Crystallography Open Database

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Searching year of publication is 2022

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1564427 CIFC50 H34 N2P 1 21/n 119.525; 9.546; 20.594
90; 114.38; 90
3496Han, Pengbo; Lin, Chengwei; Wang, Kaojin; Qiu, Yanping; Wu, Haozhong; Qin, Anjun; Ma, Dongge; Tang, Ben Zhong
Aggregation-induced emission luminogen with excellent triplet-triplet upconversion efficiency for highly efficient non-doped blue organic light-emitting diodes.
Materials horizons, 2022, 9, 376-382
1564683 CIFC21 H18P -18.321; 9.678; 9.879
94.541; 96.864; 94.634
784.1Fan, Yunhao; Han, Mengmeng; Huang, Arui; Liao, Qiuyan; Tu, Jin; Liu, Xiuxing; Huang, Bohan; Li, Qianqian; Li, Zhen
Multi-photoresponsive triphenylethylene derivatives with photochromism, photodeformation and room temperature phosphorescence.
Materials horizons, 2022, 9, 368-375
1564684 CIFC21 H17 BrP 1 21/c 18.773; 9.273; 20.333
90; 90.317; 90
1654.1Fan, Yunhao; Han, Mengmeng; Huang, Arui; Liao, Qiuyan; Tu, Jin; Liu, Xiuxing; Huang, Bohan; Li, Qianqian; Li, Zhen
Multi-photoresponsive triphenylethylene derivatives with photochromism, photodeformation and room temperature phosphorescence.
Materials horizons, 2022, 9, 368-375
1564685 CIFC21 H15 F3P c a 2131.9; 8.761; 5.796
90; 90; 90
1620Fan, Yunhao; Han, Mengmeng; Huang, Arui; Liao, Qiuyan; Tu, Jin; Liu, Xiuxing; Huang, Bohan; Li, Qianqian; Li, Zhen
Multi-photoresponsive triphenylethylene derivatives with photochromism, photodeformation and room temperature phosphorescence.
Materials horizons, 2022, 9, 368-375
1564686 CIFC21 H14 Br F3P 1 21/c 113.672; 7.976; 16.909
90; 99.786; 90
1817.1Fan, Yunhao; Han, Mengmeng; Huang, Arui; Liao, Qiuyan; Tu, Jin; Liu, Xiuxing; Huang, Bohan; Li, Qianqian; Li, Zhen
Multi-photoresponsive triphenylethylene derivatives with photochromism, photodeformation and room temperature phosphorescence.
Materials horizons, 2022, 9, 368-375
1564687 CIFC21 H16 Br2P 1 21/c 112.88; 8.745; 18.874
90; 121.39; 90
1815Fan, Yunhao; Han, Mengmeng; Huang, Arui; Liao, Qiuyan; Tu, Jin; Liu, Xiuxing; Huang, Bohan; Li, Qianqian; Li, Zhen
Multi-photoresponsive triphenylethylene derivatives with photochromism, photodeformation and room temperature phosphorescence.
Materials horizons, 2022, 9, 368-375
1564688 CIFC21 H13 Br2 F3P 1 21/c 116.448; 6.0973; 19.528
90; 105.073; 90
1891.1Fan, Yunhao; Han, Mengmeng; Huang, Arui; Liao, Qiuyan; Tu, Jin; Liu, Xiuxing; Huang, Bohan; Li, Qianqian; Li, Zhen
Multi-photoresponsive triphenylethylene derivatives with photochromism, photodeformation and room temperature phosphorescence.
Materials horizons, 2022, 9, 368-375
1564845 CIFC90 H102 Cl2 F2 N8 O2 S5C 1 2/c 126.5046; 23.0448; 31.2654
90; 107.646; 90
18198.1Wang, Lai; An, Qiaoshi; Yan, Lu; Bai, Hai-Rui; Jiang, Mengyun; Mahmood, Asif; Yang, Can; Zhi, Hongfu; Wang, Jin-Liang
Non-fullerene acceptors with hetero-dihalogenated terminals induce significant difference in single crystallography and enable binary organic solar cells with 17.5% efficiency
Energy & Environmental Science, 2022, 15, 320-333
1564846 CIFC90 H102 Br2 F2 N8 O2 S5C 1 2/c 126.7059; 23.0515; 31.3331
90; 107.898; 90
18355.5Wang, Lai; An, Qiaoshi; Yan, Lu; Bai, Hai-Rui; Jiang, Mengyun; Mahmood, Asif; Yang, Can; Zhi, Hongfu; Wang, Jin-Liang
Non-fullerene acceptors with hetero-dihalogenated terminals induce significant difference in single crystallography and enable binary organic solar cells with 17.5% efficiency
Energy & Environmental Science, 2022, 15, 320-333
1564847 CIFC90 H102 Br2 Cl2 N8 O2 S5P -116.0896; 17.7032; 17.9514
107.551; 114.327; 90.288
4392.9Wang, Lai; An, Qiaoshi; Yan, Lu; Bai, Hai-Rui; Jiang, Mengyun; Mahmood, Asif; Yang, Can; Zhi, Hongfu; Wang, Jin-Liang
Non-fullerene acceptors with hetero-dihalogenated terminals induce significant difference in single crystallography and enable binary organic solar cells with 17.5% efficiency
Energy & Environmental Science, 2022, 15, 320-333
1564950 CIFC11 H20 Cu F3 O3 S5P 1 21/n 119.3571; 9.1791; 20.0178
90; 93.921; 90
3548.5Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564951 CIFC14 H24 Cl4 Cu F6 O6 S6P 1 21/n 19.4758; 10.1782; 15.084
90; 99.132; 90
1436.4Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564952 CIFC12 H23 Cl2 Co N S4C 1 2/c 121.553; 8.7583; 9.884
90; 98.733; 90
1844.1Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564953 CIFC12 H23 Cu F6 N P S4P -18.9013; 10.1583; 12.8933
71.697; 70.925; 67.975
996.7Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564954 CIFC16 H26 Co F6 N2 O6 S6P 1 21/c 19.7818; 17.6403; 8.0039
90; 91.436; 90
1380.67Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564955 CIFC78 H50 B2 F48 Fe N2 S4P -112.2236; 12.9921; 14.746
74.5207; 87.2647; 66.8668
2071.09Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564956 CIFC11 H22 Cu F3 N2 O3 S3P 1 21/n 18.7939; 14.9481; 13.6317
90; 102.586; 90
1748.9Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564957 CIFC11 H22 Cl2 Cu F6 P S4C 1 2/c 124.959; 9.584; 20.849
90; 126.366; 90
4015.9Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564958 CIFC16 H29 Fe2 I4 N3 S4P b c a13.5519; 19.3693; 22.7518
90; 90; 90
5972.1Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564959 CIFC28 H52 Fe3 I6 N4 S8P 1 21/c 117.8349; 19.1835; 15.1569
90; 101.373; 90
5083.9Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1564960 CIFC34 H40 B Cu S4P 6110.7164; 10.7164; 47.139
90; 90; 120
4688.2Rotärmel, Thomas; Becker, Jonathan; Schindler, Siegfried
Syntheses and investigation of metal complexes with macrocyclic polythioether ligands.
Faraday discussions, 2022, 234, 70-85
1565020 CIFC83 H89 F4 N9 O3 S2 Se2P -111.7514; 17.3977; 19.925
102.675; 98.649; 99.031
3852.2Qi, Feng; Jones, Leighton O.; Jiang, Kui; Jang, Sei-Hum; Kaminsky, Werner; Oh, Jiyeon; Zhang, Hongna; Cai, Zongwei; Yang, Changduk; Kohlstedt, Kevin L.; Schatz, George C.; Lin, Francis R.; Marks, Tobin J.; Jen, Alex K.-Y.
Regiospecific <i>N</i>-alkyl substitution tunes the molecular packing of high-performance non-fullerene acceptors.
Materials horizons, 2022, 9, 403-410
1565021 CIFC88 H99 F4 N9 O3 S2 Se2C 1 2/c 118.8244; 29.3244; 31.439
90; 95.951; 90
17261.2Qi, Feng; Jones, Leighton O.; Jiang, Kui; Jang, Sei-Hum; Kaminsky, Werner; Oh, Jiyeon; Zhang, Hongna; Cai, Zongwei; Yang, Changduk; Kohlstedt, Kevin L.; Schatz, George C.; Lin, Francis R.; Marks, Tobin J.; Jen, Alex K.-Y.
Regiospecific <i>N</i>-alkyl substitution tunes the molecular packing of high-performance non-fullerene acceptors.
Materials horizons, 2022, 9, 403-410
1565022 CIFC81 H85 F4 N9 O2 S2 Se2P 1 21/c 113.938; 52.166; 31.942
90; 99.927; 90
22877Qi, Feng; Jones, Leighton O.; Jiang, Kui; Jang, Sei-Hum; Kaminsky, Werner; Oh, Jiyeon; Zhang, Hongna; Cai, Zongwei; Yang, Changduk; Kohlstedt, Kevin L.; Schatz, George C.; Lin, Francis R.; Marks, Tobin J.; Jen, Alex K.-Y.
Regiospecific <i>N</i>-alkyl substitution tunes the molecular packing of high-performance non-fullerene acceptors.
Materials horizons, 2022, 9, 403-410
1565122 CIFC30 H28 S2P 16.0023; 8.1084; 24.3715
98.319; 94.455; 92.83
1167.9Sumitomo, Kenta; Sudo, Yuta; Kanazawa, Kiseki; Kawabata, Kohsuke; Takimiya, Kazuo
Enantiopure 2-(2-ethylhexyl)dinaphtho[2,3-<i>b</i>:2',3'-<i>f</i>]thieno[3,2-<i>b</i>]thiophenes: synthesis, single-crystal structure and a surprising lack of influence of stereoisomerism on thin-film structure and electronic properties.
Materials horizons, 2022, 9, 444-451
1565123 CIFC30 H28 S2P 16.0173; 8.1041; 24.3262
98.542; 94.452; 92.932
1167.2Sumitomo, Kenta; Sudo, Yuta; Kanazawa, Kiseki; Kawabata, Kohsuke; Takimiya, Kazuo
Enantiopure 2-(2-ethylhexyl)dinaphtho[2,3-<i>b</i>:2',3'-<i>f</i>]thieno[3,2-<i>b</i>]thiophenes: synthesis, single-crystal structure and a surprising lack of influence of stereoisomerism on thin-film structure and electronic properties.
Materials horizons, 2022, 9, 444-451
1565133 CIFC88 H76 Cl2 Fe2 N12 O13P 1 21/c 18.0718; 26.641; 36.191
90; 95.657; 90
7744.6Amanullah, Sk; Saha, Paramita; Dey, Abhishek
O<sub>2</sub> reduction by iron porphyrins with electron withdrawing groups: to scale or not to scale.
Faraday discussions, 2022, 234, 143-158
1565172 CIFC20 H23 Br N4 O2 RuP 1 21/n 17.918; 17.8; 14.7128
90; 95.2089; 90
2065.06Illam, Praseetha Mathoor; Rit, Arnab
Electronically tuneable orthometalated RuII–NHC complexes as efficient catalysts for C–C and C–N bond formations via borrowing hydrogen strategy
Catalysis Science & Technology, 2022, 12, 67-74
1565173 CIFH4 N2 O3P m m n :25.446; 5.7605; 4.9406
90; 90; 90
154.99Nesterova, Oksana V.; Kuznetsov, Maxim L.; Pombeiro, Armando J. L.; Shul'pin, Georgiy B.; Nesterov, Dmytro S.
Homogeneous oxidation of C–H bonds with m-CPBA catalysed by a Co/Fe system: mechanistic insights from the point of view of the oxidant
Catalysis Science & Technology, 2022, 12, 282-299
1565174 CIFC19 H25 Co N2 O6P -317.5321; 17.5321; 10.9885
90; 90; 120
2925.1Nesterova, Oksana V.; Kuznetsov, Maxim L.; Pombeiro, Armando J. L.; Shul'pin, Georgiy B.; Nesterov, Dmytro S.
Homogeneous oxidation of C–H bonds with m-CPBA catalysed by a Co/Fe system: mechanistic insights from the point of view of the oxidant
Catalysis Science & Technology, 2022, 12, 282-299
1565226 CIFC10 H15 N O2 SP 1 21 17.72; 7.7534; 9.0532
90; 94.725; 90
540.05Li, Peng-Fei; Ai, Yong; Zeng, Yu-Ling; Liu, Jun-Chao; Xu, Zhe-Kun; Wang, Zhong-Xia
Highest-Tc single-component homochiral organic ferroelectrics
Chemical Science, 2022, 13, 657-664
1565227 CIFC10 H15 N O2 SP 1 21 17.7253; 7.7557; 9.0549
90; 94.727; 90
540.68Li, Peng-Fei; Ai, Yong; Zeng, Yu-Ling; Liu, Jun-Chao; Xu, Zhe-Kun; Wang, Zhong-Xia
Highest-Tc single-component homochiral organic ferroelectrics
Chemical Science, 2022, 13, 657-664
1565228 CIFC10 H15 N O2 SP 1 21 17.748; 7.6312; 8.9986
90; 95.11; 90
529.941Li, Peng-Fei; Ai, Yong; Zeng, Yu-Ling; Liu, Jun-Chao; Xu, Zhe-Kun; Wang, Zhong-Xia
Highest-Tc single-component homochiral organic ferroelectrics
Chemical Science, 2022, 13, 657-664
1565229 CIFC10 H15 N O2 SP 1 21/m 17.699; 7.6119; 8.9599
90; 94.873; 90
523.188Li, Peng-Fei; Ai, Yong; Zeng, Yu-Ling; Liu, Jun-Chao; Xu, Zhe-Kun; Wang, Zhong-Xia
Highest-Tc single-component homochiral organic ferroelectrics
Chemical Science, 2022, 13, 657-664
1565230 CIFC10 H15 N O2 SP 1 21 17.7527; 7.6368; 8.9989
90; 95.097; 90
530.68Li, Peng-Fei; Ai, Yong; Zeng, Yu-Ling; Liu, Jun-Chao; Xu, Zhe-Kun; Wang, Zhong-Xia
Highest-Tc single-component homochiral organic ferroelectrics
Chemical Science, 2022, 13, 657-664
1565386 CIFAl2.69 B50C m m a12.661; 12.337; 5.0928
90; 90; 90
795.5Zheng, Xu; Yan, Dayu; Yi, Changjiang; Zhu, Jinlong; Zhang, Qinghua; Zhai, Junyi; Ma, Teng; Zhu, Pinwen; Li, Hui; Gu, Lin; Zhao, Yusheng; Yao, Yugui; Shi, Youguo; Yu, Xiaohui; Jin, Changqing
The discovery of a superhard P-type transparent semiconductor: Al<sub>2.69</sub>B<sub>50</sub>.
Materials horizons, 2022, 9, 748-755
1565433 CIFC48 H41 Cl9 N6P -18.1464; 11.8837; 25.5753
83.931; 83.143; 86.209
2440.85He, Jian-Li; Tang, Yukun; Zhang, Kai; Zhao, Yue; Lin, Yu-Ching; Hsu, Chih-Kai; Chen, Chia-Hsun; Chiu, Tien-Lung; Lee, Jiun-Haw; Wang, Chuan-Kui; Wu, Chung-Chih; Fan, Jian
An extended π-backbone for highly efficient near-infrared thermally activated delayed fluorescence with enhanced horizontal molecular orientation.
Materials horizons, 2022, 9, 772-779
1565488 CIFC43 H44 N2 O P2P 21 21 2110.0784; 11.7543; 30.5885
90; 90; 90
3623.65Chakrabortty, Soumyadeep; Konieczny, Katharina; Müller, Bernd H.; Spannenberg, Anke; Kamer, Paul C. J.; de Vries, Johannes G.
Betti base derived P-stereogenic phosphine-diamidophosphite ligands with a single atom spacer and their application in asymmetric catalysis
Catalysis Science & Technology, 2022, 12, 1392-1399
1565568 CIFF4 I3 K3 O12 V2C m c 2111.6074; 8.5215; 15.0981
90; 90; 90
1493.4Chen, Jin; Hu, Chun-Li; Lin, Yi-Lin; Chen, Yan; Chen, Qian-Qian; Mao, Jiang-Gao
K3V2O3F4(IO3)3: a high-performance SHG crystal containing both five and six-coordinated V5+ cations
Chemical Science, 2022, 13, 454-460
1565590 CIFC18 H15 Br Cl F2 N O2P 1 21 111.04668; 5.51936; 14.34857
90; 101.385; 90
857.627Xu, Xiao; Bao, Longzhu; Ran, Lu; Yang, Zhenyan; Yan, Dingce; Wang, Chun-Jiang; Teng, Huailong
Synthesis of bioactive fluoropyrrolidines via copper(i)-catalysed asymmetric 1,3-dipolar cycloaddition of azomethine ylides
Chemical Science, 2022, 13, 1398-1407
1565601 CIFC27 H29 N3 O4P 1 21/c 111.3563; 16.7472; 12.6545
90; 101.483; 90
2358.54Kuhn, Ariel J.; Ehlke, Beatriz; Johnstone, Timothy C.; Oliver, Scott R. J.; Raskatov, Jevgenij A.
A crystal-structural study of Pauling–Corey rippled sheets
Chemical Science, 2022, 13, 671-680
1565602 CIFC40 H52 O2 S2 Si2P -114.2639; 14.5005; 20.4969
105.307; 109.588; 90.479
3830.5Gao, Yunpeng; Feng, Chi; Seo, Tamae; Kubota, Koji; Ito, Hajime
Efficient access to materials-oriented aromatic alkynes via the mechanochemical Sonogashira coupling of solid aryl halides with large polycyclic conjugated systems
Chemical Science, 2022, 13, 430-438
1565603 CIFC42 H52 S5 Si2C 1 2/c 139.5034; 9.2352; 23.1512
90; 96.916; 90
8384.61Gao, Yunpeng; Feng, Chi; Seo, Tamae; Kubota, Koji; Ito, Hajime
Efficient access to materials-oriented aromatic alkynes via the mechanochemical Sonogashira coupling of solid aryl halides with large polycyclic conjugated systems
Chemical Science, 2022, 13, 430-438
1565604 CIFC18 H14 Br N O2P 1 21/c 18.8605; 21.1565; 7.8415
90; 93.025; 90
1467.9Yuan, Da-Fu; Wang, Zi-Chen; Geng, Rui-Sen; Ren, Guang-Yi; Wright, James S.; Ni, Shao-Fei; Li, Ming; Wen, Li-Rong; Zhang, Lin-Bao
Hypervalent iodine promoted the synthesis of cycloheptatrienes and cyclopropanes
Chemical Science, 2022, 13, 478-485
1565605 CIFC20 H16 Br N O2P 1 21/c 17.9559; 6.808; 30.863
90; 91.251; 90
1671.26Yuan, Da-Fu; Wang, Zi-Chen; Geng, Rui-Sen; Ren, Guang-Yi; Wright, James S.; Ni, Shao-Fei; Li, Ming; Wen, Li-Rong; Zhang, Lin-Bao
Hypervalent iodine promoted the synthesis of cycloheptatrienes and cyclopropanes
Chemical Science, 2022, 13, 478-485
1565606 CIFC19 H16 F3 N O2P -19.4212; 10.7629; 18.7421
94.939; 96.779; 110.576
1750.05Yuan, Da-Fu; Wang, Zi-Chen; Geng, Rui-Sen; Ren, Guang-Yi; Wright, James S.; Ni, Shao-Fei; Li, Ming; Wen, Li-Rong; Zhang, Lin-Bao
Hypervalent iodine promoted the synthesis of cycloheptatrienes and cyclopropanes
Chemical Science, 2022, 13, 478-485
1565640 CIFC3 H8 Cl N O4P 1 21/c 18.1; 8.269; 9.997
90; 99.57; 90
660.3Gao, Zhangran; Wu, Yuying; Jiao, Shulin; Tang, Zheng; Sun, Xiaofan; Li, Dong; Cai, Hong-Ling; Wu, X. S.
Large dielectric switch effects induced by an order-disorder transformation in cyclopropylamine perchlorate crystals.
Nanoscale, 2022, 14, 675-679
1565641 CIFC3 H8 Cl N O4P 1 21 14.9117; 8.1838; 8.056
90; 99.683; 90
319.21Gao, Zhangran; Wu, Yuying; Jiao, Shulin; Tang, Zheng; Sun, Xiaofan; Li, Dong; Cai, Hong-Ling; Wu, X. S.
Large dielectric switch effects induced by an order-disorder transformation in cyclopropylamine perchlorate crystals.
Nanoscale, 2022, 14, 675-679
1565662 CIFC34 H68 B Ce O2 Si2P 1 21/c 17.4686; 26.405; 19.52
90; 97.925; 90
3812.7Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565663 CIFC30 H60 B Er O Si2P n m a15.8956; 24.908; 8.4943
90; 90; 90
3363.1Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565664 CIFC34 H68 B O2 Si2 SmP 1 21/c 17.5051; 26.3267; 19.4417
90; 98.004; 90
3804Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565665 CIFC58 H96 Er Li O Pb Si4P 1 21 113.3164; 13.319; 16.7792
90; 97.425; 90
2951.02Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565666 CIFC65 H104 Li O Pb Si4 SmP 1 21/n 113.5678; 13.7727; 35.796
90; 93.725; 90
6674.9Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565667 CIFC70 H126.8 Er Li O4 Pb Si4P 1 21/n 122.0069; 16.3287; 22.8084
90; 113.88; 90
7494.4Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565668 CIFC58 H96 Ce Li O Pb Si4P 1 21 113.4211; 13.6559; 16.7671
90; 97.576; 90
3046.2Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565669 CIFC73.5 H124 Er Li O8 Pb Si4P -113.1318; 13.3996; 24.0543
90.114; 99.276; 109.783
3923.4Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565670 CIFC58 H97 La Li O Pb Si4P 1 21 113.4752; 13.6204; 16.909
90; 99.42; 90
3061.59Münzfeld, Luca; Sun, Xiaofei; Schlittenhardt, Sören; Schoo, Christoph; Hauser, Adrian; Gillhuber, Sebastian; Weigend, Florian; Ruben, Mario; Roesky, Peter W.
Introduction of plumbole to f-element chemistry
Chemical Science, 2022, 13, 945-954
1565671 CIFC16 H25 Cl2 Fe N3 O12P 1 21 114.194; 10.712; 15.769
90; 102.51; 90
2340.7Lee, Yool; Oh, Chaeun; Kim, Jin; Park, Myong-Suk; Bae, Woo Kyun; Yoo, Kyung Hyun; Hong, Seungwoo
Bioinspired nonheme iron complex that triggers mitochondrial apoptotic signalling pathway specifically for colorectal cancer cells
Chemical Science, 2022, 13, 737-747
1565672 CIFC32 H46 Cl4 Fe2 N6 O23C 1 2/c 115.9079; 17.3412; 16.1343
90; 90.724; 90
4450.5Lee, Yool; Oh, Chaeun; Kim, Jin; Park, Myong-Suk; Bae, Woo Kyun; Yoo, Kyung Hyun; Hong, Seungwoo
Bioinspired nonheme iron complex that triggers mitochondrial apoptotic signalling pathway specifically for colorectal cancer cells
Chemical Science, 2022, 13, 737-747
1565673 CIFC16 H21 Cl2 Mn N3 O2P n a 2114.289; 8.933; 28.022
90; 90; 90
3576.8Lee, Yool; Oh, Chaeun; Kim, Jin; Park, Myong-Suk; Bae, Woo Kyun; Yoo, Kyung Hyun; Hong, Seungwoo
Bioinspired nonheme iron complex that triggers mitochondrial apoptotic signalling pathway specifically for colorectal cancer cells
Chemical Science, 2022, 13, 737-747
1565716 CIFC14 H9 N O2 S2P 1 21/n 13.8839; 15.124; 21.523
90; 93.662; 90
1261.7Wang, Siqi; Chen, Wanli; Ling, Jun
PiPo: random copolymers of C- with N-substituted glycines
Polymer Chemistry, 2022, 13, 383-387
1565717 CIF
HKL
Paper
C36 H30 P2 S2P 1 21/n 114.5406; 13.2405; 17.1497
90; 108.962; 90
3122.6Zhang, Yusheng; Duan, Wuhua; Wang, Qiang; Zheng, Lei; Wang, Jianchen; Chen, Jing; Sun, Taoxiang
Covalency between the uranyl ion and dithiophosphinate by sulfur <i>K</i>-edge X-ray absorption spectroscopy and density functional theory
Journal of Synchrotron Radiation, 2022, 29, 11-20
1565718 CIF
HKL
C38 H28 F6 P2 S2P -18.7782; 13.264; 15.3166
87.778; 88.384; 75.173
1722.39Zhang, Yusheng; Duan, Wuhua; Wang, Qiang; Zheng, Lei; Wang, Jianchen; Chen, Jing; Sun, Taoxiang
Covalency between the uranyl ion and dithiophosphinate by sulfur <i>K</i>-edge X-ray absorption spectroscopy and density functional theory
Journal of Synchrotron Radiation, 2022, 29, 11-20
1565719 CIF
HKL
C26 H26 O3 P2 S4 UP -111.5443; 11.6402; 13.0973
113.227; 110.729; 92.865
1475.39Zhang, Yusheng; Duan, Wuhua; Wang, Qiang; Zheng, Lei; Wang, Jianchen; Chen, Jing; Sun, Taoxiang
Covalency between the uranyl ion and dithiophosphinate by sulfur <i>K</i>-edge X-ray absorption spectroscopy and density functional theory
Journal of Synchrotron Radiation, 2022, 29, 11-20
1565720 CIF
HKL
C32 H28 F12 O4 P2 S4 UP c a 2116.5607; 8.1303; 59.7044
90; 90; 90
8038.8Zhang, Yusheng; Duan, Wuhua; Wang, Qiang; Zheng, Lei; Wang, Jianchen; Chen, Jing; Sun, Taoxiang
Covalency between the uranyl ion and dithiophosphinate by sulfur <i>K</i>-edge X-ray absorption spectroscopy and density functional theory
Journal of Synchrotron Radiation, 2022, 29, 11-20
1565762 CIFC18 H15 Al F28 O3 SiP 1 21/n 19.757; 17.585; 17.518
90; 90.187; 90
3006Barthélemy, Antoine; Glootz, Kim; Scherer, Harald; Hanske, Annaleah; Krossing, Ingo
Ga±catalyzed hydrosilylation? About the surprising system Ga+/HSiR3/olefin, proof of oxidation with subvalent Ga+ and silylium catalysis with perfluoroalkoxyaluminate anions
Chemical Science, 2022, 13, 439-453
1565763 CIFC18 H19 N O S2P 21 21 218.4425; 10.2492; 19.6013
90; 90; 90
1696.08Krishnamurthy, Suvratha; Yoshida, Yoshiaki; Endo, Takeshi
Cationic ring-opening polymerization of a five membered cyclic dithiocarbonate having a tertiary amine moiety
Polymer Chemistry, 2022, 13, 267-274
1565790 CIFC80 H76 K Nd O6 Si4P 1 21/c 115.07667; 18.20509; 36.5229
90; 94.8279; 90
9988.95Willauer, Aurélien R.; Douair, Iskander; Chauvin, Anne-Sophie; Fadaei-Tirani, Farzaneh; Bünzli, Jean-Claude G.; Maron, Laurent; Mazzanti, Marinella
Structure, reactivity and luminescence studies of triphenylsiloxide complexes of tetravalent lanthanides
Chemical Science, 2022, 13, 681-691
1565791 CIFC84 H84 O7 Si4 TbC 1 2/c 116.445; 23.0841; 21.7459
90; 95.923; 90
8211.1Willauer, Aurélien R.; Douair, Iskander; Chauvin, Anne-Sophie; Fadaei-Tirani, Farzaneh; Bünzli, Jean-Claude G.; Maron, Laurent; Mazzanti, Marinella
Structure, reactivity and luminescence studies of triphenylsiloxide complexes of tetravalent lanthanides
Chemical Science, 2022, 13, 681-691
1565792 CIFC92 H78 N O5 P Pr Si4P 1 21/c 114.39059; 21.1314; 28.0674
90; 91.3627; 90
8532.69Willauer, Aurélien R.; Douair, Iskander; Chauvin, Anne-Sophie; Fadaei-Tirani, Farzaneh; Bünzli, Jean-Claude G.; Maron, Laurent; Mazzanti, Marinella
Structure, reactivity and luminescence studies of triphenylsiloxide complexes of tetravalent lanthanides
Chemical Science, 2022, 13, 681-691
1565793 CIFC84 H84 Ce O7 Si4C 1 2/c 116.5246; 23.1693; 21.7608
90; 95.951; 90
8286.5Willauer, Aurélien R.; Douair, Iskander; Chauvin, Anne-Sophie; Fadaei-Tirani, Farzaneh; Bünzli, Jean-Claude G.; Maron, Laurent; Mazzanti, Marinella
Structure, reactivity and luminescence studies of triphenylsiloxide complexes of tetravalent lanthanides
Chemical Science, 2022, 13, 681-691
1565794 CIFC94 H92 Ce K O6 Si4P b c a15.5527; 26.7995; 38.849
90; 90; 90
16192.4Willauer, Aurélien R.; Douair, Iskander; Chauvin, Anne-Sophie; Fadaei-Tirani, Farzaneh; Bünzli, Jean-Claude G.; Maron, Laurent; Mazzanti, Marinella
Structure, reactivity and luminescence studies of triphenylsiloxide complexes of tetravalent lanthanides
Chemical Science, 2022, 13, 681-691
1565795 CIFC84 H84 Gd K O7 Si4P 1 21/n 113.4724; 28.4527; 22.4563
90; 100.959; 90
8451.1Willauer, Aurélien R.; Douair, Iskander; Chauvin, Anne-Sophie; Fadaei-Tirani, Farzaneh; Bünzli, Jean-Claude G.; Maron, Laurent; Mazzanti, Marinella
Structure, reactivity and luminescence studies of triphenylsiloxide complexes of tetravalent lanthanides
Chemical Science, 2022, 13, 681-691
1565796 CIFC111 H99 K2 Nd O5 Si5P 1 21/n 119.0352; 23.9418; 22.3713
90; 92.2121; 90
10187.8Willauer, Aurélien R.; Douair, Iskander; Chauvin, Anne-Sophie; Fadaei-Tirani, Farzaneh; Bünzli, Jean-Claude G.; Maron, Laurent; Mazzanti, Marinella
Structure, reactivity and luminescence studies of triphenylsiloxide complexes of tetravalent lanthanides
Chemical Science, 2022, 13, 681-691
1565814 CIFC77 H81.33 Cl4.17 Co2 N8 O1.67P -331.1312; 31.1312; 15.5307
90; 90; 120
13035.1Zhou, Weinan; Sarma, Tridib; Su, Yonghuan; Lei, Chuanhu; Sessler, Jonathan L.
Kinetic trapping of a cobalt(ii) metallocage using a carbazole-containing expanded carbaporphyrinoid ligand
Chemical Science, 2022, 13, 692-697
1565815 CIFC81 H92 Cl8 N8 O3 Zn2P 1 21/c 128.535; 13.861; 20.682
90; 101.36; 90
8020Zhou, Weinan; Sarma, Tridib; Su, Yonghuan; Lei, Chuanhu; Sessler, Jonathan L.
Kinetic trapping of a cobalt(ii) metallocage using a carbazole-containing expanded carbaporphyrinoid ligand
Chemical Science, 2022, 13, 692-697
1565816 CIFC77 H80 Cl4 Co2 N8P 1 21/c 128.3373; 14.5574; 20.3283
90; 100.895; 90
8234.6Zhou, Weinan; Sarma, Tridib; Su, Yonghuan; Lei, Chuanhu; Sessler, Jonathan L.
Kinetic trapping of a cobalt(ii) metallocage using a carbazole-containing expanded carbaporphyrinoid ligand
Chemical Science, 2022, 13, 692-697
1565817 CIFC152 H152 N16 Pd4P -111.694; 20.7153; 27.718
68.59; 89.019; 82.809
6199Zhou, Weinan; Sarma, Tridib; Su, Yonghuan; Lei, Chuanhu; Sessler, Jonathan L.
Kinetic trapping of a cobalt(ii) metallocage using a carbazole-containing expanded carbaporphyrinoid ligand
Chemical Science, 2022, 13, 692-697
1565818 CIFC16 H24 B F4 NI b a 226.2135; 48.489; 7.7284
90; 90; 90
9823.3Liu, Ming-Shang; Du, Hai-Wu; Shu, Wei
Metal-free allylic C–H nitrogenation, oxygenation, and carbonation of alkenes by thianthrenation
Chemical Science, 2022, 13, 1003-1008
1565819 CIFC24 H24 O3P 1 21 16.0869; 17.6346; 17.8806
90; 92.23; 90
1917.85Liu, Ming-Shang; Du, Hai-Wu; Shu, Wei
Metal-free allylic C–H nitrogenation, oxygenation, and carbonation of alkenes by thianthrenation
Chemical Science, 2022, 13, 1003-1008
1565820 CIFC24 H20 F6 O6 S4P 1 21/n 19.1824; 17.1893; 16.2826
90; 99.542; 90
2534.5Liu, Ming-Shang; Du, Hai-Wu; Shu, Wei
Metal-free allylic C–H nitrogenation, oxygenation, and carbonation of alkenes by thianthrenation
Chemical Science, 2022, 13, 1003-1008
1565821 CIFC23 H20 I N O2P b c a14.3788; 7.5241; 35.493
90; 90; 90
3839.9Dishman, Sarah N.; Laconsay, Croix J.; Fettinger, James C.; Tantillo, Dean J.; Shaw, Jared T.
Divergent stereochemical outcomes in the insertion of donor/donor carbenes into the C–H bonds of stereogenic centers
Chemical Science, 2022, 13, 1030-1036
1565822 CIFC23 H20 I N O2P 18.7754; 8.8984; 12.8772
99.2233; 96.0361; 91.197
986.31Dishman, Sarah N.; Laconsay, Croix J.; Fettinger, James C.; Tantillo, Dean J.; Shaw, Jared T.
Divergent stereochemical outcomes in the insertion of donor/donor carbenes into the C–H bonds of stereogenic centers
Chemical Science, 2022, 13, 1030-1036
1565823 CIFC33 H27 N O3P 16.3151; 11.198; 17.7567
85.4422; 85.449; 86.8128
1246.24Dishman, Sarah N.; Laconsay, Croix J.; Fettinger, James C.; Tantillo, Dean J.; Shaw, Jared T.
Divergent stereochemical outcomes in the insertion of donor/donor carbenes into the C–H bonds of stereogenic centers
Chemical Science, 2022, 13, 1030-1036
1565826 CIFK2 Mg2 O12 S3P 21 39.91895; 9.91895; 9.91895
90; 90; 90
975.882Gajda, Roman; Zhang, Dongzhou; Parafiniuk, Jan; Dera, Przemysław; Woźniak, Krzysztof
Tracing electron density changes in langbeinite under pressure
IUCrJ, 2022, 9, 146-162
1565827 CIFK2 Mg2 O12 S3P 21 39.91895; 9.91895; 9.91895
90; 90; 90
975.882Gajda, Roman; Zhang, Dongzhou; Parafiniuk, Jan; Dera, Przemysław; Woźniak, Krzysztof
Tracing electron density changes in langbeinite under pressure
IUCrJ, 2022, 9, 146-162
1565828 CIFK2 Mg2 O12 S3P 21 39.91977; 9.91977; 9.91977
90; 90; 90
976.124Gajda, Roman; Zhang, Dongzhou; Parafiniuk, Jan; Dera, Przemysław; Woźniak, Krzysztof
Tracing electron density changes in langbeinite under pressure
IUCrJ, 2022, 9, 146-162
1565829 CIFK2 Mg2 O12 S3P 21 39.91977; 9.91977; 9.91977
90; 90; 90
976.124Gajda, Roman; Zhang, Dongzhou; Parafiniuk, Jan; Dera, Przemysław; Woźniak, Krzysztof
Tracing electron density changes in langbeinite under pressure
IUCrJ, 2022, 9, 146-162
1565830 CIFK2 Mg2 O12 S3P 21 39.9045; 9.9045; 9.9045
90; 90; 90
971.623Gajda, Roman; Zhang, Dongzhou; Parafiniuk, Jan; Dera, Przemysław; Woźniak, Krzysztof
Tracing electron density changes in langbeinite under pressure
IUCrJ, 2022, 9, 146-162
1565831 CIFK2 Mg2 O12 S3P 21 39.9045; 9.9045; 9.9045
90; 90; 90
971.623Gajda, Roman; Zhang, Dongzhou; Parafiniuk, Jan; Dera, Przemysław; Woźniak, Krzysztof
Tracing electron density changes in langbeinite under pressure
IUCrJ, 2022, 9, 146-162
1565832 CIFC30 H14 N4 S2P -17.3775; 9.3783; 9.4318
61.214; 89.717; 73.611
542Jiang, Hui; Ye, Jun; Hu, Peng; Zhu, Shengli; Liang, Yanqin; Cui, Zhenduo; Kloc, Christian; Hu, Wenping
Growth direction dependent separate-channel charge transport in the organic weak charge-transfer co-crystal of anthracene-DTTCNQ.
Materials horizons, 2022, 9, 1057-1067
1565833 CIFC10 H14 O4P 1 21 16.29835; 10.64131; 7.53892
90; 103.504; 90
491.31Ai, Yong; Li, Peng-Fei; Yang, Meng-Juan; Xu, Yu-Qiu; Li, Meng-Zhen; Xiong, Ren-Gen
An organic plastic ferroelectric with high Curie point
Chemical Science, 2022, 13, 748-753
1565834 CIFC10 H14 O4P 1 21 16.3879; 10.8484; 7.6137
90; 103.203; 90
513.67Ai, Yong; Li, Peng-Fei; Yang, Meng-Juan; Xu, Yu-Qiu; Li, Meng-Zhen; Xiong, Ren-Gen
An organic plastic ferroelectric with high Curie point
Chemical Science, 2022, 13, 748-753
1565835 CIFC10 H11 Fe N4I -4 3 m17.1728; 17.1728; 17.1728
90; 90; 90
5064.3López-Cabrelles, Javier; Miguel-Casañ, Eugenia; Esteve-Rochina, María; Andres-Garcia, Eduardo; Vitórica-Yrezábal, Iñigo J.; Calbo, Joaquín; Mínguez Espallargas, Guillermo
Multivariate sodalite zeolitic imidazolate frameworks: a direct solvent-free synthesis
Chemical Science, 2022, 13, 842-847
1565836 CIFC12 H14 Fe N4I -4 3 m17.317; 17.317; 17.317
90; 90; 90
5193López-Cabrelles, Javier; Miguel-Casañ, Eugenia; Esteve-Rochina, María; Andres-Garcia, Eduardo; Vitórica-Yrezábal, Iñigo J.; Calbo, Joaquín; Mínguez Espallargas, Guillermo
Multivariate sodalite zeolitic imidazolate frameworks: a direct solvent-free synthesis
Chemical Science, 2022, 13, 842-847
1565837 CIFC25 H20 O4P 6117.6742; 17.6742; 11.6231
90; 90; 120
3144.36Lang, Jiawen; Wang, Siyuan; He, Changli; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of isochromanone derivatives via trapping carboxylic oxonium ylides and aldol cascade
Chemical Science, 2022, 13, 1163-1168
1565838 CIFC25 H22 O4P 21 21 216.5263; 13.9032; 21.5712
90; 90; 90
1957.29Lang, Jiawen; Wang, Siyuan; He, Changli; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of isochromanone derivatives via trapping carboxylic oxonium ylides and aldol cascade
Chemical Science, 2022, 13, 1163-1168
1565839 CIFC23 H21 N O3P 1 21/n 110.8503; 8.8759; 19.9348
90; 100.189; 90
1889.57Nguyen, Nguyen Hoang; Oh, Soo Min; Park, Cheol-Min; Shin, Seunghoon
Ortho-Selective C-H Arylation of Phenols with N-Carboxyindoles under Brønsted Acid- or Cu(I)-Catalysis
Chemical Science, 2022
1565840 CIFC22 H19 Cl5 N2 ZnP 1 21/c 123.376; 10.6352; 20.2506
90; 106.848; 90
4818.4Frye, Connor W.; Egger, Dominic T.; Kounalis, Errikos; Pearce, Adam J.; Cheng, Yukun; Tonks, Ian A.
α-Diimine synthesis via titanium-mediated multicomponent diimination of alkynes with C-nitrosos
Chemical Science, 2022, 13, 1469-1477
1565841 CIFC51 H46 Eu N7 O15P 1 21/c 110.2028; 20.5606; 27.5955
90; 94.989; 90
5766.9Wang, Hui; Li, Xuan; Cheng, Hao; Li, Ya-Jun; Song, Xue-Qin; Wang, Li
Two luminescent film sensors constructed from new lanthanide coordination polymers for ratiometric detection of Zn2+ and NH3 in water and their white emission properties
Polymer Chemistry, 2022, 13, 778-793
1565842 CIFC51 H46 Gd N7 O15P 1 21/c 110.1478; 20.3871; 27.1677
90; 95.103; 90
5598.3Wang, Hui; Li, Xuan; Cheng, Hao; Li, Ya-Jun; Song, Xue-Qin; Wang, Li
Two luminescent film sensors constructed from new lanthanide coordination polymers for ratiometric detection of Zn2+ and NH3 in water and their white emission properties
Polymer Chemistry, 2022, 13, 778-793
1565843 CIFC51 H46 N7 O15 TbP 1 21/c 110.184; 20.5165; 27.539
90; 95.052; 90
5731.6Wang, Hui; Li, Xuan; Cheng, Hao; Li, Ya-Jun; Song, Xue-Qin; Wang, Li
Two luminescent film sensors constructed from new lanthanide coordination polymers for ratiometric detection of Zn2+ and NH3 in water and their white emission properties
Polymer Chemistry, 2022, 13, 778-793
1565844 CIFC28 H34 N4 O8 S2C 1 2/c 126.7306; 5.0492; 24.8887
90; 117.317; 90
2984.57Mandigma, Mark John; Zurauskas, Jonas; MacGregor, Callum Ian; Edwards, Lee; Shahin, Ahmed; d'Heureuse, Ludwig; Yip, Philip; Birch, David J. S.; Gruber, Thomas; Heilmann, Jorg; John, Matthew P.; Barham, Joshua Philip
An Organophotocatalytic Late-stage N-CH3 Oxidation of Trialkylamines to N-formamides with O2 in Continuous Flow
Chemical Science, 2022
1565845 CIFC45 N7 O10 SP 3214.33767; 14.33767; 21.39635
90; 90; 120
3809.14Jeong, Rokam; Eom, Jae-Hoon; Gong, Jintaek; Kang, Minsang; Kim, Jaewook; Lee, Hee-Seung
Programmed hierarchical radial association of anisotropic foldamer assemblies.
Nanoscale, 2022, 14, 1700-1705
1565846 CIF
Paper
C54 H58 Cl3 O11 RbP -113.44; 14.3933; 14.8036
84.073; 76.728; 62.777
2478.47Kim, Seulgi; Jung, Jong Hwa; Lee, Shim Sung; Park, In-Hyeok
Regioisomers of singly bridged calix[6]crown-6 and their heavy alkali metal complexes: a molecular baseball glove for caesium(I)
IUCrJ, 2022, 9, 43-48
1565847 CIFC55 H53 Cl9 Cs O10P 1 21/n 113.1773; 20.344; 22.581
90; 106.172; 90
5814Kim, Seulgi; Jung, Jong Hwa; Lee, Shim Sung; Park, In-Hyeok
Regioisomers of singly bridged calix[6]crown-6 and their heavy alkali metal complexes: a molecular baseball glove for caesium(I)
IUCrJ, 2022, 9, 43-48
1565848 CIFC53 H55 Cl3 Cs2 O11P 1 21/c 113.166; 31.338; 14.278
90; 117.28; 90
5236Kim, Seulgi; Jung, Jong Hwa; Lee, Shim Sung; Park, In-Hyeok
Regioisomers of singly bridged calix[6]crown-6 and their heavy alkali metal complexes: a molecular baseball glove for caesium(I)
IUCrJ, 2022, 9, 43-48
1565849 CIF
Paper
Cu H10 O9 SP -15.9523; 6.1001; 10.647
77.308; 82.353; 72.64
359.02Novelli, Giulia; Kamenev, Konstantin V.; Maynard-Casely, Helen E.; Parsons, Simon; McIntyre, Garry J.
Use of a miniature diamond-anvil cell in a joint X-ray and neutron high-pressure study on copper sulfate pentahydrate
IUCrJ, 2022, 9, 73-85
1565850 CIFCu H10 O9 SP -15.9523; 6.1001; 10.647
77.308; 82.353; 72.64
359.02Novelli, Giulia; Kamenev, Konstantin V.; Maynard-Casely, Helen E.; Parsons, Simon; McIntyre, Garry J.
Use of a miniature diamond-anvil cell in a joint X-ray and neutron high-pressure study on copper sulfate pentahydrate
IUCrJ, 2022, 9, 73-85
1565851 CIFCu H10 O9 SP -15.9523; 6.1001; 10.647
77.308; 82.353; 72.64
359.016Novelli, Giulia; Kamenev, Konstantin V.; Maynard-Casely, Helen E.; Parsons, Simon; McIntyre, Garry J.
Use of a miniature diamond-anvil cell in a joint X-ray and neutron high-pressure study on copper sulfate pentahydrate
IUCrJ, 2022, 9, 73-85
1565852 CIFCu H10 O9 SP -15.9523; 6.1001; 10.647
77.308; 82.353; 72.64
359.016Novelli, Giulia; Kamenev, Konstantin V.; Maynard-Casely, Helen E.; Parsons, Simon; McIntyre, Garry J.
Use of a miniature diamond-anvil cell in a joint X-ray and neutron high-pressure study on copper sulfate pentahydrate
IUCrJ, 2022, 9, 73-85
1565853 CIF
Paper
C73 H100 O6P 1 21/c 116.252; 23.5373; 17.2102
90; 101.773; 90
6444.9Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565854 CIF
Paper
C66 H84 O6P -19.59; 18.199; 18.547
114.31; 91.36; 91.7
2946Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565855 CIF
Paper
C70 H92 Cl8 O6P -113.8727; 16.0717; 17.6177
77.127; 66.915; 76.404
3474.5Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565856 CIF
Paper
C68 H88 Cl4 O6P -112.261; 17.2425; 17.417
118.625; 92.647; 98.062
3172.8Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565857 CIF
Paper
C84 H102 O6P -113.5391; 14.7702; 19.045
80.68; 72.393; 78.191
3532.8Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565858 CIF
Paper
C69 H90 Cl6 O6P 1 21/c 117.8792; 19.6559; 18.9669
90; 96.732; 90
6619.6Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565859 CIF
Paper
C72 H96 O6P 1 21/n 117.2109; 18.2986; 19.6172
90; 94.521; 90
6158.9Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565860 CIF
Paper
C73 H92 O6P 1 21/n 117.1817; 18.7393; 19.4157
90; 95.843; 90
6218.9Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565861 CIF
Paper
C69 H90 O8P 1 21/n 117.0366; 18.4996; 19.762
90; 94.288; 90
6210.96Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565862 CIF
Paper
C70 H92 O7P 1 21/n 117.1261; 17.8832; 19.8489
90; 93.914; 90
6064.9Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565863 CIF
Paper
C73 H92 O7P -114.1349; 16.1763; 17.0355
83.979; 72.392; 73.292
3555.3Malinska, Maura
Insights into molecular recognition from the crystal structures of <i>p-tert</i>-butylcalix[6]arene complexed with different solvents
IUCrJ, 2022, 9, 55-64
1565864 CIF
Paper
C4 H2 Cl N5P 21 21 217.0651; 8.7859; 10.0906
90; 90; 90
626.36Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565865 CIFC4 H2 Cl N5P 21 21 217.0604; 8.78; 10.0712
90; 90; 90
624.32Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565866 CIFC4 H2 Cl N5P 21 21 217.0533; 8.7742; 10.0552
90; 90; 90
622.29Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565867 CIFC4 H2 Cl N5P 21 21 217.0476; 8.7682; 10.0363
90; 90; 90
620.19Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565868 CIFC4 H2 Cl N5P 21 21 217.0422; 8.7617; 10.0158
90; 90; 90
617.99Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565869 CIFC4 H2 Cl N5P 21 21 217.0473; 8.7636; 10.0299
90; 90; 90
619.44Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565870 CIFC4 H2 Cl N5P 21 21 217.0342; 8.7569; 10.0049
90; 90; 90
616.28Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565871 CIFC4 H2 Cl N5P 21 21 217.0336; 8.7575; 10.0065
90; 90; 90
616.37Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565872 CIFC4 H2 Cl N5P 21 21 217.0291; 8.7539; 9.9932
90; 90; 90
614.902Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565873 CIFC4 H2 Cl N5P 21 21 217.0245; 8.7517; 9.9817
90; 90; 90
613.638Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565874 CIFC4 H2 Cl N5P 21 21 217.0753; 8.7825; 10.099
90; 90; 90
627.5Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565875 CIFC4 H2 Cl N5P 21 21 216.934; 8.7568; 10.029
90; 90; 90
609Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565876 CIFC4 H2 Cl N5P n m a10.697; 6.2545; 8.8012
90; 90; 90
588.8Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565877 CIFC4 H2 Cl N5P n m a10.654; 6.1954; 8.7823
90; 90; 90
579.68Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565878 CIFC4 H2 Cl N5P 21 21 217.0542; 8.7774; 10.1041
90; 90; 90
625.62Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565879 CIFC4 H2 Cl N5P 21 21 217.0733; 8.7965; 10.042
90; 90; 90
624.8Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565880 CIFC4 H2 Cl N5P 21 21 216.9987; 8.774; 10.0863
90; 90; 90
619.37Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565881 CIFC4 H2 Cl N5P 21 21 217.005; 8.7554; 10.086
90; 90; 90
618.6Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565882 CIFC4 H2 Cl N5P 21 21 217.0156; 8.7539; 10.0529
90; 90; 90
617.39Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565883 CIFC4 H2 Cl N5P 21 21 216.9235; 8.7578; 10.0265
90; 90; 90
607.95Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565884 CIFC4 H2 Cl N5P n m a10.668; 6.2042; 8.78
90; 90; 90
581.1Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565885 CIFC4 H2 Cl N5P 1 21/c 17.878; 13.2446; 5.7134
90; 101.14; 90
584.9Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565886 CIFC4 H2 Cl N5P 1 21/c 17.885; 13.2116; 5.6949
90; 101.2; 90
582Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565887 CIFC4 H2 Cl N5P 1 21/c 17.864; 13.1668; 5.6843
90; 101.159; 90
577.4Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565888 CIFC4 H2 Cl N5P 1 21/c 17.824; 13.1476; 5.6603
90; 101.05; 90
571.5Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565889 CIFC4 H2 Cl N5P 1 21/c 17.824; 13.0789; 5.629
90; 100.793; 90
565.8Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565890 CIFC4 H2 Cl N5P 1 21/c 17.836; 12.9703; 5.5885
90; 100.542; 90
558.4Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565891 CIFC4 H2 Cl N5P 1 21/c 17.808; 12.9522; 5.5722
90; 100.54; 90
554Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565892 CIFC4 H2 Cl N5P 1 21/c 17.756; 12.7163; 5.468
90; 100.006; 90
531.1Olejniczak, Anna; Katrusiak, Anna; Podsiadło, Marcin; Katrusiak, Andrzej
Stochastic hydration of a high-nitrogen-content molecular compound recrystallized under pressure
IUCrJ, 2022, 9, 49-54
1565903 CIFC48 H26 N5 O2 PP -19.287; 14.079; 14.828
99.42; 100.745; 104.38
1799.6Kumar, sharvan; Yoshida, Kohshi; Hattori, Yusuke; Higashino, Tomohiro; Imahori, Hiroshi; Seki, Shu
Facile Synthesis of Ambient Stable Pyreno[4,5-b]pyrrole Monoanion and Pyreno[4,5-b:9,10-b’]dipyrrole Dianion: From Serendipity to Design
Chemical Science, 2022
1565904 CIFC48 H28 N5 PP -111.934; 13.207; 14.026
117.428; 103.381; 100.452
1799.6Kumar, sharvan; Yoshida, Kohshi; Hattori, Yusuke; Higashino, Tomohiro; Imahori, Hiroshi; Seki, Shu
Facile Synthesis of Ambient Stable Pyreno[4,5-b]pyrrole Monoanion and Pyreno[4,5-b:9,10-b’]dipyrrole Dianion: From Serendipity to Design
Chemical Science, 2022
1565905 CIFC40.5 H24 Cl N5 PP 1 21/c 17.529; 30.222; 13.985
90; 92.77; 90
3178.4Kumar, sharvan; Yoshida, Kohshi; Hattori, Yusuke; Higashino, Tomohiro; Imahori, Hiroshi; Seki, Shu
Facile Synthesis of Ambient Stable Pyreno[4,5-b]pyrrole Monoanion and Pyreno[4,5-b:9,10-b’]dipyrrole Dianion: From Serendipity to Design
Chemical Science, 2022
1565906 CIFC24 H29 N O3C 1 2/c 132.9756; 9.2126; 13.7861
90; 101.232; 90
4107.88Zhang, Bei-Bei; Peng, Shuo; Wang, Feiyi; Lu, Cuifen; Nie, Junqi; Chen, Zuxing; Yang, Guichun; Ma, Chao
Borane-catalyzed cascade Friedel–Crafts alkylation/[1,5]-hydride transfer/Mannich cyclization to afford tetrahydroquinolines
Chemical Science, 2022, 13, 775-780
1565907 CIFC27 H27 N O3C 1 c 15.7626; 21.7654; 36.032
90; 91.845; 90
4516.98Zhang, Bei-Bei; Peng, Shuo; Wang, Feiyi; Lu, Cuifen; Nie, Junqi; Chen, Zuxing; Yang, Guichun; Ma, Chao
Borane-catalyzed cascade Friedel–Crafts alkylation/[1,5]-hydride transfer/Mannich cyclization to afford tetrahydroquinolines
Chemical Science, 2022, 13, 775-780
1565908 CIFC23 H26 N2 O3P 1 21 19.4239; 10.0699; 11.235
90; 103.712; 90
1035.79Liang, Hui; Ji, Dong-Sheng; Xu, Guo-Qiang; Luo, Yong-Chun; Zheng, Haixue; Xu, Peng-Fei
Metal-free, visible-light induced enantioselective three-component dicarbofunctionalization and oxytrifluoromethylation of enamines via chiral phosphoric acid catalysis
Chemical Science, 2022, 13, 1088-1094
1565909 CIFC12 H9 Br F N3 OP 1 21 18.0916; 6.0738; 12.9097
90; 105.671; 90
610.89Komatsuda, Masaaki; Suto, Ayane; Kondo, Hiroki; Takada, Hiroyuki; Kato, Kenta; Saito, Bunnai; Yamaguchi, Junichiro
Ring-opening fluorination of bicyclic azaarenes
Chemical Science, 2022, 13, 665-670
1565910 CIFC16 H13 N O3P 1 21/c 18.8242; 7.5306; 19.3128
90; 96.98; 90
1273.85Li, Long-Hai; Wei, Hao-Zhao; Wei, Yin; Shi, Min
The Morita–Baylis–Hillman reaction for non-electron-deficient olefins enabled by photoredox catalysis
Chemical Science, 2022, 13, 1478-1483
1565911 CIFC13 H15 N O4P 1 21/c 16.8237; 21.9249; 8.5663
90; 96.654; 90
1272.96Li, Long-Hai; Wei, Hao-Zhao; Wei, Yin; Shi, Min
The Morita–Baylis–Hillman reaction for non-electron-deficient olefins enabled by photoredox catalysis
Chemical Science, 2022, 13, 1478-1483
1565912 CIFC22 H23 N O2P 1 21/c 111.917; 7.3388; 20.1019
90; 92.932; 90
1755.74Li, Long-Hai; Wei, Hao-Zhao; Wei, Yin; Shi, Min
The Morita–Baylis–Hillman reaction for non-electron-deficient olefins enabled by photoredox catalysis
Chemical Science, 2022, 13, 1478-1483
1565913 CIFC20 H21 N O2P -16.9435; 11.9044; 21.0418
74.164; 85.968; 83.016
1659.59Li, Long-Hai; Wei, Hao-Zhao; Wei, Yin; Shi, Min
The Morita–Baylis–Hillman reaction for non-electron-deficient olefins enabled by photoredox catalysis
Chemical Science, 2022, 13, 1478-1483
1565914 CIFC108 H128 Cl4 N12 O26P 1 21/c 113.6939; 19.0018; 50.945
90; 90.412; 90
13256Chen, Qiong; Lei, Ye; Wu, Guangcheng; Li, Qing; Pan, Yuanjiang; Li, Hao
Ultramacrocyclization in water via external templation
Chemical Science, 2022, 13, 798-803
1565915 CIFC49 H57 Cl2 N6 O11.5P -110.312; 20.687; 26.395
74.272; 81.268; 78.693
5285.6Chen, Qiong; Lei, Ye; Wu, Guangcheng; Li, Qing; Pan, Yuanjiang; Li, Hao
Ultramacrocyclization in water via external templation
Chemical Science, 2022, 13, 798-803
1565916 CIFC50 H52 F12 N6 O7 P2P -19.22; 19.51; 20.82
62.99; 86.96; 78.01
3260Chen, Qiong; Lei, Ye; Wu, Guangcheng; Li, Qing; Pan, Yuanjiang; Li, Hao
Ultramacrocyclization in water via external templation
Chemical Science, 2022, 13, 798-803
1565917 CIFC102 H102 Cl2 N38 O25P -114.5032; 23.2785; 23.8851
107.441; 93.266; 104.627
7366.6Chen, Qiong; Lei, Ye; Wu, Guangcheng; Li, Qing; Pan, Yuanjiang; Li, Hao
Ultramacrocyclization in water via external templation
Chemical Science, 2022, 13, 798-803
1565922 CIFC49 H37 B Cl2 O2P 1 21/n 19.0213; 12.4023; 32.9897
90; 94.685; 90
3678.72Narita, Hiroki; Choi, Heekyoung; Ito, Masato; Ando, Naoki; Ogi, Soichiro; Yamaguchi, Shigehiro
Fully fused boron-doped polycyclic aromatic hydrocarbons: their synthesis, structure–property relationships, and self-assembly behavior in aqueous media
Chemical Science, 2022, 13, 1484-1491
1565923 CIFC63 H53 B Cl2 O2 Si2P -19.1151; 12.6682; 21.4094
89.252; 84.01; 84.665
2448.02Narita, Hiroki; Choi, Heekyoung; Ito, Masato; Ando, Naoki; Ogi, Soichiro; Yamaguchi, Shigehiro
Fully fused boron-doped polycyclic aromatic hydrocarbons: their synthesis, structure–property relationships, and self-assembly behavior in aqueous media
Chemical Science, 2022, 13, 1484-1491
1565924 CIFC54 H37 B O2P 1 21/c 118.5697; 12.0685; 16.8103
90; 95.339; 90
3751Narita, Hiroki; Choi, Heekyoung; Ito, Masato; Ando, Naoki; Ogi, Soichiro; Yamaguchi, Shigehiro
Fully fused boron-doped polycyclic aromatic hydrocarbons: their synthesis, structure–property relationships, and self-assembly behavior in aqueous media
Chemical Science, 2022, 13, 1484-1491
1565925 CIFC50 H35 B O2P 1 21/c 112.1456; 15.8222; 35.8589
90; 98.879; 90
6808.4Narita, Hiroki; Choi, Heekyoung; Ito, Masato; Ando, Naoki; Ogi, Soichiro; Yamaguchi, Shigehiro
Fully fused boron-doped polycyclic aromatic hydrocarbons: their synthesis, structure–property relationships, and self-assembly behavior in aqueous media
Chemical Science, 2022, 13, 1484-1491
1565926 CIFC50 H59 Ni O9 P2P 1 21/c 112.239; 20.228; 19.483
90; 99.971; 90
4750.6Luu, Quang H.; Li, Junqi
A C-to-O atom-swapping reaction sequence enabled by Ni-catalyzed decarbonylation of lactones
Chemical Science, 2022, 13, 1095-1100
1565927 CIFC45 H64 Ni O P2P 1 21 19.0475; 18.2763; 12.7484
90; 105.437; 90
2032Luu, Quang H.; Li, Junqi
A C-to-O atom-swapping reaction sequence enabled by Ni-catalyzed decarbonylation of lactones
Chemical Science, 2022, 13, 1095-1100
1565928 CIFBa5 F O12 V3P 63/m10.4308; 10.4308; 7.86002
90; 90; 120
740.61Oka, K.; Nishiki, W.; Takasu, M.; Noma, N.; Iwasaki, M.
Site preference of fluoride anion and potential ionic conductivity in fluorapatites A5(VO4)3F (A = Pb, Sr, and Ba)
Journal of the Ceramic Society of Japan, 2022, 130, 35-38
1565929 CIFF O12 Sr5 V3P 63/m10.01267; 10.01267; 7.43169
90; 90; 120
645.235Oka, K.; Nishiki, W.; Takasu, M.; Noma, N.; Iwasaki, M.
Site preference of fluoride anion and potential ionic conductivity in fluorapatites A5(VO4)3F (A = Pb, Sr, and Ba)
Journal of the Ceramic Society of Japan, 2022, 130, 35-38
1565930 CIFF O12 Pb5 V3P 63/m10.10647; 10.10647; 7.35582
90; 90; 120
650.67Oka, K.; Nishiki, W.; Takasu, M.; Noma, N.; Iwasaki, M.
Site preference of fluoride anion and potential ionic conductivity in fluorapatites A5(VO4)3F (A = Pb, Sr, and Ba): Pb(VO4)3F
Journal of the Ceramic Society of Japan, 2022, 130, 35-38
1565931 CIFC78 H94 Cl4 P2 Pt2 S4P 1 21/n 111.7531; 23.1655; 13.3165
90; 95.94; 90
3606.2Lin, Xinzhang; Zhang, Junying; Tang, Jie; Yang, Yang; Liu, Chao; Huang, Jiahui
Atomically precise structures of Pt<sub>2</sub>(S-Adam)<sub>4</sub>(PPh<sub>3</sub>)<sub>2</sub> complexes and catalytic application in propane dehydrogenation.
Nanoscale, 2022, 14, 2482-2489
1565932 CIFC76 H90 P2 Pt2 S4P 1 21/n 114.31; 17.506; 14.665
90; 100.92; 90
3607.2Lin, Xinzhang; Zhang, Junying; Tang, Jie; Yang, Yang; Liu, Chao; Huang, Jiahui
Atomically precise structures of Pt<sub>2</sub>(S-Adam)<sub>4</sub>(PPh<sub>3</sub>)<sub>2</sub> complexes and catalytic application in propane dehydrogenation.
Nanoscale, 2022, 14, 2482-2489
1565933 CIFC76 H90 P2 Pt2 S4P -113.016; 13.366; 14.337
62.656; 63.186; 69.974
1948.3Lin, Xinzhang; Zhang, Junying; Tang, Jie; Yang, Yang; Liu, Chao; Huang, Jiahui
Atomically precise structures of Pt<sub>2</sub>(S-Adam)<sub>4</sub>(PPh<sub>3</sub>)<sub>2</sub> complexes and catalytic application in propane dehydrogenation.
Nanoscale, 2022, 14, 2482-2489
1565934 CIFH2 Mg O5 SC 1 2/c 16.8611; 7.6716; 7.6014
90; 117.787; 90
353.97Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565935 CIFH2 Mg O5 SC 1 2/c 16.856; 7.6675; 7.6008
90; 117.821; 90
353.38Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565936 CIFFe0 H2 Mg O5 SC 1 2/c 16.8648; 7.6684; 7.6055
90; 117.792; 90
354.18Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565937 CIFFe0 H2 Mg O5 SC 1 2/c 16.8717; 7.6629; 7.6098
90; 117.833; 90
354.35Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565938 CIFFe0 H2 Mg O5 SC 1 2/c 16.8815; 7.6534; 7.6172
90; 117.884; 90
354.6Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565939 CIFFe0 H2 Mg O5 SC 1 2/c 16.8937; 7.6466; 7.6275
90; 117.943; 90
355.2Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565940 CIFFe0 H2 Mg O5 SC 1 2/c 16.907; 7.6356; 7.6373
90; 118.021; 90
355.57Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565941 CIFFe0 H2 Mg O5 SC 1 2/c 16.9227; 7.6212; 7.6488
90; 118.112; 90
355.94Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565942 CIFFe H2 O5 SC 1 2/c 17.0304; 7.5789; 7.7374
90; 118.314; 90
362.95Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565943 CIFFe H2 O5 SC 1 2/c 17.032; 7.5783; 7.7396
90; 118.328; 90
363.06Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565944 CIFFe H2 O5 SC 1 2/c 17.0337; 7.5789; 7.7406
90; 118.325; 90
363.23Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565945 CIFFe H2 Mg0 O5 SC 1 2/c 17.0404; 7.5756; 7.745
90; 118.368; 90
363.48Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565946 CIFFe H2 Mg0 O5 SC 1 2/c 17.0482; 7.5706; 7.7498
90; 118.404; 90
363.74Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565947 CIFFe H2 Mg0 O5 SC 1 2/c 17.058; 7.5663; 7.7576
90; 118.454; 90
364.23Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565948 CIFFe H2 Mg0 O5 SC 1 2/c 17.0696; 7.562; 7.7669
90; 118.515; 90
364.85Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565949 CIFFe H2 Mg0 O5 SC 1 2/c 17.0802; 7.5565; 7.7755
90; 118.579; 90
365.31Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565950 CIFFe H2 Mg0 O5 SC 1 2/c 17.0923; 7.5523; 7.7848
90; 118.648; 90
365.93Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565951 CIFCo H2 O5 SC 1 2/c 16.9143; 7.629; 7.5815
90; 118.191; 90
352.48Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565952 CIFCo H2 O5 SC 1 2/c 16.9142; 7.6267; 7.581
90; 118.179; 90
352.38Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565953 CIFCo H2 O5 SC 1 2/c 16.9295; 7.6205; 7.5982
90; 118.381; 90
353.01Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565954 CIFCo H2 O5 SC 1 2/c 16.9354; 7.6179; 7.6043
90; 118.397; 90
353.42Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565955 CIFCo H2 O5 SC 1 2/c 16.9432; 7.6126; 7.6107
90; 118.441; 90
353.72Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565956 CIFCo H2 O5 SC 1 2/c 16.9526; 7.6051; 7.6184
90; 118.497; 90
354.02Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565957 CIFCo H2 O5 SC 1 2/c 16.9641; 7.599; 7.6275
90; 118.553; 90
354.56Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565958 CIFCo H2 O5 SC 1 2/c 16.9765; 7.5904; 7.6373
90; 118.616; 90
355.03Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565959 CIFH2 Ni O5 SC 1 2/c 16.7979; 7.6403; 7.4489
90; 117.51; 90
343.14Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565960 CIFH2 Ni O5 SC 1 2/c 16.7999; 7.6222; 7.4405
90; 117.579; 90
341.82Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565961 CIFH2 Ni O5 SC 1 2/c 16.8026; 7.6191; 7.445
90; 117.611; 90
341.93Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565962 CIFH2 Ni O5 SC 1 2/c 16.8037; 7.6178; 7.4371
90; 117.58; 90
341.66Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565963 CIFH2 Ni O5 SC 1 2/c 16.8069; 7.6152; 7.4398
90; 117.597; 90
341.77Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565964 CIFH2 Ni O5 SC 1 2/c 16.8115; 7.6122; 7.4444
90; 117.629; 90
341.98Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565965 CIFH2 Ni O5 SC 1 2/c 16.8176; 7.6098; 7.4513
90; 117.676; 90
342.35Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565966 CIFH2 Ni O5 SC 1 2/c 16.8252; 7.607; 7.4587
90; 117.724; 90
342.79Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565967 CIFH2 Ni O5 SC 1 2/c 16.8332; 7.6026; 7.4669
90; 117.776; 90
343.21Wildner, Manfred; Zakharov, Boris A.; Bogdanov, Nikita E.; Talla, Dominik; Boldyreva, Elena V.; Miletich, Ronald
Crystallography relevant to Mars and Galilean icy moons: crystal behavior of kieserite-type monohydrate sulfates at extraterrestrial conditions down to 15 K
IUCrJ, 2022, 9, 194-203
1565968 CIFC16 H22 Cl Cr F6 N5 O PP 1 21/c 19.2977; 18.09; 12.934
90; 96.379; 90
2161.97Das, Sandip; kulbir, Kulbir; Ray, Soumyadip; Devi, Tarali; Ghosh, Somnath; Harmalkar, Sarvesh S.; Dhuri, Sunder Narayan; Mondal, Padmabati; Kumar, Pankaj
Why Intermolecular Nitric Oxide (NO) Transfer? Exploring the Factors and Mechanistic Aspects of NO Transfer Reaction
Chemical Science, 2022
1565969 CIFC94 H76 B2 Cu2 F8 N4 P4P -113.074; 14.786; 14.943
61.869; 70.792; 66.806
2305Zheng, Dan; Huang, Ting-Hong; Luo, Cheng; Tang, Jing
Structural characterization, DFT studies and luminescent properties of dinuclear copper(I)-diimine complexes with the S-shape configurations
Inorganica Chimica Acta, 2022, 529, 120639
1565970 CIFC76 H68 B2 Cu2 F8 N4 P4P -110.047; 13.7944; 14.3988
92.486; 109.632; 101.325
1830Zheng, Dan; Huang, Ting-Hong; Luo, Cheng; Tang, Jing
Structural characterization, DFT studies and luminescent properties of dinuclear copper(I)-diimine complexes with the S-shape configurations
Inorganica Chimica Acta, 2022, 529, 120639
1565971 CIFC94 H72 B2 Cu2 F8 N4 O2 P4P -110.211; 14.868; 16.393
111.293; 91.589; 98.853
2281.8Zheng, Dan; Huang, Ting-Hong; Luo, Cheng; Tang, Jing
Structural characterization, DFT studies and luminescent properties of dinuclear copper(I)-diimine complexes with the S-shape configurations
Inorganica Chimica Acta, 2022, 529, 120639
1565972 CIFC20 H13 B Br NP c a 2122.958; 9.4271; 7.0146
90; 90; 90
1518.15Yuan, Kang; Volland, Daniel; Kirschner, Sven; Uzelac, Marina; Nichol, Gary S.; Nowak-Król, Agnieszka; Ingleson, Michael J.
Enhanced N-directed electrophilic C–H borylation generates BN–[5]- and [6]helicenes with improved photophysical properties
Chemical Science, 2022, 13, 1136-1145
1565973 CIFC33 H26 B NP -16.6409; 12.0504; 15.9138
78.061; 78.902; 79.901
1210.42Yuan, Kang; Volland, Daniel; Kirschner, Sven; Uzelac, Marina; Nichol, Gary S.; Nowak-Król, Agnieszka; Ingleson, Michael J.
Enhanced N-directed electrophilic C–H borylation generates BN–[5]- and [6]helicenes with improved photophysical properties
Chemical Science, 2022, 13, 1136-1145
1565974 CIFC34 H30 B NP 1 21/c 112.0461; 17.1985; 13.07
90; 109.463; 90
2553Yuan, Kang; Volland, Daniel; Kirschner, Sven; Uzelac, Marina; Nichol, Gary S.; Nowak-Król, Agnieszka; Ingleson, Michael J.
Enhanced N-directed electrophilic C–H borylation generates BN–[5]- and [6]helicenes with improved photophysical properties
Chemical Science, 2022, 13, 1136-1145
1565975 CIFC113 H252 F4 N6 O71 V24P 1 21/n 115.755; 25.4335; 21.5604
90; 92.253; 90
8632.7Kikukawa, Yuji; Sakamoto, Yui; Hirasawa, Hikari; Kurimoto, Yushi; Iwai, Hiroya; Hayashi, Yoshihito
Synthesis and oxidation catalysis of a difluoride-incorporated polyoxovanadate and isolation of active vanadium alkylperoxo species
Catalysis Science & Technology, 2022, 12, 2438-2445
1565976 CIFC59 H126 F2 N4 O34 V12P 1 21/n 117.7995; 23.6442; 20.9424
90; 91.945; 90
8808.6Kikukawa, Yuji; Sakamoto, Yui; Hirasawa, Hikari; Kurimoto, Yushi; Iwai, Hiroya; Hayashi, Yoshihito
Synthesis and oxidation catalysis of a difluoride-incorporated polyoxovanadate and isolation of active vanadium alkylperoxo species
Catalysis Science & Technology, 2022, 12, 2438-2445
1565977 CIFC52 H117 F2 N3 O32 V12P c a 2117.199; 21.6914; 54.059
90; 90; 90
20167.8Kikukawa, Yuji; Sakamoto, Yui; Hirasawa, Hikari; Kurimoto, Yushi; Iwai, Hiroya; Hayashi, Yoshihito
Synthesis and oxidation catalysis of a difluoride-incorporated polyoxovanadate and isolation of active vanadium alkylperoxo species
Catalysis Science & Technology, 2022, 12, 2438-2445
1565978 CIFC214 H136 Cl4 O4P 1 2/c 116.922; 17.1293; 27.104
90; 100.952; 90
7713.3Chen, Han; Xia, Zeming; Miao, Qian
Synthesis, aromatization and cavitates of an oxanorbornene-fused dibenzo[de,qr]tetracene nanobox
Chemical Science, 2022, 13, 2280-2285
1565979 CIFC148 H128 Cl14 O4P -114.1531; 17.009; 17.275
93.079; 100.115; 110.482
3805.1Chen, Han; Xia, Zeming; Miao, Qian
Synthesis, aromatization and cavitates of an oxanorbornene-fused dibenzo[de,qr]tetracene nanobox
Chemical Science, 2022, 13, 2280-2285
1565980 CIFC108 H62 Ca4 F8 O19P -110.0419; 15.6393; 42.1081
92.477; 91.364; 91.427
6602.7Wu, Zhao-Feng; Tan, Bin; Fu, Zhi-Hua; Velasco, Ever; Liu, Xing-Wu; Teat, Simon J.; Zhu, Kun; Xing, Kai; Huang, Xiao-Ying; Li, Jing
Achieving a blue-excitable yellow-emitting Ca-LMOF phosphor via water induced phase transformation
Chemical Science, 2022, 13, 1375-1381
1565981 CIFC100 H108 F6 N8 O2 S5P -116.0665; 17.2536; 17.4364
111.025; 94.188; 96.672
4446.7Li, Guoping; Feng, Liang-Wen; Mukherjee, Subhrangsu; Jones, Leighton O.; Jacobberger, Robert M.; Huang, Wei; Young, Ryan M.; Pankow, Robert M.; Zhu, Weigang; Lu, Norman; Kohlstedt, Kevin L.; Sangwan, Vinod K.; Wasielewski, Michael R.; Hersam, Mark C.; Schatz, George C.; DeLongchamp, Dean M.; Facchetti, Antonio; Marks, Tobin J.
Non-fullerene acceptors with direct and indirect hexa-fluorination afford >17% efficiency in polymer solar cells
Energy & Environmental Science, 2022, 15, 645-659
1565982 CIFC98 H102 F6 N8 O2 S5P 1 2/c 124.0563; 25.5964; 43.2943
90; 93.25; 90
26615.8Li, Guoping; Feng, Liang-Wen; Mukherjee, Subhrangsu; Jones, Leighton O.; Jacobberger, Robert M.; Huang, Wei; Young, Ryan M.; Pankow, Robert M.; Zhu, Weigang; Lu, Norman; Kohlstedt, Kevin L.; Sangwan, Vinod K.; Wasielewski, Michael R.; Hersam, Mark C.; Schatz, George C.; DeLongchamp, Dean M.; Facchetti, Antonio; Marks, Tobin J.
Non-fullerene acceptors with direct and indirect hexa-fluorination afford >17% efficiency in polymer solar cells
Energy & Environmental Science, 2022, 15, 645-659
1565983 CIF
HKL
Paper
Al61.49 Mn11.35 Ni4C m c m7.6135; 23.9582; 12.4828
90; 90; 90
2276.93Hu, Qifa; Wen, Bin; Fan, Changzeng
The Al~61.49~Mn~11.35~Ni~4~ phase in the Al–Mn–Ni system
IUCrData, 2022, 7, x220038
1565984 CIF
HKL
Paper
C14 H12 Br2 O2 SP b c a16.53; 12.81; 13.46
90; 90; 90
2850Corfield, Peter W. R.
[Sulfonylbis(bromomethylene)]dibenzene
IUCrData, 2022, 7, x211351
1565985 CIF
HKL
Paper
C22 H26 Cu N8 O4P -16.3657; 8.1428; 12.1896
72.595; 89.376; 87.805
602.47Liu, Lin; Han, Zheng-Bo
Bis(dimethylamine-κ<i>N</i>)bis[4-(1,2,4-triazol-1-yl)benzoato-κ<i>O</i>]copper(II)
IUCrData, 2022, 7, x220046
1565987 CIF
HKL
C26 H32 N4 O8 ZnP -18.4854; 8.9023; 10.1517
68.874; 65.755; 77.396
650Dissem, Nour; Ferhi, Najmeddine; Maris, Thierry; Duong, Adam
Design, structural characterization and Hirshfeld surface analysis of Ni(II) and Zn(II) coordination polymers using mixed linker synthetic strategy based on tetratopic and macrocyclic N-donor ligands
Journal of Molecular Structure, 2022, 1254, 132317
1565988 CIF
HKL
C36 H54 N8 Ni2 O8P -18.1759; 10.9024; 11.1088
98.356; 99.482; 100.719
943.68Dissem, Nour; Ferhi, Najmeddine; Maris, Thierry; Duong, Adam
Design, structural characterization and Hirshfeld surface analysis of Ni(II) and Zn(II) coordination polymers using mixed linker synthetic strategy based on tetratopic and macrocyclic N-donor ligands
Journal of Molecular Structure, 2022, 1254, 132317
1565989 CIF
HKL
C32 H36 N4 Ni O8P -18.7501; 9.4842; 10.6727
70.743; 68.904; 80.513
779.04Dissem, Nour; Ferhi, Najmeddine; Maris, Thierry; Duong, Adam
Design, structural characterization and Hirshfeld surface analysis of Ni(II) and Zn(II) coordination polymers using mixed linker synthetic strategy based on tetratopic and macrocyclic N-donor ligands
Journal of Molecular Structure, 2022, 1254, 132317
1565990 CIF
HKL
C37 H49 N6 O9 Zn1.5P -19.8822; 10.8076; 19.0586
91.26; 99.324; 111.144
1866.23Dissem, Nour; Ferhi, Najmeddine; Maris, Thierry; Duong, Adam
Design, structural characterization and Hirshfeld surface analysis of Ni(II) and Zn(II) coordination polymers using mixed linker synthetic strategy based on tetratopic and macrocyclic N-donor ligands
Journal of Molecular Structure, 2022, 1254, 132317
1565992 CIFC80 H199 K4 O99.5 P2P 42 21 223.4286; 23.4286; 24.2838
90; 90; 90
13329.4Scelle, Jérémy; Vervoitte, Hugo; Bouteiller, Laurent; Chamoreau, Lise-Marie; Sollogoub, Matthieu; Vives, Guillaume; Hasenknopf, Bernold
Size-dependent compression of threaded alkyldiphosphate in head to head cyclodextrin [3]pseudorotaxanes
Chemical Science, 2022, 13, 2218-2225
1565993 CIFC81 H195 K4 O96.5 P2P 42 21 223.5333; 23.5333; 24.406
90; 90; 90
13516Scelle, Jérémy; Vervoitte, Hugo; Bouteiller, Laurent; Chamoreau, Lise-Marie; Sollogoub, Matthieu; Vives, Guillaume; Hasenknopf, Bernold
Size-dependent compression of threaded alkyldiphosphate in head to head cyclodextrin [3]pseudorotaxanes
Chemical Science, 2022, 13, 2218-2225
1565994 CIFC168 H443 K8 O213.5 P4P 1 21 122.944; 13.9699; 44.772
90; 92.681; 90
14335Scelle, Jérémy; Vervoitte, Hugo; Bouteiller, Laurent; Chamoreau, Lise-Marie; Sollogoub, Matthieu; Vives, Guillaume; Hasenknopf, Bernold
Size-dependent compression of threaded alkyldiphosphate in head to head cyclodextrin [3]pseudorotaxanes
Chemical Science, 2022, 13, 2218-2225
1565995 CIFC82 H201.75 K4 O98.88 P2P 43 21 223.3244; 23.3244; 48.784
90; 90; 90
26540Scelle, Jérémy; Vervoitte, Hugo; Bouteiller, Laurent; Chamoreau, Lise-Marie; Sollogoub, Matthieu; Vives, Guillaume; Hasenknopf, Bernold
Size-dependent compression of threaded alkyldiphosphate in head to head cyclodextrin [3]pseudorotaxanes
Chemical Science, 2022, 13, 2218-2225
1565996 CIFC17 H26 B F O4 SP 1 21/n 111.1868; 10.5562; 15.7691
90; 106.7; 90
1783.6Tao, Xiangzhang; Ni, Shengyang; Kong, Lingyu; Wang, Yi; Pan, Yi
Radical Boron Walking of Allylboronic Esters
Chemical Science, 2022
1565997 CIFC13 H29 B2 Nd O2P 1 21/c 115.1747; 7.9459; 15.6507
90; 109.255; 90
1781.54Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1565998 CIFC30 H58 B2 Na Nd O8P 1 21/c 19.2168; 21.925; 17.7809
90; 94.5619; 90
3581.8Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1565999 CIFC14 H22 B Nd OP 1 21/c 18.0165; 14.0995; 13.664
90; 106.997; 90
1476.96Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1566000 CIFC26 H50 B2 Na Nd O7P c a 2124.842; 14.238; 18.216
90; 90; 90
6443Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1566001 CIFC57 H109 B5 Na Nd3 O14P 1 21/n 120.668; 13.072; 25.51
90; 93.12; 90
6882Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1566002 CIFC27 H45.39 B1.6 Cl1.4 O6 Tb2P 1 21/c 111.254; 11.7537; 24.0869
90; 95.079; 90
3173.6Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1566003 CIFC32.5 H58.5 B1.5 Na Nd O8P 31 2 113.8957; 13.8957; 34.124
90; 90; 120
5706.3Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1566004 CIFC32.5 H58.5 B1.5 Na O8 TbP 32 2 113.8128; 13.8128; 33.7
90; 90; 120
5568.3Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1566005 CIFC58.39 H109.28 B4.72 La3 Na O14P 1 21/n 120.6479; 13.1522; 25.776
90; 92.54; 90
6993Bardonov, Daniil A.; Komarov, Pavel D.; Sadrtdinova, Guzelia I.; Besprozvannyh, Viktoria K.; Lyssenko, Konstantin A.; Gudovannyy, Alexei O.; Nifant'ev, Ilya E.; Minyaev, Mikhail E.; Roitershtein, Dmitrii M.
Cyclopentadienyl lanthanide borohydrides derived from the unsubstituted cyclopentadienyl ligand. Unprecedented structural diversity and ε-caprolactone polymerization
Inorganica Chimica Acta, 2022, 529, 120638
1566006 CIFC21 H20 N2 O5C 1 2/c 128.4132; 4.957; 25.9948
90; 91.098; 90
3660.5Yao, Guang-Xu; Zhang, Jin-Qiang; Li, Peng; Liu, Hui; Wang, Li; Sun, Yin-Xia; Dong, Wen-Kui
A unitary fluorescence probe to sense Co2+: Validated by theoretical studies and X-ray crystallography
Inorganica Chimica Acta, 2022, 529, 120642
1566007 CIFC50 H58 Co3 N4 O18P -110.7978; 11.712; 12.4107
105.267; 112.786; 103.687
1290.84Yao, Guang-Xu; Zhang, Jin-Qiang; Li, Peng; Liu, Hui; Wang, Li; Sun, Yin-Xia; Dong, Wen-Kui
A unitary fluorescence probe to sense Co2+: Validated by theoretical studies and X-ray crystallography
Inorganica Chimica Acta, 2022, 529, 120642
1566008 CIFC16 H17 Cl Cu N4 O6P -18.8691; 10.1399; 11.7773
77.18; 77.012; 66.128
933.52Han, Xiu-Juan; Li, Ruo-Yu; Yue, Yong-Ning; Zhang, Yang; Dong, Wen-Kui
Studying anion-dependent paradoxically fluorescent Cu(II) complexes bearing a pyridine-decorated tetradentate half-salamo-like ligand
Inorganica Chimica Acta, 2022, 529, 120634
1566009 CIFC15 H13 Br Cu N4 O5P 1 21/n 110.1814; 11.8905; 13.7196
90; 93.703; 90
1657.45Han, Xiu-Juan; Li, Ruo-Yu; Yue, Yong-Ning; Zhang, Yang; Dong, Wen-Kui
Studying anion-dependent paradoxically fluorescent Cu(II) complexes bearing a pyridine-decorated tetradentate half-salamo-like ligand
Inorganica Chimica Acta, 2022, 529, 120634
1566010 CIFC15 H13 Cu N5 O8P 1 21/c 117.2783; 11.857; 17.5045
90; 106.222; 90
3443.35Han, Xiu-Juan; Li, Ruo-Yu; Yue, Yong-Ning; Zhang, Yang; Dong, Wen-Kui
Studying anion-dependent paradoxically fluorescent Cu(II) complexes bearing a pyridine-decorated tetradentate half-salamo-like ligand
Inorganica Chimica Acta, 2022, 529, 120634
1566011 CIFC16 H13 Br Cl2 Mo N2 O5P 1 21/c 113.8585; 8.0415; 17.6091
90; 92.087; 90
1961.1Yang, Shuang; Li, Gong; Yang, Yujie; Zhu, Mengdi; Fu, Yuejiao; Xing, Na; Shi, Lei
Styrene selective oxidation to benzaldehyde catalyzed by acylhydrazone Mo complexes: Reaction parameter effects and kinetics
Inorganica Chimica Acta, 2022, 529, 120643
1566012 CIFC17 H16 Cl2 Mo N2 O7P 1 21/n 17.6789; 16.0866; 16.4934
90; 101.267; 90
1998.1Yang, Shuang; Li, Gong; Yang, Yujie; Zhu, Mengdi; Fu, Yuejiao; Xing, Na; Shi, Lei
Styrene selective oxidation to benzaldehyde catalyzed by acylhydrazone Mo complexes: Reaction parameter effects and kinetics
Inorganica Chimica Acta, 2022, 529, 120643
1566013 CIFC17 H13 Cl2 F3 Mo N2 O5P 1 21/c 113.9165; 8.1234; 17.7116
90; 91.574; 90
2001.5Yang, Shuang; Li, Gong; Yang, Yujie; Zhu, Mengdi; Fu, Yuejiao; Xing, Na; Shi, Lei
Styrene selective oxidation to benzaldehyde catalyzed by acylhydrazone Mo complexes: Reaction parameter effects and kinetics
Inorganica Chimica Acta, 2022, 529, 120643
1566014 CIFC76 H72 N8 O8 Zn2P 1 21/c 121.6846; 14.7454; 20.9637
90; 96.318; 90
6662.4Niklas, J.E.; Hiti, E.A.; Wilkinson, G.R.; Mayhugh, J.T.; Gorden, J.D.; Gorden, A.E.V.
Steric control of mesocate and helicate formation: Bulky pyrrol-2-yl Schiff base complexes of Zn2+
Inorganica Chimica Acta, 2022, 529, 120653
1566015 CIFC152 H136 N16 O16 Zn4I 41/a :224.2528; 24.2528; 27.6148
90; 90; 90
16243Niklas, J.E.; Hiti, E.A.; Wilkinson, G.R.; Mayhugh, J.T.; Gorden, J.D.; Gorden, A.E.V.
Steric control of mesocate and helicate formation: Bulky pyrrol-2-yl Schiff base complexes of Zn2+
Inorganica Chimica Acta, 2022, 529, 120653
1566016 CIFC16 H17 Cd N2 O9P 1 21/c 110.1392; 11.9917; 14.7623
90; 102.151; 90
1754.7Yadav, Archana; Somnath,; Ahmad, Musheer; Ahmad Siddiqui, Kafeel
Luminescent properties of activated forms of rigid ligand Cd(II)-coordination polymers sustained by hydrogen bond
Inorganica Chimica Acta, 2022, 529, 120660
1566017 CIFC28 H30 Cd2 N4 O9P 1 21/n 113.276; 11.7677; 19.5156
90; 91.2; 90
3048.2Yadav, Archana; Somnath,; Ahmad, Musheer; Ahmad Siddiqui, Kafeel
Luminescent properties of activated forms of rigid ligand Cd(II)-coordination polymers sustained by hydrogen bond
Inorganica Chimica Acta, 2022, 529, 120660
1566018 CIFC30 H26 Mn3 N8 O14C 1 2/c 119.9292; 12.4197; 16.6687
90; 121.532; 90
3516.57Cao, Yexia; Li, Huiqing; Yin, Aiping
A two-dimensional manganese coordination polymer: Crystal structure, proton conductivity and catalytic property
Inorganica Chimica Acta, 2022, 529, 120658
1566019 CIFC20 H32 Cl4 Co2 N4 O8P -17.3616; 9.0186; 11.5236
73.4; 88.075; 73.363
701.52Areas, Esther S.; Junior, Henrique C.S.; Freitas, Brunno P.; Ferreira, Glaucio B.; Guedes, Guilherme P.
Homobinuclear compounds based on a chiral oxazolidine ligand: From solid state study to aqueous solution dynamics
Inorganica Chimica Acta, 2022, 529, 120664
1566020 CIFC20 H28 Cl4 Cu2 N4 O6P 1 21/c 110.0374; 13.0712; 10.6263
90; 113.494; 90
1278.6Areas, Esther S.; Junior, Henrique C.S.; Freitas, Brunno P.; Ferreira, Glaucio B.; Guedes, Guilherme P.
Homobinuclear compounds based on a chiral oxazolidine ligand: From solid state study to aqueous solution dynamics
Inorganica Chimica Acta, 2022, 529, 120664
1566021 CIFC20 H24 Br2 Co N4 O2C 1 2 114.659; 9.0379; 8.452
90; 112.93; 90
1031.3Mitsuhashi, Ryoji; Hosoya, Satoshi; Sunatsuki, Yukinari; Suzuki, Takayoshi; Mikuriya, Masahiro
Field-induced single-ion magnet behaviors in 1-dimensionally assembled tetrahedral cobalt(II) complexes with halide donors
Inorganica Chimica Acta, 2022, 529, 120667
1566022 CIFC20 H24 Cl2 Co N4 O2P 1 21/c 113.7553; 9.6308; 16.501
90; 106.159; 90
2099.6Mitsuhashi, Ryoji; Hosoya, Satoshi; Sunatsuki, Yukinari; Suzuki, Takayoshi; Mikuriya, Masahiro
Field-induced single-ion magnet behaviors in 1-dimensionally assembled tetrahedral cobalt(II) complexes with halide donors
Inorganica Chimica Acta, 2022, 529, 120667
1566023 CIFC20 H24 Co I2 N4 O2C 1 2 114.564; 9.4125; 8.5445
90; 112.074; 90
1085.5Mitsuhashi, Ryoji; Hosoya, Satoshi; Sunatsuki, Yukinari; Suzuki, Takayoshi; Mikuriya, Masahiro
Field-induced single-ion magnet behaviors in 1-dimensionally assembled tetrahedral cobalt(II) complexes with halide donors
Inorganica Chimica Acta, 2022, 529, 120667
1566024 CIFC14 H12 Cl2 N2 O4 Pd Se2R -3 c :H25.3661; 25.3661; 17.425
90; 90; 120
9709.8Karmakar, Gourab; Tyagi, Adish; Kedarnath, G.; Naveen Kumar, N.; Phadnis, Prasad P.; Mishra, Ratikanta; Kumar, Mukesh
Preparation and characterization of colloidal Pd17Se15 nanoparticles from a novel Pd(II) pyridyl selenoether molecular precursor
Inorganica Chimica Acta, 2022, 529, 120668
1566025 CIFC45 H56 Cl3 Cr N20 O13P 41 21 220.623; 20.623; 31.896
90; 90; 90
13566Zheng, Jun; Meng, Ye; Zhang, Lin; Yang, Xinan; Ma, Peihua
Metal-induced different structures of four cyclopentanocucurbit[5]uril-based complexes
Inorganica Chimica Acta, 2022, 529, 120669
1566026 CIFC45 H58 Cl8 Co3 N20 O14P n m a27.808; 19.906; 13.3851
90; 90; 90
7409.3Zheng, Jun; Meng, Ye; Zhang, Lin; Yang, Xinan; Ma, Peihua
Metal-induced different structures of four cyclopentanocucurbit[5]uril-based complexes
Inorganica Chimica Acta, 2022, 529, 120669
1566027 CIFC45 H64 Cl6 Hg2 N22 O13P 1 21/n 110.9075; 15.7904; 35.312
90; 93.228; 90
6072.3Zheng, Jun; Meng, Ye; Zhang, Lin; Yang, Xinan; Ma, Peihua
Metal-induced different structures of four cyclopentanocucurbit[5]uril-based complexes
Inorganica Chimica Acta, 2022, 529, 120669
1566028 CIFC90 H112 Cl8 N40 O55 Pb4P 1 21/n 127.305; 14.774; 33.7
90; 102.518; 90
13272Zheng, Jun; Meng, Ye; Zhang, Lin; Yang, Xinan; Ma, Peihua
Metal-induced different structures of four cyclopentanocucurbit[5]uril-based complexes
Inorganica Chimica Acta, 2022, 529, 120669
1566029 CIFC29 H36 Fe2 N2 O7 P2P -19.17932; 13.979; 14.4063
113.213; 106.029; 94.152
1598.14van Beek, Cody; van Leest, Nicolaas P.; Lutz, Martin; de Vos, Sander D.; Klein Gebbink, Robertus J.M.; de Bruin, Bas; Broere, Daniel L. J.
Combining Metal‐Metal Cooperativity, Metal‐Ligand Cooperativity and Chemical Non‐Innocence in Diiron Carbonyl Complexes
Chemical Science, 2022
1566030 CIFC31 H43 Fe2 K N2 O6 P2C 1 2/c 124.953; 10.2928; 28.5081
90; 106.275; 90
7028.5van Beek, Cody; van Leest, Nicolaas P.; Lutz, Martin; de Vos, Sander D.; Klein Gebbink, Robertus J.M.; de Bruin, Bas; Broere, Daniel L. J.
Combining Metal‐Metal Cooperativity, Metal‐Ligand Cooperativity and Chemical Non‐Innocence in Diiron Carbonyl Complexes
Chemical Science, 2022
1566031 CIFC36 H45 Fe2 N2 O5 P2P 1 21/c 19.2797; 23.4414; 16.6539
90; 95.972; 90
3603van Beek, Cody; van Leest, Nicolaas P.; Lutz, Martin; de Vos, Sander D.; Klein Gebbink, Robertus J.M.; de Bruin, Bas; Broere, Daniel L. J.
Combining Metal‐Metal Cooperativity, Metal‐Ligand Cooperativity and Chemical Non‐Innocence in Diiron Carbonyl Complexes
Chemical Science, 2022
1566032 CIFC37 H51 Fe2 K N2 O9 P2P -18.9778; 14.3123; 17.4153
80.797; 83.74; 76.749
2144van Beek, Cody; van Leest, Nicolaas P.; Lutz, Martin; de Vos, Sander D.; Klein Gebbink, Robertus J.M.; de Bruin, Bas; Broere, Daniel L. J.
Combining Metal‐Metal Cooperativity, Metal‐Ligand Cooperativity and Chemical Non‐Innocence in Diiron Carbonyl Complexes
Chemical Science, 2022
1566033 CIFC25 H28 N O6 SP 1 21 110.34486; 10.19459; 12.07537
90; 105.047; 90
1229.82Ji, Dong-Sheng; Liang, Hui; Yang, Kai-Xuan; Feng, Zhitao; Luo, Yong-Chun; Xu, Guo-Qiang; Gu, Yucheng; Xu, Peng-Fei
Solvent Directed Chemical Divergent Synthesis of β-Lactams and α-Amino Acid Derivatives with Chiral Isothiourea
Chemical Science, 2022
1566034 CIFC26 H27 N O5P 21 21 218.3138; 11.6736; 25.1152
90; 90; 90
2437.48Ji, Dong-Sheng; Liang, Hui; Yang, Kai-Xuan; Feng, Zhitao; Luo, Yong-Chun; Xu, Guo-Qiang; Gu, Yucheng; Xu, Peng-Fei
Solvent Directed Chemical Divergent Synthesis of β-Lactams and α-Amino Acid Derivatives with Chiral Isothiourea
Chemical Science, 2022
1566035 CIFC26 H27 N O5P -18.76363; 11.32074; 13.30299
97.5; 93.5092; 110.66
1216.15Ji, Dong-Sheng; Liang, Hui; Yang, Kai-Xuan; Feng, Zhitao; Luo, Yong-Chun; Xu, Guo-Qiang; Gu, Yucheng; Xu, Peng-Fei
Solvent Directed Chemical Divergent Synthesis of β-Lactams and α-Amino Acid Derivatives with Chiral Isothiourea
Chemical Science, 2022
1566036 CIFCa3 Cs2 O16 S4P 1 21/c 19.9153; 9.376; 9.8044
90; 118.365; 90
802.04Fang, Penglin; Tang, Wenyue; Shen, Yaoguo; Hong, Jinquan; Li, Yongming; Jia, Junrong
Crystal Structure and Theoretical Analysis of Cs2Ca3(SO4)4
Crystals, 2022, 12, 126
1566045 CIFC26 H22 F3 N O2 SP 21 21 217.4436; 16.0587; 38.2012
90; 90; 90
4566.4Volla, Chandra; Singh, Anurag; Shukla, Rahul Kumar
Rh(III)-Catalyzed [5+1] Annulation of 2-Alkenylanilides and 2-Alkenylphenols with Allenyl Acetates
Chemical Science, 2022
1566046 CIFC16 H19 N O3 SP 17.6588; 7.9714; 12.8907
99.211; 90.731; 99.142
766.39Iwumene, Ndidi U. N.; Moseley, Daniel. F.; Pullin, Robert D. C.; Willis, Michael C.
Diverse saturated heterocycles from a hydroacylation/conjugate addition cascade
Chemical Science, 2022, 13, 1504-1511
1566047 CIFC14 H20 O3 SP 1 21/n 112.2921; 7.393; 15.8524
90; 103.199; 90
1402.54Iwumene, Ndidi U. N.; Moseley, Daniel. F.; Pullin, Robert D. C.; Willis, Michael C.
Diverse saturated heterocycles from a hydroacylation/conjugate addition cascade
Chemical Science, 2022, 13, 1504-1511
1566048 CIFC19 H20 O3 SP 1 21/n 123.8127; 5.6108; 24.8367
90; 90.39; 90
3318.3Iwumene, Ndidi U. N.; Moseley, Daniel. F.; Pullin, Robert D. C.; Willis, Michael C.
Diverse saturated heterocycles from a hydroacylation/conjugate addition cascade
Chemical Science, 2022, 13, 1504-1511
1566049 CIFC20 H27 N O5P 1 21/c 111.6377; 19.035; 18.0198
90; 107.936; 90
3797.8Iwumene, Ndidi U. N.; Moseley, Daniel. F.; Pullin, Robert D. C.; Willis, Michael C.
Diverse saturated heterocycles from a hydroacylation/conjugate addition cascade
Chemical Science, 2022, 13, 1504-1511
1566050 CIFC36 H22 Cl3 Er F3 N3 O7P 1 21/c 115.3166; 21.618; 10.8184
90; 110.121; 90
3363.5Geng, Shuo; Ren, Ning; Zhang, Ying-Ying; Tang, Kun; Zhang, Jian-Jun
Studies on preparation, crystal structure, thermal properties and fluorescence properties of rare earth complexes composed of 2-chloro-4-fluorobenzoic acid and 2,2':6′,2″-terpyridine
Journal of Solid State Chemistry, 2022, 305, 122633
1566051 CIFC36 H22 Cl3 F3 N3 O7 TbP -111.08; 13.9401; 14.1602
76.98; 89.35; 68.201
1972.2Geng, Shuo; Ren, Ning; Zhang, Ying-Ying; Tang, Kun; Zhang, Jian-Jun
Studies on preparation, crystal structure, thermal properties and fluorescence properties of rare earth complexes composed of 2-chloro-4-fluorobenzoic acid and 2,2':6′,2″-terpyridine
Journal of Solid State Chemistry, 2022, 305, 122633
1566052 CIFC36 H22 Cl3 Eu F3 N3 O7P -111.0096; 13.9555; 14.0144
76.979; 89.351; 68.06
1939.6Geng, Shuo; Ren, Ning; Zhang, Ying-Ying; Tang, Kun; Zhang, Jian-Jun
Studies on preparation, crystal structure, thermal properties and fluorescence properties of rare earth complexes composed of 2-chloro-4-fluorobenzoic acid and 2,2':6′,2″-terpyridine
Journal of Solid State Chemistry, 2022, 305, 122633
1566053 CIFC36 H22 Cl3 F3 Ho N3 O7P 1 21/c 115.3568; 21.6318; 10.8179
90; 110.096; 90
3374.9Geng, Shuo; Ren, Ning; Zhang, Ying-Ying; Tang, Kun; Zhang, Jian-Jun
Studies on preparation, crystal structure, thermal properties and fluorescence properties of rare earth complexes composed of 2-chloro-4-fluorobenzoic acid and 2,2':6′,2″-terpyridine
Journal of Solid State Chemistry, 2022, 305, 122633
1566054 CIFC45 H35 Co4 N3 O24P 1 21/c 128.03; 16.636; 17.048
90; 105.95; 90
7644Ding, Tao; Chen, Jing-Ru; Chen, Jing-Jing; Li, Zi-Yu; Gao, Dan; Zheng, Li-Na; Gao, Zi-Wei
Construction of two new Co(II)-organic frameworks based on diverse metal clusters: Highly selective C2H2 and CO2 capture and magnetic properties
Journal of Solid State Chemistry, 2022, 305, 122629
1566055 CIFC127 H63.95 Co12 N6 O60P m m n :229.348; 30.145; 18.0453
90; 90; 90
15965Ding, Tao; Chen, Jing-Ru; Chen, Jing-Jing; Li, Zi-Yu; Gao, Dan; Zheng, Li-Na; Gao, Zi-Wei
Construction of two new Co(II)-organic frameworks based on diverse metal clusters: Highly selective C2H2 and CO2 capture and magnetic properties
Journal of Solid State Chemistry, 2022, 305, 122629
1566056 CIFC40 H32 Co N2 O16P 1 21/n 122.4661; 7.4237; 24.5482
90; 114.956; 90
3711.92Yin, Meng-Ru; Yan, Qing-Qing; Li, Bin; Yong, Guo-Ping
Syntheses, structures, luminescence and CO2 gas adsorption properties of four three-dimensional heterobimetallic metal–organic frameworks
Journal of Solid State Chemistry, 2022, 305, 122672
1566057 CIFC20 H12 Co N Na O7A e a 227.1599; 26.0222; 6.0047
90; 90; 90
4243.9Yin, Meng-Ru; Yan, Qing-Qing; Li, Bin; Yong, Guo-Ping
Syntheses, structures, luminescence and CO2 gas adsorption properties of four three-dimensional heterobimetallic metal–organic frameworks
Journal of Solid State Chemistry, 2022, 305, 122672
1566058 CIFC20 H12 N Na Ni O7A e a 227.0821; 25.8325; 5.97853
90; 90; 90
4182.57Yin, Meng-Ru; Yan, Qing-Qing; Li, Bin; Yong, Guo-Ping
Syntheses, structures, luminescence and CO2 gas adsorption properties of four three-dimensional heterobimetallic metal–organic frameworks
Journal of Solid State Chemistry, 2022, 305, 122672
1566059 CIFCu F O4 P PbP 1 21/c 14.9323; 9.2826; 8.8
90; 90.075; 90
402.904Long, Jingwen; Huang, Xing; Cui, Meiyan; Zhao, Zhiying; He, Zhangzhen
Synthesis, structure and magnetic behaviors of a new fluorophosphate PbCuPO4F
Journal of Solid State Chemistry, 2022, 305, 122666
1566060 CIFBi2.02 Cd0.98 S4C 1 2/m 113.12051; 3.98623; 14.6231
90; 116.278; 90
685.769Matyszczak, Grzegorz; Sutuła, Szymon; Krawczyk, Krzysztof; Woźniak, Krzysztof
Experimental and theoretical study of crystal structure and bandgap of CdBi2S4
Journal of Solid State Chemistry, 2022, 305, 122695
1566061 CIFC18 H16 Cu N6 O6P 1 21/n 16.7918; 10.8202; 13.232
90; 104.493; 90
941.46Ji, Xiaoxi; Zhu, Xiaopeng; Chen, Shiyu; Song, Dongxue; Wu, Shuangyan; Zhang, Ying; Gao, Enjun; Xu, Jin; Zhu, Mingchang
Two Cu(II) and Zn(II) complexes derived from 5-(Pyrazol-1-yl)nicotinic acid: Crystal structure, DNA binding and anticancer studies
Journal of Solid State Chemistry, 2022, 305, 122707
1566062 CIFC18 H17 N6 O6 ZnP 1 21/n 111.9796; 10.0261; 16.1223
90; 95.807; 90
1926.5Ji, Xiaoxi; Zhu, Xiaopeng; Chen, Shiyu; Song, Dongxue; Wu, Shuangyan; Zhang, Ying; Gao, Enjun; Xu, Jin; Zhu, Mingchang
Two Cu(II) and Zn(II) complexes derived from 5-(Pyrazol-1-yl)nicotinic acid: Crystal structure, DNA binding and anticancer studies
Journal of Solid State Chemistry, 2022, 305, 122707
1566063 CIFC20 H17 N3 O4 ZnP 439.102; 9.102; 24.6
90; 90; 90
2038Wan, Xiaoyu; Zhang, Yifan; Wang, Huaiwei; Lu, Jing; Li, Dacheng; Dou, Jianmin; Li, Yunwu; Wang, Suna
One amino-functionalized luminescence sensor demonstrating high sensitivity and selectivity for detecting Al3+ and Cu2+ as well as its luminescent mixed matrix membranes and test papers
Journal of Solid State Chemistry, 2022, 305, 122705
1566064 CIFC20 H18 N2 O5 ZnP -18.4412; 10.0314; 12.6984
97.041; 109.067; 102.585
969.73Wan, Xiaoyu; Zhang, Yifan; Wang, Huaiwei; Lu, Jing; Li, Dacheng; Dou, Jianmin; Li, Yunwu; Wang, Suna
One amino-functionalized luminescence sensor demonstrating high sensitivity and selectivity for detecting Al3+ and Cu2+ as well as its luminescent mixed matrix membranes and test papers
Journal of Solid State Chemistry, 2022, 305, 122705
1566065 CIFC16 H42.63 N8 O19.32 Zn2P -17.3742; 10.054; 10.7563
105.577; 91.084; 102.676
746.88Case, Derek R.; Brennessel, William W.; Zubieta, Jon; Doyle, Robert P.
Synthesis, characterization and crystal structure of a glycylglycinate chelate of zinc(II)
Results in Chemistry, 2022, 4, 100274
1566071 CIFC51 H54 B N3C 1 2/c 115.4761; 32.994; 18.061
90; 87; 90
9209.6Meng, Guoyun; Liu, Lijie; He, Zhechang; Hall, David; Wang, Xiang; Peng, Tai; Yin, Xiaodong; Chen, Pangkuan; Beljonne, David; Olivier, Yoann; Zysman-Colman, Eli; Wang, Nan; Wang, Suning
Multi-resonant thermally activated delayed fluorescence emitters based on tetracoordinate boron-containing PAHs: colour tuning based on the nature of chelates
Chemical Science, 2022
1566072 CIFC52 H54 B Cl2 N3P -111.2074; 13.1456; 15.4247
72.412; 80.497; 85.153
2135.1Meng, Guoyun; Liu, Lijie; He, Zhechang; Hall, David; Wang, Xiang; Peng, Tai; Yin, Xiaodong; Chen, Pangkuan; Beljonne, David; Olivier, Yoann; Zysman-Colman, Eli; Wang, Nan; Wang, Suning
Multi-resonant thermally activated delayed fluorescence emitters based on tetracoordinate boron-containing PAHs: colour tuning based on the nature of chelates
Chemical Science, 2022
1566073 CIFC37 H24 S2P n m a21.2609; 17.4543; 7.089
90; 90; 90
2630.69Chen, Xuan-Wen; Chu, Ke-Shan; Wei, Rong-Jing; Qiu, Zhen-Lin; Tang, Chun; Tan, Yuan-Zhi
Phenylene segments of zigzag carbon nanotubes synthesized by metal-mediated dimerization
Chemical Science, 2022
1566074 CIFC88 H118 Au4 Cl4 P4P 1 21/n 116.7069; 15.0274; 16.9838
90; 90.962; 90
4263.37Chen, Xuan-Wen; Chu, Ke-Shan; Wei, Rong-Jing; Qiu, Zhen-Lin; Tang, Chun; Tan, Yuan-Zhi
Phenylene segments of zigzag carbon nanotubes synthesized by metal-mediated dimerization
Chemical Science, 2022
1566075 CIFC68 H44P 1 21/c 118.1646; 6.4798; 25.8994
90; 107.36; 90
2909.58Chen, Xuan-Wen; Chu, Ke-Shan; Wei, Rong-Jing; Qiu, Zhen-Lin; Tang, Chun; Tan, Yuan-Zhi
Phenylene segments of zigzag carbon nanotubes synthesized by metal-mediated dimerization
Chemical Science, 2022
1566076 CIFC45 H28 S2P 1 21/n 122.7656; 5.8183; 26.2196
90; 111.135; 90
3239.4Chen, Xuan-Wen; Chu, Ke-Shan; Wei, Rong-Jing; Qiu, Zhen-Lin; Tang, Chun; Tan, Yuan-Zhi
Phenylene segments of zigzag carbon nanotubes synthesized by metal-mediated dimerization
Chemical Science, 2022
1566077 CIFC130 H44 S4P 1 21/c 111.972; 21.5606; 15.2604
90; 100.313; 90
3875.43Chen, Xuan-Wen; Chu, Ke-Shan; Wei, Rong-Jing; Qiu, Zhen-Lin; Tang, Chun; Tan, Yuan-Zhi
Phenylene segments of zigzag carbon nanotubes synthesized by metal-mediated dimerization
Chemical Science, 2022
1566078 CIFC123 H80 S6P -110.8159; 18.1529; 25.9016
74.817; 83.098; 82.344
4844.88Chen, Xuan-Wen; Chu, Ke-Shan; Wei, Rong-Jing; Qiu, Zhen-Lin; Tang, Chun; Tan, Yuan-Zhi
Phenylene segments of zigzag carbon nanotubes synthesized by metal-mediated dimerization
Chemical Science, 2022
1566079 CIFC54.5 H65 Cl5 N12 O8 Pd4C 1 2/c 139.352; 14.1869; 22.175
90; 96.411; 90
12303Zhang, Shuaizhong; Zhang, Jinquan; Zou, Hongbin
C(sp3)–H oxygenation via alkoxypalladium(ii) species: an update for the mechanism
Chemical Science, 2022, 13, 1298-1306
1566080 CIFC26 H44 Fe N10P n n a13.1007; 11.6128; 20.0929
90; 90; 90
3056.8Shaw, Bikash Kumar; Bennett, Thomas Douglas; Castillo Blas, Celia; Thorne, Michael Francis; Gómez, María Laura Ríos; Forrest, Thomas; Keen, David A.; Diaz-Lopez, Maria; Chater, Philip A.; McHugh, Lauren Nicole
Principles of Melting in Hybrid Organic-Inorganic Perovskite and Polymorphic ABX3 Structures
Chemical Science, 2022
1566081 CIFC26 H44 Co N10P n n a13.066; 11.6026; 19.926
90; 90; 90
3020.8Shaw, Bikash Kumar; Bennett, Thomas Douglas; Castillo Blas, Celia; Thorne, Michael Francis; Gómez, María Laura Ríos; Forrest, Thomas; Keen, David A.; Diaz-Lopez, Maria; Chater, Philip A.; McHugh, Lauren Nicole
Principles of Melting in Hybrid Organic-Inorganic Perovskite and Polymorphic ABX3 Structures
Chemical Science, 2022
1566082 CIFC21.99 H35.67 Co N10P 21 21 215.7659; 15.7712; 21.2815
90; 90; 90
5291.6Shaw, Bikash Kumar; Bennett, Thomas Douglas; Castillo Blas, Celia; Thorne, Michael Francis; Gómez, María Laura Ríos; Forrest, Thomas; Keen, David A.; Diaz-Lopez, Maria; Chater, Philip A.; McHugh, Lauren Nicole
Principles of Melting in Hybrid Organic-Inorganic Perovskite and Polymorphic ABX3 Structures
Chemical Science, 2022
1566083 CIFC22.01 H35.86 Fe N10P 21 21 215.7971; 15.8093; 21.4138
90; 90; 90
5347.9Shaw, Bikash Kumar; Bennett, Thomas Douglas; Castillo Blas, Celia; Thorne, Michael Francis; Gómez, María Laura Ríos; Forrest, Thomas; Keen, David A.; Diaz-Lopez, Maria; Chater, Philip A.; McHugh, Lauren Nicole
Principles of Melting in Hybrid Organic-Inorganic Perovskite and Polymorphic ABX3 Structures
Chemical Science, 2022
1566090 CIFC21 H16 Cl N4 O5 P RuC 1 2/c 114.06525; 25.1567; 13.9309
90; 100.051; 90
4853.59Bühler, Jan; Zurflüh, Jonas; Siol, Sebastian; Blacque, Olivier; Sévery, Laurent; Tilley, S. David
Electrochemical ruthenium-catalysed C–H activation in water through heterogenization of a molecular catalyst
Catalysis Science & Technology, 2022, 12, 1512-1519
1566091 CIFC39 H34 B N7 O4 ZnP -111.8862; 12.1596; 13.5975
115.605; 90.781; 98.587
1745.7Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566092 CIFC40 H35 B N8 O ZnP 1 21/n 111.4421; 22.4577; 13.4441
90; 96.516; 90
3432.3Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566093 CIFC39 H36 B N9 O2 ZnP -111.4528; 11.6697; 13.8501
80.236; 88.814; 73.751
1750.69Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566094 CIFC40.62 H37.25 B N7 O4 ZnP 1 21/n 111.6546; 14.6697; 21.3858
90; 97.912; 90
3621.5Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566095 CIFC39 H35 B N8 O2 ZnP b c a17.7615; 17.8877; 21.437
90; 90; 90
6810.8Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566096 CIFC39 H38 B N7 O4 S ZnP n a 2111.9864; 16.941; 18.04
90; 90; 90
3663.2Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566097 CIFC44 H42 B N10 O2 ZnP -112.4046; 12.5836; 14.653
88.179; 66.003; 74.862
2009.9Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566098 CIFC40 H37 B N8 O2.29 ZnP 1 21/c 112.7201; 22.4184; 13.4325
90; 110.416; 90
3589.9Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566099 CIFC38 H34 B N9 O2 ZnC 1 2/c 124.7054; 12.3535; 25.1484
90; 107.246; 90
7330.2Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566100 CIFC38 H36 B N7 O4 S ZnP -19.78; 17.966; 23.194
87.678; 87.319; 84.581
4050Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566101 CIFC44.58 H43.62 B N8 O4 S ZnP 1 21/c 124.917; 12.6257; 27.9346
90; 100.367; 90
8644.6Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566102 CIFC43 H36 B N7 O S ZnP b c a16.4658; 22.9868; 23.1548
90; 90; 90
8764Jackl, Moritz K.; Seo, Hyeonglim; Karges, Johannes; Kalaj, Mark; Cohen, Seth M.
Salicylate Metal-Binding Isosteres as Fragments for Metalloenzyme Inhibition
Chemical Science, 2022
1566103 CIFC720 H1080 Ag296 Cl112 F72 Sb12P 1 21/c 146.413; 27.613; 47.653
90; 108.954; 90
57761Jiang, Zhan-Guo; Wu, Wei-Hong; Jin, Bo-Xing; Zeng, Hui-Min; Jin, Zhi-Gang; Zhan, Cai-Hong
A chloride-doped silver-sulfide cluster [Ag<sub>148</sub>S<sub>26</sub>Cl<sub>30</sub>(CCBu<sup><i>t</i></sup>)<sub>60</sub>]<sup>6+</sup>: hierarchical assembly, enhanced luminescence and cytotoxicity to cancer cells.
Nanoscale, 2022, 14, 1971-1977
1566104 CIFC720 H1080 Ag296 F72 S112 Sb12P 1 21/c 146.413; 27.613; 47.653
90; 108.954; 90
57761Jiang, Zhan-Guo; Wu, Wei-Hong; Jin, Bo-Xing; Zeng, Hui-Min; Jin, Zhi-Gang; Zhan, Cai-Hong
A chloride-doped silver-sulfide cluster [Ag<sub>148</sub>S<sub>26</sub>Cl<sub>30</sub>(CCBu<sup><i>t</i></sup>)<sub>60</sub>]<sup>6+</sup>: hierarchical assembly, enhanced luminescence and cytotoxicity to cancer cells.
Nanoscale, 2022, 14, 1971-1977
1566105 CIFC22 H27 B O3P 21 21 218.6344; 13.5463; 16.9157
90; 90; 90
1978.53Wu, Yuanqi; Wu, Lizuo; Zhang, Zhanming; Xu, Bing; Liu, Yu; Zhang, Junliang
Enantioselective Difunctionalization of Alkenes by a Palladium-Catalyzed Heck/Borylation Sequence
Chemical Science, 2022
1566111 CIFC132 H180 Ce4 Cs4 N16 O16P 1 21/n 123.7065; 37.202; 39.448
90; 90.029; 90
34790Moreau, Liane M.; Lapsheva, Ekaterina; Amaro-Estrada, Jorge I.; Gau, Michael R.; Carroll, Patrick J.; Manor, Brian C.; Qiao, Yusen; Yang, Qiaomu; Lukens, Wayne W.; Sokaras, Dimosthenis; Schelter, Eric J.; Maron, Laurent; Booth, Corwin H.
Electronic structure studies reveal 4f/5d mixing and its effect on bonding characteristics in Ce-imido and -oxo complexes
Chemical Science, 2022
1566112 CIFC156 H228 Ce4 K4 N16 O22P -118.7496; 19.4808; 25.7609
75.817; 71.717; 70.697
8326.6Moreau, Liane M.; Lapsheva, Ekaterina; Amaro-Estrada, Jorge I.; Gau, Michael R.; Carroll, Patrick J.; Manor, Brian C.; Qiao, Yusen; Yang, Qiaomu; Lukens, Wayne W.; Sokaras, Dimosthenis; Schelter, Eric J.; Maron, Laurent; Booth, Corwin H.
Electronic structure studies reveal 4f/5d mixing and its effect on bonding characteristics in Ce-imido and -oxo complexes
Chemical Science, 2022
1566113 CIFC75 H67 N2 OP -113.3376; 15.8984; 16.7118
86.2207; 87.3777; 69.0861
3302.08Hall, David; Stavrou, Kleitos; Duda, Eimantas; Danos, Andrew; Bagnich, Sergey; Warriner, Stuart; Slawin, Alexandra M. Z.; Beljonne, David; Köhler, Anna; Monkman, Andrew; Olivier, Yoann; Zysman-Colman, Eli
Diindolocarbazole - achieving multiresonant thermally activated delayed fluorescence without the need for acceptor units.
Materials horizons, 2022, 9, 1068-1080
1566114 CIFC45 H41 NP 1 21/n 18.24799; 14.1901; 28.3417
90; 90.5962; 90
3316.93Hall, David; Stavrou, Kleitos; Duda, Eimantas; Danos, Andrew; Bagnich, Sergey; Warriner, Stuart; Slawin, Alexandra M. Z.; Beljonne, David; Köhler, Anna; Monkman, Andrew; Olivier, Yoann; Zysman-Colman, Eli
Diindolocarbazole - achieving multiresonant thermally activated delayed fluorescence without the need for acceptor units.
Materials horizons, 2022, 9, 1068-1080
1566124 CIFC19 H23 N O2P 21 21 219.4746; 12.0701; 30.0751
90; 90; 90
3439.4Saunthwal, Rakesh K.; Mortimer, James; Orr-Ewing, Andrew; Clayden, Jonathan
Enantioselective one-carbon expansion of aromatic rings by simultaneous formation and chromoselective irradiation of a transient coloured enolate
Chemical Science, 2022
1566125 CIFC19 H23 N O SP 21 21 215.8465; 16.2467; 17.6742
90; 90; 90
1678.81Saunthwal, Rakesh K.; Mortimer, James; Orr-Ewing, Andrew; Clayden, Jonathan
Enantioselective one-carbon expansion of aromatic rings by simultaneous formation and chromoselective irradiation of a transient coloured enolate
Chemical Science, 2022
1566126 CIFC19 H23 N OP 21 21 215.827; 16.246; 16.8144
90; 90; 90
1591.74Saunthwal, Rakesh K.; Mortimer, James; Orr-Ewing, Andrew; Clayden, Jonathan
Enantioselective one-carbon expansion of aromatic rings by simultaneous formation and chromoselective irradiation of a transient coloured enolate
Chemical Science, 2022
1566127 CIFH2 Mn1.25 O5 PC 1 2/c 117.6182; 9.1333; 9.4921
90; 96.532; 90
1517.48Deng, Mingxia; Liu, Weijing; Liu, Qian; Sun, Du; Huang, Fuqiang
A new compound Mn5P4O20H8 achieving efficient heavy metal removal to the ppb level through a dual chemisorption–ion exchange pathway
Environmental Science: Nano, 2022, 9, 1146-1155
1566147 CIFC40 H38 N2 O2P -110.4645; 12.4559; 12.5578
107.272; 102.991; 90.239
1518.6Maestri, Giovanni; Serafino, Andrea; Chiminelli, Maurizio; Balestri, Davide; Marchiò, Luciano; Bigi, Franca; Maggi, Raimondo; Malacria, Max
Dimerizing Cascades of Enallenamides Reveal the Visible-Light- Promoted Activation of Cumulated C-C Double Bonds
Chemical Science, 2022
1566148 CIFC19 H16 Cl N OP -15.8886; 10.0297; 13.4799
102.666; 94.86; 105.758
738.69Maestri, Giovanni; Serafino, Andrea; Chiminelli, Maurizio; Balestri, Davide; Marchiò, Luciano; Bigi, Franca; Maggi, Raimondo; Malacria, Max
Dimerizing Cascades of Enallenamides Reveal the Visible-Light- Promoted Activation of Cumulated C-C Double Bonds
Chemical Science, 2022
1566149 CIFC38 H34 N2 O2P b c a19.6653; 10.33692; 28.5425
90; 90; 90
5802.08Maestri, Giovanni; Serafino, Andrea; Chiminelli, Maurizio; Balestri, Davide; Marchiò, Luciano; Bigi, Franca; Maggi, Raimondo; Malacria, Max
Dimerizing Cascades of Enallenamides Reveal the Visible-Light- Promoted Activation of Cumulated C-C Double Bonds
Chemical Science, 2022
1566150 CIFC48 H54 N2 O2P -110.9885; 13.562; 14.3897
82.728; 69.086; 80.532
1970.5Maestri, Giovanni; Serafino, Andrea; Chiminelli, Maurizio; Balestri, Davide; Marchiò, Luciano; Bigi, Franca; Maggi, Raimondo; Malacria, Max
Dimerizing Cascades of Enallenamides Reveal the Visible-Light- Promoted Activation of Cumulated C-C Double Bonds
Chemical Science, 2022
1566151 CIFC29 H49 B Br N3P n a 2116.6843; 10.1022; 17.8126
90; 90; 90
3002.3Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566152 CIFC29 H49 B Cl N3P n a 2116.7035; 10.08; 17.6907
90; 90; 90
2978.6Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566153 CIFC29 H49 Al B Br3 N6P b c a18.3035; 18.6688; 41.8373
90; 90; 90
14296Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566154 CIFC58 H98 Al2 B2 Br8 N6P -19.5926; 18.3489; 22.4133
109.017; 98.006; 96.256
3642.84Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566155 CIFC35 H57 Al B Br4 N3P -19.7709; 20.3965; 21.6332
91.982; 100.812; 98.869
4175.2Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566156 CIFC41 H61 Al B Br4 N3P -110.2658; 15.817; 15.9702
65.411; 78.295; 80.201
2298.2Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566157 CIFC33 H59 Al B Br4 N5 SiP -111.9613; 13.4134; 15.2453
109.98; 104.192; 102.755
2100.41Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566158 CIFC31 H52 Al B Br4 N4I 1 2/a 111.781; 15.9628; 41.3531
90; 93.4263; 90
7762.9Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566159 CIFC41 H65 Al B Br4 Cl3 N4 OP 1 21/n 112.64878; 21.8402; 19.4954
90; 106.767; 90
5156.68Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566160 CIFC54 H77 Al B Br4 N5P -114.3058; 14.4769; 14.7822
82.612; 72.27; 89.201
2890.8Guo, Rui; Zhang, Xin; Li, Tong; Li, Qianli; Ruiz, David A.; Liu, Liu Leo; Tung, Chen-Ho; Kong, Lingbing
Unraveling the reactivity of a cationic iminoborane: avenues to unusual boron cations
Chemical Science, 2022, 13, 2303-2309
1566161 CIFC38 H24 N6 O4P 1 21/c 114.0425; 11.2236; 19.5237
90; 103.069; 90
2997.38Chen, Bin; Holstein, Julian J.; Platzek, André; Schneider, Laura; Wu, Kai; Clever, Guido H.
Cooperativity of steric bulk and H-bonding in coordination sphere engineering: heteroleptic PdII cages and bowls by design
Chemical Science, 2022
1566162 CIFC220 H102 B2 F8 N14 O16 Pd2P 1 21/c 130.755; 16.741; 41.053
90; 108.2; 90
20079Chen, Bin; Holstein, Julian J.; Platzek, André; Schneider, Laura; Wu, Kai; Clever, Guido H.
Cooperativity of steric bulk and H-bonding in coordination sphere engineering: heteroleptic PdII cages and bowls by design
Chemical Science, 2022
1566163 CIFC608 H384 F60 N96 O64 Pd8 Sb10P c c n41.972; 70.711; 27.616
90; 90; 90
81961Chen, Bin; Holstein, Julian J.; Platzek, André; Schneider, Laura; Wu, Kai; Clever, Guido H.
Cooperativity of steric bulk and H-bonding in coordination sphere engineering: heteroleptic PdII cages and bowls by design
Chemical Science, 2022
1566188 CIFC8 H7 N O2P 21 21 215.862; 7.712; 14.907
90; 90; 90
673.9Sasikumar, Devika; Vinod, Kavya; Sunny, Jeswin; Hariharan, Mahesh
Exciton interactions in helical crystals of a hydrogen-bonded eumelanin monomer
Chemical Science, 2022, 13, 2331-2338
1566189 CIF
HKL
Paper
C12 H26 Cl N O11P 1 21 14.785; 13.523; 13.254
90; 93.94; 90
855.6Mossine, Valeri V.; Kelley, Steven P.; Mawhinney, Thomas P.
β-<small>D</small>-Galactopyranosyl-(1→ 4)–2-amino-2-deoxy-α-<small>D</small>-glucopyranose hydrochloride monohydrate (lactosamine)
IUCrData, 2022, 7, x220061
1566196 CIFC90 H80.54 F24 N3 O8P 1 21/n 121.873; 15.4168; 27.7277
90; 113.23; 90
8592.1Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566197 CIFC82 H82 Cl4 F8 N2 O8C 1 2/c 133.1351; 12.8854; 23.6066
90; 131.764; 90
7517.9Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566198 CIFC68 H48 F16 O8F d d d :228.0557; 31.8586; 36.449
90; 90; 90
32579Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566199 CIFC84 H80 F12 N4 O8P -112.0029; 12.909; 25.4812
78.324; 77.909; 79.55
3740.7Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566200 CIFC95 H106 F16 N2 O11 SP 1 21 112.7581; 22.867; 16.3241
90; 94.056; 90
4750.5Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566201 CIFC82 H89 N3 O8P -111.9327; 12.8148; 24.0608
100.145; 96.381; 102.831
3487.76Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566202 CIFC197 H203 F48 N2 O22 S2P -118.7373; 23.963; 25.256
82.849; 74.062; 78.107
10642.2Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566203 CIFC93 H107 F12 N O11 SP 1 21/n 112.5311; 20.5937; 32.976
90; 94.627; 90
8482.1Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566204 CIFC94 H112 F8 N2 O11 SP 21 21 2123.0191; 22.9578; 32.8882
90; 90; 90
17380.4Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566205 CIFC82 H85 F4 N3 O8P -111.9504; 12.9188; 24.0391
99.832; 96.529; 101.954
3534.42Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566206 CIFC82 H85 F4 N3 O8P -111.969; 12.961; 24.112
101.319; 91.758; 101.826
3580.1Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566207 CIFC78 H71 F12 N O8P 1 21/c 122.7987; 33.305; 21.422
90; 94.928; 90
16205.8Mirzaei, Saber; Espinoza Castro, Victor M.; Hernández Sánchez, Raúl
Nonspherical anion sequestration by C–H hydrogen bonding
Chemical Science, 2022
1566239 CIFC45.27 H22 Al Cl2 Cr0.18 O15.33 Zr3P 6/m m m39.433; 39.433; 16.2564
90; 90; 120
21891Goetjen, Timothy A.; Knapp, Julia G.; Syed, Zoha H.; Hackler, Ryan A.; Zhang, Xuan; Delferro, Massimiliano; Hupp, Joseph T.; Farha, Omar K.
Ethylene polymerization with a crystallographically well-defined metal–organic framework supported catalyst
Catalysis Science & Technology, 2022, 12, 1619-1627
1566240 CIFC254 H244 Bi38 N11 O149 Ti6P -123.6421; 23.8375; 38.8128
107.572; 91.111; 114.493
18711.2Zhang, Lei; Ding, Qing-Rong; Yu, Yinghua; Cao, Changsheng; Zhang, Jian
Stepwise Assembly and Reversible Structure Transformation of Ligated Titanium Coated Bismuth-Oxo Cores: Shell Morphology Engineering for Enhanced Chemical Fixation of CO2
Chemical Science, 2022
1566241 CIFC252 H222 Bi38 N6 O158 Ti14R -3 c :H24.8265; 24.8265; 120.4773
90; 90; 120
64308Zhang, Lei; Ding, Qing-Rong; Yu, Yinghua; Cao, Changsheng; Zhang, Jian
Stepwise Assembly and Reversible Structure Transformation of Ligated Titanium Coated Bismuth-Oxo Cores: Shell Morphology Engineering for Enhanced Chemical Fixation of CO2
Chemical Science, 2022
1566242 CIFC312 H276 Bi38 O164 Ti18R -3 :H39.6442; 39.6442; 23.6456
90; 90; 120
32184Zhang, Lei; Ding, Qing-Rong; Yu, Yinghua; Cao, Changsheng; Zhang, Jian
Stepwise Assembly and Reversible Structure Transformation of Ligated Titanium Coated Bismuth-Oxo Cores: Shell Morphology Engineering for Enhanced Chemical Fixation of CO2
Chemical Science, 2022
1566243 CIFC240 H202 Bi38 N10 O145 Ti6C 1 2/c 131.6643; 33.3838; 35.4595
90; 91.569; 90
37469.3Zhang, Lei; Ding, Qing-Rong; Yu, Yinghua; Cao, Changsheng; Zhang, Jian
Stepwise Assembly and Reversible Structure Transformation of Ligated Titanium Coated Bismuth-Oxo Cores: Shell Morphology Engineering for Enhanced Chemical Fixation of CO2
Chemical Science, 2022
1566244 CIFC306 H304 Bi38 N4 O186 Ti20P -123.1533; 23.548; 23.6018
117.688; 115.545; 92.2502
9807.3Zhang, Lei; Ding, Qing-Rong; Yu, Yinghua; Cao, Changsheng; Zhang, Jian
Stepwise Assembly and Reversible Structure Transformation of Ligated Titanium Coated Bismuth-Oxo Cores: Shell Morphology Engineering for Enhanced Chemical Fixation of CO2
Chemical Science, 2022
1566245 CIFC342 H236 Bi38 N4 O178 Ti16I 1 2/a 125.2403; 43.6932; 49.0721
90; 96.672; 90
53751.6Zhang, Lei; Ding, Qing-Rong; Yu, Yinghua; Cao, Changsheng; Zhang, Jian
Stepwise Assembly and Reversible Structure Transformation of Ligated Titanium Coated Bismuth-Oxo Cores: Shell Morphology Engineering for Enhanced Chemical Fixation of CO2
Chemical Science, 2022
1566246 CIFC290 H210 Bi38 N6 O159 Ti16P 1 21/n 122.5953; 37.4685; 23.2719
90; 98.164; 90
19502.6Zhang, Lei; Ding, Qing-Rong; Yu, Yinghua; Cao, Changsheng; Zhang, Jian
Stepwise Assembly and Reversible Structure Transformation of Ligated Titanium Coated Bismuth-Oxo Cores: Shell Morphology Engineering for Enhanced Chemical Fixation of CO2
Chemical Science, 2022
1566247 CIFC15 H17 N3 O5 SP 1 21 16.5937; 22.424; 10.7128
90; 97.951; 90
1568.7Rigotti, Thomas; Schwinger, Daniel P.; Graßl, Raphaela; Jandl, Christian; Bach, Thorsten
Enantioselective crossed intramolecular [2+2] photocycloaddition reactions mediated by a chiral chelating Lewis acid
Chemical Science, 2022, 13, 2378-2384
1566248 CIFF7 Na Nb RbC m c m6.7031; 10.9813; 8.2969
90; 90; 90
610.72Kumada, N.; Takei, T.
Hydrothermal synthesis and crystal structure of a new rubidium sodium niobium fluoride, RbNaNbF7
Journal of the Ceramic Society of Japan, 2022, 130, 232-235
1566249 CIF
HKL
C16 H26.4 Ag2 K2 N2 O13.2 S4P 1 21/c 113.386; 6.0085; 17.843
90; 108.657; 90
1359.7Pacifico, Jessica; Stoeckli-Evans, Helen
Poly[dipotassium [(μ6-2,2′,2′′,2′′′-{[pyrazine-2,3,5,6-tetrayltetrakis(methylene)]tetrakis(sulfanediyl)}tetraacetato)disilver(I)] 5.2-hydrate]
IUCrData, 2022, 7
1566266 CIFC25 H23 N3 O7 SP 1 21 17.5832; 15.8833; 10.5856
90; 104.429; 90
1234.78Huang, Yao; Zou, Suchen; Yu, Bangkui; Yan, Xuyang; Liu, Song; Huang, