Crystallography Open Database

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7133478 CIFC28 H34 Co K N5 OP -110.153; 11.686; 13.651
89.533; 73.197; 64.696
1389.2Anferov, Sophie W.; Krupinski, Alexandra; Anderson, John S.
Synthesis of a potassium capped terminal cobalt-oxido complex.
Chemical communications (Cambridge, England), 2024, 60, 9562-9565
7133479 CIFC30 H37 Co N6P 21 21 218.9652; 11.2879; 27.8086
90; 90; 90
2814.2Anferov, Sophie W.; Krupinski, Alexandra; Anderson, John S.
Synthesis of a potassium capped terminal cobalt-oxido complex.
Chemical communications (Cambridge, England), 2024, 60, 9562-9565
7133480 CIFC31 H22 N4 O2C 1 2/c 118.947; 16.244; 15.993
90; 104.238; 90
4771Shen, Xi; Yu, Zhi-Cheng; Zhou, You; Wu, Yan-Dong; Wu, An-Xin
Divergent synthesis of pyrrolidone fused pyrimido[1,2-<i>b</i>]indazole through selective trapping of an enone intermediate by 1<i>H</i>-indazol-3-amine.
Chemical communications (Cambridge, England), 2024, 60, 9781-9784
7133481 CIFC32 H26 F N4 O3 SP 1 21/n 112.761; 11.663; 19.57
90; 107.371; 90
2779.8Shen, Xi; Yu, Zhi-Cheng; Zhou, You; Wu, Yan-Dong; Wu, An-Xin
Divergent synthesis of pyrrolidone fused pyrimido[1,2-<i>b</i>]indazole through selective trapping of an enone intermediate by 1<i>H</i>-indazol-3-amine.
Chemical communications (Cambridge, England), 2024, 60, 9781-9784
7133482 CIFC13 H15 N O4P 1 21 17.5054; 10.0086; 8.5104
90; 110.518; 90
598.73Tian, Jin-Rui; Qiao, Yu-Hao; Zhuang, Qing-Bo; Fan, Rong; Li, Zhen; Zhang, Xiao-Ming; Zhang, Fu-Min; Tu, Yong-Qiang
Organo-cation catalyzed enantioselective α-hydroxylation of pyridinone-fused lactones: asymmetric synthesis of SN-38 and irinotecan.
Chemical communications (Cambridge, England), 2024, 60, 9954-9957
7133483 CIFC41 H34 Cl2 I N2 O2C 1 2 126.7116; 10.1135; 16.0912
90; 122.776; 90
3654.9Rui, Kanghua; Huang, Shaoying; Wu, Yinong; Shen, Hanxiao; Lin, Xufeng
Organocatalytic enantioselective (4+3) cyclization for the synthesis of spiro-fused heterocyclic compounds containing isoindolinone, oxepine and indole moieties.
Chemical communications (Cambridge, England), 2024, 60, 9400-9403
7133484 CIFC13 H16 F3 N O3 SP -17.1898; 10.261; 10.7376
82.873; 81.112; 73.186
746.55Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133485 CIFC15 H20 B F4 NP 1 21/c 110.0997; 8.3125; 17.8495
90; 96.121; 90
1489.99Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133486 CIFC14 H18 B F4 NP 1 21/n 18.57365; 16.306; 9.96321
90; 90.6392; 90
1392.79Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133487 CIFC14 H17 B F5 NP 1 21/n 18.51495; 16.4158; 10.0399
90; 90.742; 90
1403.26Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133488 CIFC15 H20 B F4 N OP 1 21/n 17.63744; 19.68; 10.11448
90; 100.728; 90
1493.68Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133489 CIFC15 H20 B F4 NP 1 21/n 17.5602; 15.2074; 12.6685
90; 95.164; 90
1450.6Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133490 CIFC15 H20 B F4 NP 1 21/c 110.11; 8.7342; 16.7607
90; 90.82; 90
1479.86Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133491 CIFC17 H24 B F4 N O3P -17.6902; 9.9674; 12.0352
94.287; 96.2441; 96.7987
907Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133492 CIFC28 H36 B2 F8 N2P 1 21 17.1302; 14.6918; 13.1044
90; 101.392; 90
1345.71Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133493 CIFC26 H26 O2P 1 21 19.0741; 13.3976; 9.2157
90; 115.37; 90
1012.32Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133494 CIFC28 H36 F2 N2P 1 21 19.36553; 10.40596; 12.2778
90; 99.9106; 90
1178.71Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133495 CIFC20 H22 F2 O2P 1 2/c 115.5432; 10.8346; 20.429
90; 98.712; 90
3400.64Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133496 CIFC20 H20 O2P 1 21/n 19.64367; 16.3794; 11.2234
90; 115.752; 90
1596.75Yamada, Shinji; Honda, Yuka
Solid-state [2+2] photodimerization of eniminium salts: stereoselective syntheses of 1,3-diacetylcyclobutanes.
Chemical communications (Cambridge, England), 2024, 60, 9821-9824
7133497 CIFC42 H24 O13 Zn4F m -3 m34.3966; 34.3966; 34.3966
90; 90; 90
40695.5Carey, Cassidy A.; Foroughi, Leila M.; Matzger, Adam J.
Designed additive suppresses interpenetration in IRMOF-10.
Chemical communications (Cambridge, England), 2024, 60, 9396-9399
7133498 CIFC68 H3 F3 OP 1 2/c 117.3452; 10.073; 19.9427
90; 90.496; 90
3484.2Zhai, Yong-Chang; Yamanaka, Koki; Yu, Chu-Yang; Wang, Jun-Zhuo; Zheng, Xue-Lin; Huda, Miftakhul; Imai, Naoyuki; Igarashi, Takeshi; Aoyagi, Shinobu; Matsuo, Yutaka
Hydrophobic evaporable fullerene indanone ketone with low sublimation temperature and amorphous morphology for inverted perovskite solar cells.
Chemical communications (Cambridge, England), 2024, 60, 9420-9423
7133499 CIFC32 H28 N2 OP 1 21/n 121.5474; 11.3765; 22.1803
90; 113.87; 90
4972.1Nian, Cuicui; Yu, Run; Han, Zhengyu; Bai, Yang; Wang, Jianhao; Sun, Jianwei; Huang, Hai
Trifluoroethanol promoted formal nucleophilic substitution of indol-2-yl diaryl methanol for the synthesis of tetraarylmethanes.
Chemical communications (Cambridge, England), 2024, 60, 9797-9800
7133500 CIFC45 H53 N2 P SnP 1 21/c 110.1795; 10.3793; 38.58
90; 91.604; 90
4074.6Wei, Rui; Wang, Xin-Feng; Hu, Chaopeng; Liu, Liu Leo
(Phosphino)(stannyl)carbene.
Chemical communications (Cambridge, England), 2024, 60, 9793-9796
7133501 CIFC45 H53 N4 P SnP -19.9707; 10.4091; 20.4298
89.295; 76.839; 77.221
2011.88Wei, Rui; Wang, Xin-Feng; Hu, Chaopeng; Liu, Liu Leo
(Phosphino)(stannyl)carbene.
Chemical communications (Cambridge, England), 2024, 60, 9793-9796
7133502 CIFC49 H62 N3 P Si SnP 1 21/c 118.0214; 12.3053; 20.7838
90; 93.773; 90
4599Wei, Rui; Wang, Xin-Feng; Hu, Chaopeng; Liu, Liu Leo
(Phosphino)(stannyl)carbene.
Chemical communications (Cambridge, England), 2024, 60, 9793-9796
7133503 CIFC46 H53 N2 O P SnP -19.9668; 10.3764; 20.4573
89.474; 76.827; 77.353
2008.18Wei, Rui; Wang, Xin-Feng; Hu, Chaopeng; Liu, Liu Leo
(Phosphino)(stannyl)carbene.
Chemical communications (Cambridge, England), 2024, 60, 9793-9796
7133504 CIFC54 H62 N3 P SnP 1 21/c 120.5741; 18.2905; 12.3909
90; 90.541; 90
4662.62Wei, Rui; Wang, Xin-Feng; Hu, Chaopeng; Liu, Liu Leo
(Phosphino)(stannyl)carbene.
Chemical communications (Cambridge, England), 2024, 60, 9793-9796
7133505 CIFC90 H93 Cl4 Co2 F12 N20 O0.5 P2P -112.0852; 17.3585; 22.5821
70.146; 79.514; 85.984
4381.1Bhandari, Anirban; Park, Gyeong Min; Lee, Heui Beom; Hong, Sugyeong; Kim, Sun Hee; Byon, Hye Ryung; Lee, Yunho
A stable radical within a N-Co-N core.
Chemical communications (Cambridge, England), 2024, 60, 9970-9973
7133506 CIFC44 H44 Co I6 N10P -111.0762; 11.838; 18.9588
93.125; 95.401; 90.195
2471.1Bhandari, Anirban; Park, Gyeong Min; Lee, Heui Beom; Hong, Sugyeong; Kim, Sun Hee; Byon, Hye Ryung; Lee, Yunho
A stable radical within a N-Co-N core.
Chemical communications (Cambridge, England), 2024, 60, 9970-9973
7133507 CIFC46 H47 Co F12 N11 P2R 3 c :H41.229; 41.229; 20.2204
90; 90; 120
29766Bhandari, Anirban; Park, Gyeong Min; Lee, Heui Beom; Hong, Sugyeong; Kim, Sun Hee; Byon, Hye Ryung; Lee, Yunho
A stable radical within a N-Co-N core.
