105.029; 90
6121.42Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573559 CIFC75 H120 N4 Tb2P -114.4004; 15.4059; 18.05
97.598; 103.094; 112.008
3510.01Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573560 CIFC65 H94 Gd I N4C 1 2/c 126.171; 11.0443; 23.94
90; 119.762; 90
6006.9Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573561 CIFC64 H92 Gd2 N4P b c a18.1193; 35.666; 36.498
90; 90; 90
23587Jin, Peng-Bo; Luo, Qian-Cheng; Gransbury, Gemma K.; Winpenny, Richard E. P.; Mills, David P.; Zheng, Yan-Zhen
Rare earth benzene tetraanion-bridged amidinate complexes.
Chemical science, 2025, 16, 1907-1924
1573562 CIFC27 H36 B N3 OP 1 21/c 112.67284; 9.17962; 22.43254
90; 96.7556; 90
2591.5Tang, Jianqin; Hu, Chenyang; Crumpton, Agamemnon E.; Griffin, Liam P.; Goicoechea, Jose M.; Aldridge, Simon
Metathesis chemistry of inorganic cumulenes driven by B-O bond formation.
Chemical science, 2025, 16, 2231-2237
1573563 CIFC53 H74 B N5 P2P 1 21/c 112.8968; 19.8442; 40.8371
90; 96.999; 90
10373.4Tang, Jianqin; Hu, Chenyang; Crumpton, Agamemnon E.; Griffin, Liam P.; Goicoechea, Jose M.; Aldridge, Simon
Metathesis chemistry of inorganic cumulenes driven by B-O bond formation.
Chemical science, 2025, 16, 2231-2237
1573564 CIFC45 H52.4 B2 K N3 O2I -422.7178; 22.7178; 15.9414
90; 90; 90
8227.3Tang, Jianqin; Hu, Chenyang; Crumpton, Agamemnon E.; Griffin, Liam P.; Goicoechea, Jose M.; Aldridge, Simon
Metathesis chemistry of inorganic cumulenes driven by B-O bond formation.
Chemical science, 2025, 16, 2231-2237
1573565 CIFC33 H42 B N3P 1 21/n 19.7098; 16.9985; 17.7195
90; 93.843; 90
2918.06Tang, Jianqin; Hu, Chenyang; Crumpton, Agamemnon E.; Griffin, Liam P.; Goicoechea, Jose M.; Aldridge, Simon
Metathesis chemistry of inorganic cumulenes driven by B-O bond formation.
Chemical science, 2025, 16, 2231-2237
1573566 CIFC60 H81 B3 N6 OC 1 2/c 122.2498; 13.5031; 37.4373
90; 99.081; 90
11106.7Tang, Jianqin; Hu, Chenyang; Crumpton, Agamemnon E.; Griffin, Liam P.; Goicoechea, Jose M.; Aldridge, Simon
Metathesis chemistry of inorganic cumulenes driven by B-O bond formation.
Chemical science, 2025, 16, 2231-2237
1573567 CIFC27 H36 B N3 SI 1 2/a 116.90996; 9.55705; 33.35081
90; 94.9584; 90
5369.63Tang, Jianqin; Hu, Chenyang; Crumpton, Agamemnon E.; Griffin, Liam P.; Goicoechea, Jose M.; Aldridge, Simon
Metathesis chemistry of inorganic cumulenes driven by B-O bond formation.
Chemical science, 2025, 16, 2231-2237
1573570 CIFC31 H29 F2 O4 PP -19.6234; 10.4927; 14.0802
99.31; 98.054; 100.619
1357.67Huang, Mao-Gui; Fu, Yue-Liu-Ting; Li, Jia-Wei; Liu, Yue-Jin
Ruthenium-catalyzed three-component tandem remote C-H functionalization of naphthalenes: modular and concise synthesis of multifunctional naphthalenes.
Chemical science, 2025, 16, 1957-1965
1573571 CIFC42 H40 Br4 N12 Ni2 O6P 1 21/c 114.4927; 9.522; 24.7089
90; 137.895; 90
2286.3Rodriguez-Lugo, Rafael E; Sander, Joan; Dietzmann, Simon; Rittner, Thomas; Rückel, Jannes; Landaeta, Vanessa R.; Park, Jiyong; Nuernberger, Patrick; Baik, Mu-Hyun; Wolf, Robert
Mechanistic insights into the visible-light-driven <i>O</i>-arylation of carboxylic acids catalyzed by xanthine-based nickel complexes.
Chemical science, 2025, 16, 2751-2762
1573572 CIFC40 H38 Br4 Cl4 N12 Ni2 O4P 1 21/c 113.4368; 9.1144; 20.483
90; 108.664; 90
2376.6Rodriguez-Lugo, Rafael E; Sander, Joan; Dietzmann, Simon; Rittner, Thomas; Rückel, Jannes; Landaeta, Vanessa R.; Park, Jiyong; Nuernberger, Patrick; Baik, Mu-Hyun; Wolf, Robert
Mechanistic insights into the visible-light-driven <i>O</i>-arylation of carboxylic acids catalyzed by xanthine-based nickel complexes.
Chemical science, 2025, 16, 2751-2762
1573573 CIFC20.57 H18.49 N6.86 O2.39I 1 2/a 113.0278; 14.7154; 34.4476
90; 99.152; 90
6519.86Rodriguez-Lugo, Rafael E; Sander, Joan; Dietzmann, Simon; Rittner, Thomas; Rückel, Jannes; Landaeta, Vanessa R.; Park, Jiyong; Nuernberger, Patrick; Baik, Mu-Hyun; Wolf, Robert
Mechanistic insights into the visible-light-driven <i>O</i>-arylation of carboxylic acids catalyzed by xanthine-based nickel complexes.
Chemical science, 2025, 16, 2751-2762

Left arrow Left arrow First | Left arrow Previous 300 | of 35 | Next 300 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

Back to the search form
Your own data is not in the COD? Deposit it, thanks!