Chemical communications (Cambridge, England), 2024, 60, 9970-9973
7133508 CIFC20 H24 Ce Cl8 N4P -17.5899; 9.2556; 11.8931
100.578; 104.99; 107.349
738.9Blanes-Díaz, Anamar; Wacker, Jennifer N.; Szymanowski, Jennifer; Bertke, Jeffery A.; Knope, Karah
Isolation of a Chloride-Capped Cerium Polyoxo Nanocluster Built from 52 Metal Ions
Chemical Communications, 2024
7133509 CIFC10 H12 Ce Cl6 N2C 1 2/m 112.993; 8.6538; 7.9621
90; 97.827; 90
886.91Blanes-Díaz, Anamar; Wacker, Jennifer N.; Szymanowski, Jennifer; Bertke, Jeffery A.; Knope, Karah
Isolation of a Chloride-Capped Cerium Polyoxo Nanocluster Built from 52 Metal Ions
Chemical Communications, 2024
7133510 CIFC20 H24 Ce38 Cl50 N4 O92P 1 21/n 118.8106; 18.7789; 28.4413
90; 97.602; 90
9958.4Blanes-Díaz, Anamar; Wacker, Jennifer N.; Szymanowski, Jennifer; Bertke, Jeffery A.; Knope, Karah
Isolation of a Chloride-Capped Cerium Polyoxo Nanocluster Built from 52 Metal Ions
Chemical Communications, 2024
7133511 CIFC0 H0 Ce104 Cl118 N0 O194P 1 2/m 122.2147; 29.7354; 24.3598
90; 102.365; 90
15717.9Blanes-Díaz, Anamar; Wacker, Jennifer N.; Szymanowski, Jennifer; Bertke, Jeffery A.; Knope, Karah
Isolation of a Chloride-Capped Cerium Polyoxo Nanocluster Built from 52 Metal Ions
Chemical Communications, 2024
7133512 CIFC34 H64 Ge N2 O5 Si4P -19.5714; 13.252; 17.5019
97.149; 97.276; 102.064
2127.2Ajithkumar, V. S.; Ghanwat, Pratiksha B.; Saha, Sougata; Pati, Swapan K.; Sen, Sakya S.
Stereodivergent sila-germylenation <i>vs.</i> sila-stannylenation of an internal alkyne.
Chemical communications (Cambridge, England), 2024, 60, 9837-9840
7133513 CIFC30 H56 N2 O4 Si4 SnP 1 21/n 110.2751; 15.191; 25.182
90; 99.29; 90
3879.1Ajithkumar, V. S.; Ghanwat, Pratiksha B.; Saha, Sougata; Pati, Swapan K.; Sen, Sakya S.
Stereodivergent sila-germylenation <i>vs.</i> sila-stannylenation of an internal alkyne.
Chemical communications (Cambridge, England), 2024, 60, 9837-9840
7133514 CIFC80 H104 Na2 O6 Si2P -17.7756; 14.1848; 16.3912
97.316; 100.192; 100.448
1725.94Pennachio, Matthew; Wei, Zheng; Mamada, Masashi; Frigoli, Michel; Petrukhina, Marina A.
Chemical reduction of π-expanded functionalized pentacene: cooperation of side group in alkali metal binding.
Chemical communications (Cambridge, England), 2024, 60, 9526-9529
7133515 CIFC28 H24 Cu F12 N6 O8 S4C 1 2 119.966; 9.159; 11.301
90; 108.602; 90
1958.6Ohara, Yuki; Nishiguchi, Taichi; Zheng, Xin; Noro, Shin-Ichiro; Packwood, Daniel M.; Horike, Satoshi
Entropically driven melting of Cu-based 1D coordination polymers.
Chemical communications (Cambridge, England), 2024, 60, 9833-9836
7133516 CIFC33 H54 N3 P SiP -110.461; 10.611; 16.467
83.31; 87.04; 67.44
1676Kaulage, Sandeep H.; Parvin, Nasrina; Khopade, Kishor V.; Khan, Shabana
A hybrid silylene-Pd catalyst: efficient C-N cross-coupling of sterically bulky amines and chiral amines.
Chemical communications (Cambridge, England), 2024, 60, 9958-9961
7133517 CIFC46 H47 NP 1 21/n 112.506; 23.229; 13.297
90; 114.039; 90
3528Kaulage, Sandeep H.; Parvin, Nasrina; Khopade, Kishor V.; Khan, Shabana
A hybrid silylene-Pd catalyst: efficient C-N cross-coupling of sterically bulky amines and chiral amines.
Chemical communications (Cambridge, England), 2024, 60, 9958-9961
7133518 CIFC19 H25 NC 1 2 123.428; 5.9565; 23.648
90; 101.376; 90
3235.2Kaulage, Sandeep H.; Parvin, Nasrina; Khopade, Kishor V.; Khan, Shabana
A hybrid silylene-Pd catalyst: efficient C-N cross-coupling of sterically bulky amines and chiral amines.
Chemical communications (Cambridge, England), 2024, 60, 9958-9961
7133519 CIFC33 H54 Cl2 N3 P Pd SiP 1 21 111.502; 12.782; 12.058
90; 94.41; 90
1767.5Kaulage, Sandeep H.; Parvin, Nasrina; Khopade, Kishor V.; Khan, Shabana
A hybrid silylene-Pd catalyst: efficient C-N cross-coupling of sterically bulky amines and chiral amines.
Chemical communications (Cambridge, England), 2024, 60, 9958-9961
7133520 CIFC41 H37 NP 1 21/n 110.939; 26.563; 11.124
90; 112.526; 90
2985.7Kaulage, Sandeep H.; Parvin, Nasrina; Khopade, Kishor V.; Khan, Shabana
A hybrid silylene-Pd catalyst: efficient C-N cross-coupling of sterically bulky amines and chiral amines.
Chemical communications (Cambridge, England), 2024, 60, 9958-9961
7133521 CIFC28 H21 NP 21 21 218.6857; 12.012; 37.16
90; 90; 90
3877Kaulage, Sandeep H.; Parvin, Nasrina; Khopade, Kishor V.; Khan, Shabana
A hybrid silylene-Pd catalyst: efficient C-N cross-coupling of sterically bulky amines and chiral amines.
Chemical communications (Cambridge, England), 2024, 60, 9958-9961
7133522 CIFC39 H50 Cl2 N3 P Pd SiP 1 21/n 111.721; 14.864; 21.818
90; 98.244; 90
3761.9Kaulage, Sandeep H.; Parvin, Nasrina; Khopade, Kishor V.; Khan, Shabana
A hybrid silylene-Pd catalyst: efficient C-N cross-coupling of sterically bulky amines and chiral amines.
Chemical communications (Cambridge, England), 2024, 60, 9958-9961
7133523 CIFC37 H48 Cl4 N3 P Pd Si2C 1 2/c 125.422; 11.0674; 33.751
90; 109.835; 90
8933Kaulage, Sandeep H.; Parvin, Nasrina; Khopade, Kishor V.; Khan, Shabana
A hybrid silylene-Pd catalyst: efficient C-N cross-coupling of sterically bulky amines and chiral amines.
Chemical communications (Cambridge, England), 2024, 60, 9958-9961
7133524 CIFC21 H12 Cl3 N3 Se3P 1 21/c 124.4179; 8.94957; 10.6055
90; 97.759; 90
2296.4Chaurasia, Avinash; Kumar, Abhishek
Removal of mercury and lead ions from water using bioinspired N<sub>3</sub>Se<sub>3</sub> type small sized moieties.
Chemical communications (Cambridge, England), 2024, 60, 9841-9844
7133525 CIFC19 H20 O3P 21 21 215.6987; 7.5431; 35.7122
90; 90; 90
1535.12Aynetdinova, Daniya; Jaschinski, Megan; Jenkins, Timothy C.; Donohoe, Timothy J.
HFIP promoted carbo-lactonisation as a new route to functionalised lactones.
Chemical communications (Cambridge, England), 2024, 60, 9997-10000
7133526 CIFC13 H14 O4P 1 21/c 15.7618; 7.2943; 27.0456
90; 93.91; 90
1134.03Aynetdinova, Daniya; Jaschinski, Megan; Jenkins, Timothy C.; Donohoe, Timothy J.
HFIP promoted carbo-lactonisation as a new route to functionalised lactones.
Chemical communications (Cambridge, England), 2024, 60, 9997-10000
7133527 CIFC32 H28 O2P -15.9846; 8.734; 23.1074
94.785; 93.664; 93.898
1197.87Aynetdinova, Daniya; Jaschinski, Megan; Jenkins, Timothy C.; Donohoe, Timothy J.
HFIP promoted carbo-lactonisation as a new route to functionalised lactones.
Chemical communications (Cambridge, England), 2024, 60, 9997-10000
7133528 CIFC25 H21 F3 O2P 1 21 112.0864; 6.0321; 13.7269
90; 92.8739; 90
999.52Aynetdinova, Daniya; Jaschinski, Megan; Jenkins, Timothy C.; Donohoe, Timothy J.
HFIP promoted carbo-lactonisation as a new route to functionalised lactones.
Chemical communications (Cambridge, England), 2024, 60, 9997-10000
7133529 CIFC23 H24 O2P 1 21/n 16.1184; 33.9883; 8.7255
90; 90.5312; 90
1814.42Aynetdinova, Daniya; Jaschinski, Megan; Jenkins, Timothy C.; Donohoe, Timothy J.
HFIP promoted carbo-lactonisation as a new route to functionalised lactones.
Chemical communications (Cambridge, England), 2024, 60, 9997-10000
7133530 CIFC24 H22 O2P 1 21/c 19.3701; 40.8864; 14.5271
90; 94.782; 90
5546.1Aynetdinova, Daniya; Jaschinski, Megan; Jenkins, Timothy C.; Donohoe, Timothy J.
HFIP promoted carbo-lactonisation as a new route to functionalised lactones.
Chemical communications (Cambridge, England), 2024, 60, 9997-10000
7133531 CIFC56 H41 N5 O2P -110.17742; 14.91873; 17.25327
67.1553; 86.4455; 80.1926
2378.85Zhang, Yue; Yu, Jia; Li, Chunbin; Gong, Jianye; Wu, Yifan; Feng, Lina; Chen, Zihan; Sha, Renmanduhu; Jiang, Guoyu; Wang, Jianguo
Thiophene assisted cellular uptake enhancement for highly efficient NIR-II cancer phototheranostics.
Chemical communications (Cambridge, England), 2024, 60, 9942-9945
7133532 CIFC52 H37 N5 O2 S2P -111.5451; 13.6561; 16.0395
103.103; 101.611; 109.468
2214.12Zhang, Yue; Yu, Jia; Li, Chunbin; Gong, Jianye; Wu, Yifan; Feng, Lina; Chen, Zihan; Sha, Renmanduhu; Jiang, Guoyu; Wang, Jianguo
Thiophene assisted cellular uptake enhancement for highly efficient NIR-II cancer phototheranostics.
Chemical communications (Cambridge, England), 2024, 60, 9942-9945
7133533 CIFC531.17 H424.75 N6.79 O256 S48 Zr48P m -3 m35.892; 35.892; 35.892
90; 90; 90
46237.4Wu, Yulun; Gao, Lei; Zhou, Xiao-Cheng; Yu, Xiang; Meng, Ya-Ru; Zuo, Jing-Lin; Su, Jian; Yuan, Shuai
Designing photothermal catalytic systems in multi-component MOFs for enhanced conversion of carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 9825-9828
7133534 CIFC726.02 H459.06 N70.52 O256 S48 Zr48P m -3 m36.1776; 36.1776; 36.1776
90; 90; 90
47349.9Wu, Yulun; Gao, Lei; Zhou, Xiao-Cheng; Yu, Xiang; Meng, Ya-Ru; Zuo, Jing-Lin; Su, Jian; Yuan, Shuai
Designing photothermal catalytic systems in multi-component MOFs for enhanced conversion of carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 9825-9828
7133535 CIFC44 H37 Br4 Cd F N4 O6P b c m13.8988; 21.9666; 27.6464
90; 90; 90
8440.7Wu, Jia-Wei; Qin, Zhen; Dong, Qing-Shu; Young, David James; Hu, Fei-Long; Mi, Yan
Photomechanical responses of coordination polymers regulated by precise organization of the photoactive centers.
Chemical communications (Cambridge, England), 2024, 60, 9978-9981
7133536 CIFC42 H27 Br4 Cd F N2 O4C 1 2/c 131.7904; 13.9507; 17.6164
90; 96.614; 90
7760.8Wu, Jia-Wei; Qin, Zhen; Dong, Qing-Shu; Young, David James; Hu, Fei-Long; Mi, Yan
Photomechanical responses of coordination polymers regulated by precise organization of the photoactive centers.
Chemical communications (Cambridge, England), 2024, 60, 9978-9981
7133537 CIFC42 H27 Br4 Cd F N2 O4C 1 2/c 132.9042; 13.8395; 16.8145
90; 94.843; 90
7629.61Wu, Jia-Wei; Qin, Zhen; Dong, Qing-Shu; Young, David James; Hu, Fei-Long; Mi, Yan
Photomechanical responses of coordination polymers regulated by precise organization of the photoactive centers.
Chemical communications (Cambridge, England), 2024, 60, 9978-9981
7133538 CIFC44 H34 Br4 Cd F N4 O6P b c m14.0326; 22.0287; 27.564
90; 90; 90
8520.6Wu, Jia-Wei; Qin, Zhen; Dong, Qing-Shu; Young, David James; Hu, Fei-Long; Mi, Yan
Photomechanical responses of coordination polymers regulated by precise organization of the photoactive centers.
Chemical communications (Cambridge, England), 2024, 60, 9978-9981
7133539 CIFC43 H85 Co N5 Si3 UP 1 21/c 125.621; 14.0125; 27.1921
90; 94.576; 90
9731.2Seed, John A.; Cleaves, Peter A.; Hatton, Georgina R.; King, David M.; Tuna, Floriana; Wooles, Ashley J.; Chilton, Nicholas F.; Liddle, Stephen T.
Reactivity of a triamidoamine terminal uranium(VI)-nitride with 3d-transition metal metallocenes.
Chemical communications (Cambridge, England), 2024, 60, 9990-9993
7133540 CIFC43 H85 N5 Si3 U VP 1 21/c 119.8279; 23.778; 20.6637
90; 90.1352; 90
9742.2Seed, John A.; Cleaves, Peter A.; Hatton, Georgina R.; King, David M.; Tuna, Floriana; Wooles, Ashley J.; Chilton, Nicholas F.; Liddle, Stephen T.
Reactivity of a triamidoamine terminal uranium(VI)-nitride with 3d-transition metal metallocenes.
Chemical communications (Cambridge, England), 2024, 60, 9990-9993
7133541 CIFC62 H73 F12 N13 Ni2 P2P 1 21/n 121.7635; 13.5055; 22.7364
90; 108.365; 90
6342.5Bhardwaj, Ritu; Choudhury, Joyanta
A phosphine-free molecularly-defined Ni(II) complex in catalytic hydrogenation of CO<sub>2</sub>.
Chemical communications (Cambridge, England), 2024, 60, 10176-10179
7133542 CIFC20 H8 O2 S4R 3 c :H35.575; 35.575; 6.6823
90; 90; 120
7324Adachi, Yohei; Hattori, Yuto; Mikie, Tsubasa; Osaka, Itaru; Ohshita, Joji
Twisted diphenoquinones fused with thiophene rings: thiophene analogs of bianthrone.
Chemical communications (Cambridge, England), 2024, 60, 10410-10413
7133543 CIFC24 H16 O2 S4P 1 21/n 17.1234; 21.199; 13.8456
90; 100.644; 90
2054.8Adachi, Yohei; Hattori, Yuto; Mikie, Tsubasa; Osaka, Itaru; Ohshita, Joji
Twisted diphenoquinones fused with thiophene rings: thiophene analogs of bianthrone.
Chemical communications (Cambridge, England), 2024, 60, 10410-10413
7133544 CIFC36 H40 O2 S4P -112.6446; 15.9134; 16.2007
80.602; 85.926; 88.569
3207.7Adachi, Yohei; Hattori, Yuto; Mikie, Tsubasa; Osaka, Itaru; Ohshita, Joji
Twisted diphenoquinones fused with thiophene rings: thiophene analogs of bianthrone.
Chemical communications (Cambridge, England), 2024, 60, 10410-10413
7133545 CIFC16 H16 N2 O4I 1 2/a 116.6937; 4.8165; 19.6871
90; 109.083; 90
1495.96Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133546 CIFC16 H16 N2 O4I 1 2/a 116.68; 4.7884; 19.65
90; 109.1; 90
1483Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133547 CIFC16 H16 N2 O4I 1 2/a 116.686; 4.6593; 19.75
90; 110.45; 90
1439Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133548 CIFC16 H16 N2 O4I 1 2/a 116.758; 4.3755; 19.955
90; 113.05; 90
1346.4Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133549 CIFC16 H16 N2 O4I 1 2/a 116.72; 4.4815; 19.84
90; 111.79; 90
1380Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133550 CIFC16 H16 N2 O4I 1 2/a 116.89; 3.993; 20.19
90; 115.9; 90
1225Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133551 CIFC16 H16 N2 O4I 1 2/a 116.874; 4.056; 20.17
90; 116.14; 90
1239Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133552 CIFC16 H16 N2 O4I 1 2/a 116.836; 4.1496; 20.12
90; 115.18; 90
1272.1Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133553 CIFC16 H16 N2 O4I 1 2/a 116.79; 4.3174; 19.94
90; 113.2; 90
1329Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133554 CIFC16 H16 N2 O4I 1 2/a 116.72; 4.7728; 19.7
90; 110.1; 90
1476Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133555 CIFC16 H16 N2 O4I 1 2/a 116.7; 4.702; 19.65
90; 110.1; 90
1449Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133556 CIFC16 H16 N2 O4I 1 2/a 116.758; 4.5205; 19.83
90; 111.8; 90
1395Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133557 CIFC16 H16 N2 O4I 1 2/a 116.808; 4.246; 20.027
90; 114.38; 90
1301.8Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133558 CIFC16 H16 N2 O4I 1 2/a 116.73; 4.5924; 19.74
90; 110.9; 90
1417Patyk-Kaźmierczak, Ewa; Kaźmierczak, Michał
Metal-free negative linear compressibility (NLC) material - the cocrystal of 1,2-bis(4-pyridyl)ethane and fumaric acid.
Chemical communications (Cambridge, England), 2024, 60, 10310-10313
7133559 CIFC16 H18 F N O3P 1 21 17.2717; 6.1735; 17.314
90; 100.127; 90
765.15Mao, Wei-Xin; Zhou, Long-Xing; Deng, Xin; Lan, Jin-Fei; Song, Xian-Jiang; Zhang, Han-Yue
H/F substitution achieves high piezoelectricity in enantiomeric molecular crystals.
Chemical communications (Cambridge, England), 2024, 60, 10172-10175
7133560 CIFC16 H19 N O3P 21 21 216.1046; 7.3469; 33.6375
90; 90; 90
1508.64Mao, Wei-Xin; Zhou, Long-Xing; Deng, Xin; Lan, Jin-Fei; Song, Xian-Jiang; Zhang, Han-Yue
H/F substitution achieves high piezoelectricity in enantiomeric molecular crystals.
Chemical communications (Cambridge, England), 2024, 60, 10172-10175
7133561 CIFC16 H18 F N O3P 1 21 17.282; 6.1726; 17.307
90; 100.162; 90
765.73Mao, Wei-Xin; Zhou, Long-Xing; Deng, Xin; Lan, Jin-Fei; Song, Xian-Jiang; Zhang, Han-Yue
H/F substitution achieves high piezoelectricity in enantiomeric molecular crystals.
Chemical communications (Cambridge, England), 2024, 60, 10172-10175
7133562 CIFC16 H18 F N O3P 1 21 17.2717; 6.3005; 17.295
90; 99.245; 90
782.1Mao, Wei-Xin; Zhou, Long-Xing; Deng, Xin; Lan, Jin-Fei; Song, Xian-Jiang; Zhang, Han-Yue
H/F substitution achieves high piezoelectricity in enantiomeric molecular crystals.
Chemical communications (Cambridge, England), 2024, 60, 10172-10175
7133563 CIFC16 H19 N O3P 1 21/c 112.0189; 6.0835; 20.734
90; 90.471; 90
1515.96Mao, Wei-Xin; Zhou, Long-Xing; Deng, Xin; Lan, Jin-Fei; Song, Xian-Jiang; Zhang, Han-Yue
H/F substitution achieves high piezoelectricity in enantiomeric molecular crystals.
Chemical communications (Cambridge, England), 2024, 60, 10172-10175
7133564 CIFC16 H19 N O3P 21 21 216.1092; 7.3483; 33.6266
90; 90; 90
1509.57Mao, Wei-Xin; Zhou, Long-Xing; Deng, Xin; Lan, Jin-Fei; Song, Xian-Jiang; Zhang, Han-Yue
H/F substitution achieves high piezoelectricity in enantiomeric molecular crystals.
Chemical communications (Cambridge, England), 2024, 60, 10172-10175
7133565 CIFC16 H18 F N O3P 1 21 17.275; 6.2945; 17.3045
90; 99.161; 90
782.31Mao, Wei-Xin; Zhou, Long-Xing; Deng, Xin; Lan, Jin-Fei; Song, Xian-Jiang; Zhang, Han-Yue
H/F substitution achieves high piezoelectricity in enantiomeric molecular crystals.
Chemical communications (Cambridge, England), 2024, 60, 10172-10175
7133566 CIFC16 H18 F N O3P 1 21/c 112.2351; 6.075; 20.639
90; 91.293; 90
1533.67Mao, Wei-Xin; Zhou, Long-Xing; Deng, Xin; Lan, Jin-Fei; Song, Xian-Jiang; Zhang, Han-Yue
H/F substitution achieves high piezoelectricity in enantiomeric molecular crystals.
Chemical communications (Cambridge, England), 2024, 60, 10172-10175
7133567 CIFC104 H56 Fe2 N8 OI 1 2/a 118.5357; 22.5645; 21.6949
90; 114.868; 90
8232.5Curet, Leonard; Foix, Dominique; Palomares, Emilio; Billon, Laurent; Viterisi, Aurelien
Porphyrin-silver acetylide cluster catalysts with dual active sites for the electrochemical reduction of CO<sub>2</sub>.
Chemical communications (Cambridge, England), 2024, 60, 10168-10171
7133568 CIFC20 H13 Br Mn N5 O3P -17.9986; 11.2283; 12.0453
75.135; 71.203; 79.42
983.78Das, Chandan; Ghosh, Suchismita; Biswas, Rathindranath; Lahiri, Goutam K.; Dutta, Arnab
A ligand-modulated photostable Mn(I)-carbonyl complex for preferential conversion of CO<sub>2</sub> to CO in water.
Chemical communications (Cambridge, England), 2024, 60, 10492-10495
7133569 CIFC15 Br Mn N6 O3P c a 2150.2984; 6.8837; 9.6648
90; 90; 90
3346.33Das, Chandan; Ghosh, Suchismita; Biswas, Rathindranath; Lahiri, Goutam K.; Dutta, Arnab
A ligand-modulated photostable Mn(I)-carbonyl complex for preferential conversion of CO<sub>2</sub> to CO in water.
Chemical communications (Cambridge, England), 2024, 60, 10492-10495
7133570 CIFC21 H19 I N6P 1 21/c 19.2634; 11.5165; 19.7935
90; 95.013; 90
2103.53Singh, Sapna; Velloth, Archana; Rajani, ?; Goyal, Manu; Kaur, Navneet; Singh, Sanjay; Venkataramani, Sugumar
Neutral and ionic <i>N</i>-methyl phenylazo-3,5-(di-2-pyridyl)pyrazole photoswitches: probes for reversible pH modulation by light.
Chemical communications (Cambridge, England), 2024, 60, 10776-10779
7133571 CIFC22 H21 I N6P 1 21/c 111.6528; 18.0105; 10.8343
90; 106.939; 90
2175.2Singh, Sapna; Velloth, Archana; Rajani, ?; Goyal, Manu; Kaur, Navneet; Singh, Sanjay; Venkataramani, Sugumar
Neutral and ionic <i>N</i>-methyl phenylazo-3,5-(di-2-pyridyl)pyrazole photoswitches: probes for reversible pH modulation by light.
Chemical communications (Cambridge, England), 2024, 60, 10776-10779
7133572 CIFC9 H22 Cu2 I4 N2P 1 21 16.7267; 8.4253; 16.8186
90; 96.173; 90
947.66Gong, Zhongliang; Zhang, Jie; Liu, Ying-Yue; Zhang, Lu-Xin; Zhang, Qing; Xiao, Lingyun; Cao, Bingqiang; Hu, Bing; Lei, Xiao-Wu
One-dimensional hybrid copper halides with high-efficiency photoluminescence as scintillator.
Chemical communications (Cambridge, England), 2024, 60, 10528-10531
7133573 CIFC9 H11 N11 O4C 1 2/c 134.451; 4.6905; 20.015
90; 118.803; 90
2834.1Yang, Pengju; Zheng, Xiaoxiao; Zhang, Guojie; Lei, Caijing; Cheng, Guangbin; Yang, Hongwei
Construction of heterocycle-triazolotriazine framework energetic compounds: towards novel high-performance explosives.
Chemical communications (Cambridge, England), 2024, 60, 10588-10591
7133574 CIFC7 H4 N10 O4P b c n15.467; 6.7622; 20.528
90; 90; 90
2147Yang, Pengju; Zheng, Xiaoxiao; Zhang, Guojie; Lei, Caijing; Cheng, Guangbin; Yang, Hongwei
Construction of heterocycle-triazolotriazine framework energetic compounds: towards novel high-performance explosives.
Chemical communications (Cambridge, England), 2024, 60, 10588-10591
7133575 CIFC6 H7 N11 O6P 1 21/n 19.966; 13.36; 18.602
90; 94.827; 90
2468Yang, Pengju; Zheng, Xiaoxiao; Zhang, Guojie; Lei, Caijing; Cheng, Guangbin; Yang, Hongwei
Construction of heterocycle-triazolotriazine framework energetic compounds: towards novel high-performance explosives.
Chemical communications (Cambridge, England), 2024, 60, 10588-10591
7133576 CIFC17 H19 B Cu N6 O2 SI 1 a 117.1231; 8.8768; 13.2163
90; 92.837; 90
2006.39Lu, Chen; Hong, Qin-Long; Zhang, Hai-Xia; Zhang, Jian
Enhancing CO<sub>2</sub> electroreduction to ethylene <i>via</i> microenvironment regulation in boron-imidazolate frameworks.
Chemical communications (Cambridge, England), 2024, 60, 10204-10207
7133577 CIFC17 H19 B Cu N6 O2 SI 1 a 112.9474; 8.9144; 17.0439
90; 94.799; 90
1960.28Lu, Chen; Hong, Qin-Long; Zhang, Hai-Xia; Zhang, Jian
Enhancing CO<sub>2</sub> electroreduction to ethylene <i>via</i> microenvironment regulation in boron-imidazolate frameworks.
Chemical communications (Cambridge, England), 2024, 60, 10204-10207
7133578 CIFC18 H19 B Cu N6 O3I 1 a 112.6893; 8.8027; 17.1269
90; 92.777; 90
1910.83Lu, Chen; Hong, Qin-Long; Zhang, Hai-Xia; Zhang, Jian
Enhancing CO<sub>2</sub> electroreduction to ethylene <i>via</i> microenvironment regulation in boron-imidazolate frameworks.
Chemical communications (Cambridge, England), 2024, 60, 10204-10207
7133579 CIFC17 H19 B Cu N6 O3I 1 a 112.5552; 8.8103; 17.1609
90; 92.038; 90
1897.05Lu, Chen; Hong, Qin-Long; Zhang, Hai-Xia; Zhang, Jian
Enhancing CO<sub>2</sub> electroreduction to ethylene <i>via</i> microenvironment regulation in boron-imidazolate frameworks.
Chemical communications (Cambridge, England), 2024, 60, 10204-10207
7133580 CIFC17 H13 N O2 S SeP 1 21/n 15.852; 19.044; 14.544
90; 101.05; 90
1590.81Chen, Jiabin; Bai, Xiaoyan; Jiang, Haobo; Zhao, Cong; Li, Ya; Chu, Mingming; Li, Yiming; Zhang, Min; Chen, Lu
Metal-free radical selenothiocyanation of terminal and internal alkynes.
Chemical communications (Cambridge, England), 2024, 60, 10196-10199
7133581 CIFC27 H30 N2 O2P 1 21/n 110.0243; 12.5308; 18.4588
90; 90.581; 90
2318.54Thalakottukara, Dolly David; Gandhi, Thirumanavelan
Engaging vinylene carbonate in ruthenium-catalyzed regioselective C-4 methylenation and C-8 formylmethylation of isoquinolinones.
Chemical communications (Cambridge, England), 2024, 60, 10358-10361
7133582 CIFC35 H30 N2 O2P -110.4851; 11.5807; 13.2811
66.245; 74.285; 70.005
1370.34Thalakottukara, Dolly David; Gandhi, Thirumanavelan
Engaging vinylene carbonate in ruthenium-catalyzed regioselective C-4 methylenation and C-8 formylmethylation of isoquinolinones.
Chemical communications (Cambridge, England), 2024, 60, 10358-10361
7133583 CIFC17 H13 Cl N2 O2P 1 21/n 111.441; 13.07; 20.184
90; 105.086; 90
2914.2Das, Krishna Kanta; Hajra, Alakananda
Non-directed oxidative annulation of 2-arylindazoles with electron deficient olefins <i>via</i> visible light photocatalysis.
Chemical communications (Cambridge, England), 2024, 60, 10402-10405
7133584 CIFC24 H36 N12 O4 W Zn1.5P -19.8046; 11.0611; 16.2733
85.355; 83.387; 68.662
1631.46Jędrzejowska, Katarzyna; Kobylarczyk, Jedrzej; Muzioł, Tadeusz M; Nowicka, Beata; Jędrzejowski, Damian; Matoga, Dariusz; Gaweł, Bartłomiej; Podgajny, Robert
Exploring porosity in a flexible 3D organic-inorganic {ZnII3(4DPNDI)[W<sup>V</sup>(CN)<sub>8</sub>]<sub>2</sub>} coordination network.
Chemical communications (Cambridge, England), 2024, 60, 10704-10707
7133585 CIFC72 H84 N28 O12 W2 Zn3P -19.7937; 16.0738; 19.6573
103.573; 102.206; 94.073
2916.3Jędrzejowska, Katarzyna; Kobylarczyk, Jedrzej; Muzioł, Tadeusz M; Nowicka, Beata; Jędrzejowski, Damian; Matoga, Dariusz; Gaweł, Bartłomiej; Podgajny, Robert
Exploring porosity in a flexible 3D organic-inorganic {ZnII3(4DPNDI)[W<sup>V</sup>(CN)<sub>8</sub>]<sub>2</sub>} coordination network.
Chemical communications (Cambridge, England), 2024, 60, 10704-10707
7133586 CIFC116 H138 B Bi2 Cl3 F24C 1 2/c 134.1234; 18.2693; 19.4972
90; 108.812; 90
11505.5Kuziola, Jennifer; Nöthling, Nils; Leutzsch, Markus; Cornella, Josep
Synthesis and characterization of chlorotriarylbismuthonium salts.
Chemical communications (Cambridge, England), 2024, 60, 10532-10535
7133587 CIFC24 H27 Bi Cl2P b c n15.9412; 10.4632; 13.6006
90; 90; 90
2268.53Kuziola, Jennifer; Nöthling, Nils; Leutzsch, Markus; Cornella, Josep
Synthesis and characterization of chlorotriarylbismuthonium salts.
Chemical communications (Cambridge, England), 2024, 60, 10532-10535
7133588 CIFC64 H50 B Bi Cl F24 N OP 110.8125; 12.0526; 13.0336
91.274; 104.828; 99.677
1614.8Kuziola, Jennifer; Nöthling, Nils; Leutzsch, Markus; Cornella, Josep
Synthesis and characterization of chlorotriarylbismuthonium salts.
Chemical communications (Cambridge, England), 2024, 60, 10532-10535
7133589 CIFC27 H33 Bi Cl2P -18.7522; 16.926; 18.92
110.973; 97.457; 95.362
2565.2Kuziola, Jennifer; Nöthling, Nils; Leutzsch, Markus; Cornella, Josep
Synthesis and characterization of chlorotriarylbismuthonium salts.
Chemical communications (Cambridge, England), 2024, 60, 10532-10535
7133590 CIFC56 H39 B Bi Cl F24P 1 21/c 118.1228; 15.8254; 20.0417
90; 106.109; 90
5522.3Kuziola, Jennifer; Nöthling, Nils; Leutzsch, Markus; Cornella, Josep
Synthesis and characterization of chlorotriarylbismuthonium salts.
Chemical communications (Cambridge, England), 2024, 60, 10532-10535
7133591 CIFC42 H63 Bi Cl2P 31 2 110.7948; 10.7948; 30.6951
90; 90; 120
3097.6Kuziola, Jennifer; Nöthling, Nils; Leutzsch, Markus; Cornella, Josep
Synthesis and characterization of chlorotriarylbismuthonium salts.
Chemical communications (Cambridge, England), 2024, 60, 10532-10535
7133592 CIFC68 H42 B Bi2 Cl3 F24P -112.9043; 14.639; 20.359
108.297; 98.848; 94.297
3576.8Kuziola, Jennifer; Nöthling, Nils; Leutzsch, Markus; Cornella, Josep
Synthesis and characterization of chlorotriarylbismuthonium salts.
Chemical communications (Cambridge, England), 2024, 60, 10532-10535
7133593 CIFC24 H42 N2 O Si2 SnC 1 2/c 123.4081; 9.8502; 24.8391
90; 117.035; 90
5101.44Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133594 CIFC35 H52 N2 OP 1 21/n 113.3416; 11.502; 20.3224
90; 95.952; 90
3101.76Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133595 CIFC24 H35 N3P 1 21/c 114.7377; 12.0636; 12.0363
90; 101.957; 90
2093.5Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133596 CIFC58 H97 N3 O3.5 Si2 SnP b c n25.1156; 18.2987; 24.195
90; 90; 90
11119.6Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133597 CIFC24 H42 N2 O Si2 SnP -112.0306; 12.477; 18.1078
101.088; 90.514; 107.761
2533.55Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133598 CIFC49 H77 N3 O3 Si2 SnI 2 2 215.85; 25.75; 28.57
90; 90; 90
11660Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133599 CIFC48 H84 N4 O2 Si4 Sn2P 1 21/c 113.8814; 15.8082; 12.1292
90; 108.98; 90
2516.92Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133600 CIFC60 H89 N3 O Si2 SnP 1 21/n 112.7009; 21.8593; 19.9906
90; 96.796; 90
5511.05Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133601 CIFC35.5 H55 Br Mg O2P -111.65; 16.27; 20.41
110.1; 90.2; 110.9
3358.7Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133602 CIFC48 H77 N3 O Si2 SnP -111.1935; 12.7879; 16.5797
76.517; 79.309; 82.645
2258.83Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133603 CIFC42 H64 N6 O Si2 SnP -110.0691; 12.574; 18.6212
100.696; 91.93; 93.539
2309.78Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133604 CIFC66 H102 N4 O4 Si4 Sn2P -112.0275; 12.2587; 12.5878
76.54; 65.263; 87.402
1636.51Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133605 CIFC62 H100 N4 O2 S2 Si4 Sn2P 1 21/c 115.66; 17.71; 12.13
90; 107.76; 90
3203.8Evans, Matthew J.; Parr, Joseph M.; Nguyen, Dat T.; Jones, Cameron
An isolable stannaimine and its cycloaddition/metathesis reactions with carbon dioxide.
Chemical communications (Cambridge, England), 2024, 60, 10350-10353
7133606 CIFC H4 F7 O2 S SbP c a 2113.5681; 10.8817; 22.3347
90; 90; 90
3297.6Hollenwäger, Dirk; Bockmair, Valentin; Kornath, Andreas J.
The electrophilic methylating agent [SO<sub>2</sub>Me]<sup>+</sup> parent of two cationic species.
Chemical communications (Cambridge, England), 2024, 60, 10148-10151
7133607 CIFC2 H6 F12 O2 S Sb2P 1 21/n 19.7473; 12.6004; 10.6035
90; 100.743; 90
1279.5Hollenwäger, Dirk; Bockmair, Valentin; Kornath, Andreas J.
The electrophilic methylating agent [SO<sub>2</sub>Me]<sup>+</sup> parent of two cationic species.
Chemical communications (Cambridge, England), 2024, 60, 10148-10151
7133608 CIFC26 H26 OP -15.3391; 11.8521; 15.6974
80.943; 87.184; 84.844
976.35Samanta, Arup; Chaubey, Amit; Pal, Debjyoti; Majhi, Krishna; Srimani, Dipankar
Redox-enabled cooperative catalysis by activating secondary alcohols using low-valent Zn complexes.
Chemical communications (Cambridge, England), 2024, 60, 10398-10401
7133609 CIFC60 H68 Br8 N12 S4 Zn4P 1 21/c 17.58; 12.603; 19.172
90; 92.335; 90
1830Samanta, Arup; Chaubey, Amit; Pal, Debjyoti; Majhi, Krishna; Srimani, Dipankar
Redox-enabled cooperative catalysis by activating secondary alcohols using low-valent Zn complexes.
Chemical communications (Cambridge, England), 2024, 60, 10398-10401
7133610 CIFC11 H10 Br2 N4 ZnP -17.696; 7.9855; 11.6761
76.839; 84.112; 81.127
688.66Samanta, Arup; Chaubey, Amit; Pal, Debjyoti; Majhi, Krishna; Srimani, Dipankar
Redox-enabled cooperative catalysis by activating secondary alcohols using low-valent Zn complexes.
Chemical communications (Cambridge, England), 2024, 60, 10398-10401
7133611 CIFC22 H34 OP 1 21/c 111.736; 6.162; 27.346
90; 92.424; 90
1975.8Samanta, Arup; Chaubey, Amit; Pal, Debjyoti; Majhi, Krishna; Srimani, Dipankar
Redox-enabled cooperative catalysis by activating secondary alcohols using low-valent Zn complexes.
Chemical communications (Cambridge, England), 2024, 60, 10398-10401
7133612 CIFC27 H23 Cl N2 O2P 1 21/n 19.8079; 20.5558; 22.6273
90; 94.844; 90
4545.6Dong, Yujie; Liu, Jun; Ning, Rongjin; Yang, Fazhou; Zhang, Cheng; Guo, Hongchao
Pd-catalyzed sequential intramolecular annulation/intermolecular [3+2] cycloaddition of 5-allenyloxazolidine-2,4-diones with dipoles: synthesis of spiroheterocycles.
Chemical communications (Cambridge, England), 2024, 60, 10516-10519
7133613 CIFC27 H23.5 Cl N2 O3.25P -19.2073; 14.43; 18.0454
76.612; 83.712; 82.66
2305.31Dong, Yujie; Liu, Jun; Ning, Rongjin; Yang, Fazhou; Zhang, Cheng; Guo, Hongchao
Pd-catalyzed sequential intramolecular annulation/intermolecular [3+2] cycloaddition of 5-allenyloxazolidine-2,4-diones with dipoles: synthesis of spiroheterocycles.
Chemical communications (Cambridge, England), 2024, 60, 10516-10519
7133614 CIFC33 H26 Cl N3 O2P 1 21/c 111.1281; 17.8377; 13.675
90; 102.387; 90
2651.29Dong, Yujie; Liu, Jun; Ning, Rongjin; Yang, Fazhou; Zhang, Cheng; Guo, Hongchao
Pd-catalyzed sequential intramolecular annulation/intermolecular [3+2] cycloaddition of 5-allenyloxazolidine-2,4-diones with dipoles: synthesis of spiroheterocycles.
Chemical communications (Cambridge, England), 2024, 60, 10516-10519
7133615 CIFC25 H27 N O2P 1 21/c 111.3592; 8.7279; 21.5003
90; 93.109; 90
2128.44Ye, Youwan; Zhang, Xin; Kong, Peng; Yuan, Yong; Zhao, Xiaolong; Huo, Congde
Radical-polar crossover reaction of glycine derivatives.
Chemical communications (Cambridge, England), 2024, 60, 10378-10381
7133616 CIFC16 H16 Cl I O4P -18.2223; 10.3432; 11.023
93.878; 97.956; 110.091
865.22Zhu, Shaoqun; Jia, Lizi; Cheng, Qi; Han, Ying; Sun, Qiu; Yu, Huaguang; Chen, Xiaoyun; Hou, Hong
Dispersion-induced cooperative hydrogen atom transfer for radical iodoalkylation.
Chemical communications (Cambridge, England), 2024, 60, 10772-10775
7133617 CIFC46 H60 N4 Y2P 1 21/n 19.44889; 17.36119; 12.52981
90; 97.9313; 90
2035.78Delano, 4th, Francis; Demir, Selvan
Implementation of 2,2'-azobispyridine radical mono- and dianions in dinuclear rare earth metal complexes.
Chemical communications (Cambridge, England), 2024
7133618 CIFC81.5 H94 B Cl2 N4 Y2P 1 21/c 113.24606; 25.0683; 21.28315
90; 91.9119; 90
7063.27Delano, 4th, Francis; Demir, Selvan
Implementation of 2,2'-azobispyridine radical mono- and dianions in dinuclear rare earth metal complexes.
Chemical communications (Cambridge, England), 2024
7133619 CIFC29 H26 Cl Eu3 N4 O25P 1 21/c 111.8426; 14.2179; 24.756
90; 98.899; 90
4118.2Gao, Yifan; Gu, Zhizhuo; Sun, Xiaoling; Pang, Jiaying; Gong, Liaokuo; Xia, Lian; Qu, Fengli
Dimensional regulation of lanthanide metal-organic frameworks and their application in bacterial detection.
Chemical communications (Cambridge, England), 2024, 60, 10684-10687
7133620 CIFC38 H44 Cl6 N8 O6C 1 2/c 119.3748; 14.5735; 16.486
90; 115.758; 90
4192.44Alimi, Lukman O.; Liu, Xin; Zhang, Gengwu; Moosa, Basem; Khashab, Niveen M.
Polar organic cages for efficiently separating azeotropic mixtures.
Chemical communications (Cambridge, England), 2024, 60, 10768-10771
7133621 CIFC43 H50 N8 O6P 1 21/c 113.658; 9.8012; 30.782
90; 99.251; 90
4067Alimi, Lukman O.; Liu, Xin; Zhang, Gengwu; Moosa, Basem; Khashab, Niveen M.
Polar organic cages for efficiently separating azeotropic mixtures.
Chemical communications (Cambridge, England), 2024, 60, 10768-10771
7133622 CIFC36 H42 N8 O6P 1 21/n 113.685; 16.419; 15.856
90; 102.268; 90
3481.4Alimi, Lukman O.; Liu, Xin; Zhang, Gengwu; Moosa, Basem; Khashab, Niveen M.
Polar organic cages for efficiently separating azeotropic mixtures.
Chemical communications (Cambridge, England), 2024, 60, 10768-10771
7133623 CIFC43 H50 N8 O6P 1 21/c 113.5377; 9.7771; 30.4812
90; 99.479; 90
3979.4Alimi, Lukman O.; Liu, Xin; Zhang, Gengwu; Moosa, Basem; Khashab, Niveen M.
Polar organic cages for efficiently separating azeotropic mixtures.
Chemical communications (Cambridge, England), 2024, 60, 10768-10771
7133624 CIFC38 H46 Cl4 N8 O6P 1 21/c 116.3524; 14.335; 18.8597
90; 113.765; 90
4046.1Alimi, Lukman O.; Liu, Xin; Zhang, Gengwu; Moosa, Basem; Khashab, Niveen M.
Polar organic cages for efficiently separating azeotropic mixtures.
Chemical communications (Cambridge, England), 2024, 60, 10768-10771
7133625 CIFC23 H16 N2 OP b c a9.5854; 17.6825; 21.0981
90; 90; 90
3576Navaneetha, N.; Munakala, Anandarao; Chegondi, Rambabu
Ag(I)-catalyzed diastereoselective oxidative cyclopropanation of prochiral alkyne-tethered 1,3-dicarbonitriles.
Chemical communications (Cambridge, England), 2024, 60, 10708-10711
7133626 CIFC16 H15 B Fe N2C 1 2/c 111.325; 12.058; 10.19
90; 110.437; 90
1303.9Schneider, Johannes Stephan; Helten, Holger
Hybrid materials comprising ferrocene and diaminoborane moieties: linear concatenation versus macrocyclization
Chemical Communications, 2024
7133627 CIFC19 H21 B Fe N2P 1 21/c 111.157; 17.255; 17.651
90; 104.88; 90
3284Schneider, Johannes Stephan; Helten, Holger
Hybrid materials comprising ferrocene and diaminoborane moieties: linear concatenation versus macrocyclization
Chemical Communications, 2024
7133628 CIFC50 H66 B2 Fe2 N4P -18.9103; 11.73; 12.368
65.001; 71.807; 78.23
1109.1Schneider, Johannes Stephan; Helten, Holger
Hybrid materials comprising ferrocene and diaminoborane moieties: linear concatenation versus macrocyclization
Chemical Communications, 2024
7133629 CIFC29 H31 B Fe2 N2P 1 21/n 111.278; 11.1383; 19.453
90; 95.18; 90
2433.7Schneider, Johannes Stephan; Helten, Holger
Hybrid materials comprising ferrocene and diaminoborane moieties: linear concatenation versus macrocyclization
Chemical Communications, 2024
7133630 CIFC30 H40 N2 O2P 1 21/n 113.2032; 16.3569; 14.4981
90; 93.013; 90
3126.7Zhang, Yi; Yan, Huihui; Zhao, Peng; Chen, Rener; Fang, Weiwei; Wang, Lei; Ma, Yongmin
Eco-friendly α,β-C(sp<sup>3</sup>)-H difunctionalization of tertiary amines <i>via</i> sequential [1,5]-hydride transfer and hetero-Diels-Alder cyclization.
Chemical communications (Cambridge, England), 2024, 60, 10712-10715
7133631 CIFC39 H45 N3 O2P -19.5701; 12.7196; 14.9523
105.788; 92.153; 109.699
1632.07Zhang, Yi; Yan, Huihui; Zhao, Peng; Chen, Rener; Fang, Weiwei; Wang, Lei; Ma, Yongmin
Eco-friendly α,β-C(sp<sup>3</sup>)-H difunctionalization of tertiary amines <i>via</i> sequential [1,5]-hydride transfer and hetero-Diels-Alder cyclization.
Chemical communications (Cambridge, England), 2024, 60, 10712-10715
7133632 CIFC20 H18 N2 OP 1 21/n 18.3251; 19.6723; 10.628
90; 104.751; 90
1683.2Dash, Om Prakash; Garg, Divya; Volla, Chandra M. R.
Rh(III)-catalyzed aldehydic and aryl C-H alkylation with cyclopropanols <i>via</i> C-H/C-C bond activation.
Chemical communications (Cambridge, England), 2024, 60, 10576-10579
7133633 CIFC23 H19 N O3 SP 1 21/c 19.7427; 20.8546; 10.5793
90; 114.951; 90
1948.9Dash, Om Prakash; Garg, Divya; Volla, Chandra M. R.
Rh(III)-catalyzed aldehydic and aryl C-H alkylation with cyclopropanols <i>via</i> C-H/C-C bond activation.
Chemical communications (Cambridge, England), 2024, 60, 10576-10579
7133634 CIFC23 H20 F N O4 SP 1 21/c 121.0724; 8.3789; 11.4598
90; 101.066; 90
1985.8Dash, Om Prakash; Garg, Divya; Volla, Chandra M. R.
Rh(III)-catalyzed aldehydic and aryl C-H alkylation with cyclopropanols <i>via</i> C-H/C-C bond activation.
Chemical communications (Cambridge, England), 2024, 60, 10576-10579
7133635 CIFC25 H32 O6 SeP 1 21 111.3051; 6.2777; 16.4774
90; 97.201; 90
1160.18Geng, Hao; Fu, Ran; Zhou, Ting-Ting; Li, Man; Liu, Yan-Chun; Li, Xiao-Nian; Liu, Yan; Zheng, Yu; Li, Sheng-Hong
Selenium dioxide promoted selenylation/cyclization of leucosceptrane sesterterpenoids.
Chemical communications (Cambridge, England), 2024, 60, 10512-10515
7133636 CIFC25 H32 O7 SeP 21 21 216.4438; 9.1435; 40.8405
90; 90; 90
2406.28Geng, Hao; Fu, Ran; Zhou, Ting-Ting; Li, Man; Liu, Yan-Chun; Li, Xiao-Nian; Liu, Yan; Zheng, Yu; Li, Sheng-Hong
Selenium dioxide promoted selenylation/cyclization of leucosceptrane sesterterpenoids.
Chemical communications (Cambridge, England), 2024, 60, 10512-10515
7133637 CIFC27 H64 Cu3 N6 O38I 4/m26.5441; 26.5441; 37.881
90; 90; 90
26691Wang, Yi-Chao; Chen, Mo-Han; Fan, Zi-Wen; Wang, Yue; Huang, Cai-Xiang; Wang, Hui-Fang; Lang, Jian-Ping; Niu, Zheng
Enhanced water stability of MOFs <i>via</i> multiple hydrogen bonds and their application in water harvesting.
Chemical communications (Cambridge, England), 2024, 60, 10692-10695
7133638 CIFC27 H14 Cu3 N6 O13I 4/m26.5844; 26.5844; 38.103
90; 90; 90
26929Wang, Yi-Chao; Chen, Mo-Han; Fan, Zi-Wen; Wang, Yue; Huang, Cai-Xiang; Wang, Hui-Fang; Lang, Jian-Ping; Niu, Zheng
Enhanced water stability of MOFs <i>via</i> multiple hydrogen bonds and their application in water harvesting.
Chemical communications (Cambridge, England), 2024, 60, 10692-10695
7133639 CIFC27 H30.41 Cu3 N6 O21.2I 4/m26.7494; 26.7494; 38.4189
90; 90; 90
27489.9Wang, Yi-Chao; Chen, Mo-Han; Fan, Zi-Wen; Wang, Yue; Huang, Cai-Xiang; Wang, Hui-Fang; Lang, Jian-Ping; Niu, Zheng
Enhanced water stability of MOFs <i>via</i> multiple hydrogen bonds and their application in water harvesting.
Chemical communications (Cambridge, England), 2024, 60, 10692-10695
7133640 CIFC24 H20 Cl2 N4 O4 RuP n n n :29.18; 10.45; 12.42
90; 90; 90
1191.46Gearing, Hayden B.; Söhnel, Tilo; Young, Paul; Lisboa, Lynn; Wright, L. James; Crowley, James D.; Hartinger, Christian G.
Modulating the guest binding ability within mixed-coordination geometry [Pd(μ-L)<sub>4</sub>RuCl<sub>2</sub>]<sup>2+</sup> and [Pd(μ-L)<sub>4</sub>Pt]<sup>4+</sup> cage architectures.
Chemical communications (Cambridge, England), 2024, 60, 10950-10953
7133641 CIFC74 H62 B4 Cl2 F16 N16 O5 Pd Ru SP 4/n :217.5837; 17.5837; 16.0276
90; 90; 90
4955.52Gearing, Hayden B.; Söhnel, Tilo; Young, Paul; Lisboa, Lynn; Wright, L. James; Crowley, James D.; Hartinger, Christian G.
Modulating the guest binding ability within mixed-coordination geometry [Pd(μ-L)<sub>4</sub>RuCl<sub>2</sub>]<sup>2+</sup> and [Pd(μ-L)<sub>4</sub>Pt]<sup>4+</sup> cage architectures.
Chemical communications (Cambridge, England), 2024, 60, 10950-10953
7133642 CIFC80 H80 B4 F16 N16 O8 Pd Pt S4P 1 21/n 119.89755; 18.63351; 23.8075
90; 95.0374; 90
8792.8Gearing, Hayden B.; Söhnel, Tilo; Young, Paul; Lisboa, Lynn; Wright, L. James; Crowley, James D.; Hartinger, Christian G.
Modulating the guest binding ability within mixed-coordination geometry [Pd(μ-L)<sub>4</sub>RuCl<sub>2</sub>]<sup>2+</sup> and [Pd(μ-L)<sub>4</sub>Pt]<sup>4+</sup> cage architectures.
Chemical communications (Cambridge, England), 2024, 60, 10950-10953
7133643 CIFC72 H58 B4 F16 N16 O5 Pd PtP 4/n :215.85; 15.85; 17.74
90; 90; 90
4456.69Gearing, Hayden B.; Söhnel, Tilo; Young, Paul; Lisboa, Lynn; Wright, L. James; Crowley, James D.; Hartinger, Christian G.
Modulating the guest binding ability within mixed-coordination geometry [Pd(μ-L)<sub>4</sub>RuCl<sub>2</sub>]<sup>2+</sup> and [Pd(μ-L)<sub>4</sub>Pt]<sup>4+</sup> cage architectures.
Chemical communications (Cambridge, England), 2024, 60, 10950-10953
7133644 CIFC100 H112 B4 Cl2 F16 N20 O16 Pd RuP 4/n c c :218.90303; 18.90303; 32.3879
90; 90; 90
11573Gearing, Hayden B.; Söhnel, Tilo; Young, Paul; Lisboa, Lynn; Wright, L. James; Crowley, James D.; Hartinger, Christian G.
Modulating the guest binding ability within mixed-coordination geometry [Pd(μ-L)<sub>4</sub>RuCl<sub>2</sub>]<sup>2+</sup> and [Pd(μ-L)<sub>4</sub>Pt]<sup>4+</sup> cage architectures.
Chemical communications (Cambridge, England), 2024, 60, 10950-10953
7133645 CIFC39 H71 Ge K N2 O6 Si3P -112.4586; 13.0885; 17.1275
95.5876; 95.5032; 115.773
2473.14Liu, Chenghuan; Schmidtmann, Marc; Müller, Thomas
Metal ion-driven formation of 2<i>H</i>-silolides and -germolides.
Chemical communications (Cambridge, England), 2024, 60, 11295-11298
7133646 CIFC57.67 H93 K N2 O4.66 Si4P -110.2492; 13.0948; 23.2301
103.325; 91.573; 93.515
3025.3Liu, Chenghuan; Schmidtmann, Marc; Müller, Thomas
Metal ion-driven formation of 2<i>H</i>-silolides and -germolides.
Chemical communications (Cambridge, England), 2024, 60, 11295-11298
7133647 CIFC74 H102 Cu2 N4 Si8P 1 21/n 114.1025; 17.5632; 15.1034
90; 101.596; 90
3664.5Liu, Chenghuan; Schmidtmann, Marc; Müller, Thomas
Metal ion-driven formation of 2<i>H</i>-silolides and -germolides.
Chemical communications (Cambridge, England), 2024, 60, 11295-11298
7133648 CIFC54 H87.5 K N2 O7.25 Si4P -114.3502; 29.6584; 31.1403
64.5446; 87.8632; 80.4353
11791.8Liu, Chenghuan; Schmidtmann, Marc; Müller, Thomas
Metal ion-driven formation of 2<i>H</i>-silolides and -germolides.
Chemical communications (Cambridge, England), 2024, 60, 11295-11298
7133649 CIFC49 H75 K N2 O6 Si4 Te2P 1 21/c 121.6369; 11.8608; 22.6135
90; 103.475; 90
5643.6Liu, Chenghuan; Schmidtmann, Marc; Müller, Thomas
Metal ion-driven formation of 2<i>H</i>-silolides and -germolides.
Chemical communications (Cambridge, England), 2024, 60, 11295-11298
7133650 CIFC29 H22 N8 O6P 1 21/c 113.9468; 12.3892; 16.6087
90; 110.401; 90
2689.81Juneja, Navkiran Kaur; Hastings, Josephine L.; Stoll, William B.; Zarella, Salvatore; Sornberger, Parker; Brennessel, William W.; Catalano, Luca; Korter, Timothy Michael; Ruggiero, Michael T.
Fundamentally Intertwined: Anharmonic Intermolecular Interactions Dictate Both Thermal Expansion and Terahertz Lattice Dynamics in Molecular Crystals
Chemical Communications, 2024
7133651 CIFC29 H22 N8 O6P 1 21/c 114.0001; 12.386; 16.6263
90; 110.087; 90
2707.72Juneja, Navkiran Kaur; Hastings, Josephine L.; Stoll, William B.; Zarella, Salvatore; Sornberger, Parker; Brennessel, William W.; Catalano, Luca; Korter, Timothy Michael; Ruggiero, Michael T.
Fundamentally Intertwined: Anharmonic Intermolecular Interactions Dictate Both Thermal Expansion and Terahertz Lattice Dynamics in Molecular Crystals
Chemical Communications, 2024
7133652 CIFC29 H22 N8 O6P 1 21/c 113.9761; 12.3862; 16.6209
90; 110.219; 90
2699.96Juneja, Navkiran Kaur; Hastings, Josephine L.; Stoll, William B.; Zarella, Salvatore; Sornberger, Parker; Brennessel, William W.; Catalano, Luca; Korter, Timothy Michael; Ruggiero, Michael T.
Fundamentally Intertwined: Anharmonic Intermolecular Interactions Dictate Both Thermal Expansion and Terahertz Lattice Dynamics in Molecular Crystals
Chemical Communications, 2024
7133653 CIFC29 H22 N8 O6P 1 21/c 113.9549; 12.3882; 16.6141
90; 110.344; 90
2693.02Juneja, Navkiran Kaur; Hastings, Josephine L.; Stoll, William B.; Zarella, Salvatore; Sornberger, Parker; Brennessel, William W.; Catalano, Luca; Korter, Timothy Michael; Ruggiero, Michael T.
Fundamentally Intertwined: Anharmonic Intermolecular Interactions Dictate Both Thermal Expansion and Terahertz Lattice Dynamics in Molecular Crystals
Chemical Communications, 2024
7133654 CIFC29 H22 N8 O6P 1 21/c 114.0295; 12.3839; 16.6344
90; 109.943; 90
2716.75Juneja, Navkiran Kaur; Hastings, Josephine L.; Stoll, William B.; Zarella, Salvatore; Sornberger, Parker; Brennessel, William W.; Catalano, Luca; Korter, Timothy Michael; Ruggiero, Michael T.
Fundamentally Intertwined: Anharmonic Intermolecular Interactions Dictate Both Thermal Expansion and Terahertz Lattice Dynamics in Molecular Crystals
Chemical Communications, 2024
7133655 CIFC26 H28 O8P 1 21/n 111.6135; 5.8166; 16.6086
90; 92.064; 90
1121.2Kumar, Manoj; Singh, Shubham; Subramanian, Parthasarathi
Synthesis of Dispiro-Orthoester via an Acetal Oxo-Carbenium Ion
Chemical Communications, 2024
7133656 CIFC2.3 H2.4 O0.8C 1 2/c 134.482; 5.8066; 10.1971
90; 102.891; 90
1990.24Kumar, Manoj; Singh, Shubham; Subramanian, Parthasarathi
Synthesis of Dispiro-Orthoester via an Acetal Oxo-Carbenium Ion
Chemical Communications, 2024
7133657 CIFC1.87 H2.13 Br0.27 O0.53P 1 21/c 111.166; 10.3032; 13.023
90; 96.244; 90
1489.35Kumar, Manoj; Singh, Shubham; Subramanian, Parthasarathi
Synthesis of Dispiro-Orthoester via an Acetal Oxo-Carbenium Ion
Chemical Communications, 2024
7133658 CIFC2.33 H2.67 O0.67P 1 21/n 16.6173; 18.0893; 10.03
90; 92.58; 90
1199.4Kumar, Manoj; Singh, Shubham; Subramanian, Parthasarathi
Synthesis of Dispiro-Orthoester via an Acetal Oxo-Carbenium Ion
Chemical Communications, 2024
7133659 CIFC28 H32 O8C 1 2/c 127.5396; 5.7677; 20.9082
90; 129.818; 90
2550.85Kumar, Manoj; Singh, Shubham; Subramanian, Parthasarathi
Synthesis of Dispiro-Orthoester via an Acetal Oxo-Carbenium Ion
Chemical Communications, 2024
7133660 CIFC54 H46 Cl8 P2 ReC 1 2/c 112.0537; 23.1354; 20.0755
90; 102.929; 90
5456.5Tsang, Long Yiu; Kong, Lam Cheung; Sung, Herman H. Y.; Williams, Ian D.; Jia, Guochen
Oxidation-induced coupling reactions of bi(metallacycloprop-1-ene) complexes.
Chemical communications (Cambridge, England), 2024, 60, 10946-10949
7133661 CIFC54 H44 Br4 Cl6 P2 ReC 1 2/c 112.0887; 24.3009; 19.8541
90; 102.085; 90
5703.21Tsang, Long Yiu; Kong, Lam Cheung; Sung, Herman H. Y.; Williams, Ian D.; Jia, Guochen
Oxidation-induced coupling reactions of bi(metallacycloprop-1-ene) complexes.
Chemical communications (Cambridge, England), 2024, 60, 10946-10949
7133662 CIFC64 H50 Cl4 P2 ReP 1 21/n 115.5823; 22.9599; 18.0278
90; 107.943; 90
6136.06Tsang, Long Yiu; Kong, Lam Cheung; Sung, Herman H. Y.; Williams, Ian D.; Jia, Guochen
Oxidation-induced coupling reactions of bi(metallacycloprop-1-ene) complexes.
Chemical communications (Cambridge, England), 2024, 60, 10946-10949
7133663 CIFC83 H70 Cl18 N2 P2 ReP 1 21/c 119.6823; 18.6829; 24.3283
90; 110.713; 90
8367.8Tsang, Long Yiu; Kong, Lam Cheung; Sung, Herman H. Y.; Williams, Ian D.; Jia, Guochen
Oxidation-induced coupling reactions of bi(metallacycloprop-1-ene) complexes.
Chemical communications (Cambridge, England), 2024, 60, 10946-10949
7133664 CIFC25 H22 Br N O5P 1 21 18.958; 13.864; 9.026
90; 92.036; 90
1120.3Han, Xiao; Hou, Jie; Zhang, Haiyan; Wang, Zhen; Yao, Weijun
Phosphine-catalyzed enantioselective and diastereodivergent [3+2] cyclization for the construction of oxetane dispirooxindole skeletons.
Chemical communications (Cambridge, England), 2024, 60, 10736-10739
7133665 CIFC28 H30 N O6P 21 21 217.8531; 8.9782; 35.617
90; 90; 90
2511.2Han, Xiao; Hou, Jie; Zhang, Haiyan; Wang, Zhen; Yao, Weijun
Phosphine-catalyzed enantioselective and diastereodivergent [3+2] cyclization for the construction of oxetane dispirooxindole skeletons.
Chemical communications (Cambridge, England), 2024, 60, 10736-10739
7133666 CIFC28 H29 N O6P 1 21 18.9244; 10.4924; 13.3388
90; 90.992; 90
1248.84Han, Xiao; Hou, Jie; Zhang, Haiyan; Wang, Zhen; Yao, Weijun
Phosphine-catalyzed enantioselective and diastereodivergent [3+2] cyclization for the construction of oxetane dispirooxindole skeletons.
Chemical communications (Cambridge, England), 2024, 60, 10736-10739
7133667 CIFC44 H30 Cl6 N2 Ni S2C 1 c 122.54; 7.2448; 24.023
90; 95.29; 90
3906.2Singh, Sandhya; Dinesh, Shruthi; Yadav, Archana; Raje, Sakthi; Butcher, Ray J.; Sundararajan, Mahesh; Angamuthu, Raja
Direct observation of arene⋯sulphur dioxide interaction: role of metal ions in electronic modulation for binding and activation.
Chemical communications (Cambridge, England), 2024, 60, 11104-11107
7133668 CIFC44 H30 Cl6 N2 S2 ZnP 1 21/n 111.5194; 14.7126; 24.0486
90; 96.677; 90
4048.1Singh, Sandhya; Dinesh, Shruthi; Yadav, Archana; Raje, Sakthi; Butcher, Ray J.; Sundararajan, Mahesh; Angamuthu, Raja
Direct observation of arene⋯sulphur dioxide interaction: role of metal ions in electronic modulation for binding and activation.
Chemical communications (Cambridge, England), 2024, 60, 11104-11107
7133669 CIFC42 H28 N2 Ni O4 S4P 1 21/n 111.0523; 19.6399; 16.1066
90; 100.267; 90
3440.21Singh, Sandhya; Dinesh, Shruthi; Yadav, Archana; Raje, Sakthi; Butcher, Ray J.; Sundararajan, Mahesh; Angamuthu, Raja
Direct observation of arene⋯sulphur dioxide interaction: role of metal ions in electronic modulation for binding and activation.
Chemical communications (Cambridge, England), 2024, 60, 11104-11107
7133670 CIFC46 H39 Cd N2 O1.5 S2C 1 2/c 131.979; 7.7793; 42.007
90; 91.219; 90
10447.9Singh, Sandhya; Dinesh, Shruthi; Yadav, Archana; Raje, Sakthi; Butcher, Ray J.; Sundararajan, Mahesh; Angamuthu, Raja
Direct observation of arene⋯sulphur dioxide interaction: role of metal ions in electronic modulation for binding and activation.
Chemical communications (Cambridge, England), 2024, 60, 11104-11107
7133671 CIFC56 H36 F6 N2 O8 S2P -18.064; 17.31; 18.08
105.9; 96.56; 94.52
2395Rana, Samim Sohel; Manna, Surajit; Choudhury, Joyanta
Annulated oxazolium anion-π<sup>+</sup> AIEgens.
Chemical communications (Cambridge, England), 2024, 60, 10942-10945
7133672 CIFC35 H24 F6 N O PP 1 21/c 113.9378; 9.0106; 22.5804
90; 98.884; 90
2801.8Rana, Samim Sohel; Manna, Surajit; Choudhury, Joyanta
Annulated oxazolium anion-π<sup>+</sup> AIEgens.
Chemical communications (Cambridge, England), 2024, 60, 10942-10945
7133673 CIFC21 H25 Cl N O RhP 1 21/n 18.8209; 15.115; 14.83
90; 93.286; 90
1974Rana, Samim Sohel; Manna, Surajit; Choudhury, Joyanta
Annulated oxazolium anion-π<sup>+</sup> AIEgens.
Chemical communications (Cambridge, England), 2024, 60, 10942-10945
7133674 CIFC36.5 H24 Cl F9 N O PP 1 21/c 114.5509; 15.3261; 15.5887
90; 109.068; 90
3285.7Rana, Samim Sohel; Manna, Surajit; Choudhury, Joyanta
Annulated oxazolium anion-π<sup>+</sup> AIEgens.
Chemical communications (Cambridge, England), 2024, 60, 10942-10945
7133675 CIFC54.1 H46.9 F12 N2 O4 P2I 41/a :232.0534; 32.0534; 19.7407
90; 90; 90
20282Rana, Samim Sohel; Manna, Surajit; Choudhury, Joyanta
Annulated oxazolium anion-π<sup>+</sup> AIEgens.
Chemical communications (Cambridge, England), 2024, 60, 10942-10945
7133676 CIFC8 H4 Dy4 Na10 O174.5 Sb4 W42P -124.7234; 25.8468; 26.5303
98.669; 110.256; 111.317
14055.2Yang, Guoping; Liu, Haoqi; Chen, Jincao; Lin, Xiaoling; Tan, Kexin; Dong, Yayu; Liu, Yufeng; Wei, Yongge
Dy/Ho-encapsulated tartaric acid-functionalized tungstoantimonates: heterogeneous catalysts for isoindolinone synthesis.
Chemical communications (Cambridge, England), 2024, 60, 10934-10937
7133677 CIFC8 H4 Ho4 Na6.5 O172.75 Sb4 W42P -124.7134; 25.8179; 26.5037
98.714; 110.23; 111.334
14016.5Yang, Guoping; Liu, Haoqi; Chen, Jincao; Lin, Xiaoling; Tan, Kexin; Dong, Yayu; Liu, Yufeng; Wei, Yongge
Dy/Ho-encapsulated tartaric acid-functionalized tungstoantimonates: heterogeneous catalysts for isoindolinone synthesis.
Chemical communications (Cambridge, England), 2024, 60, 10934-10937

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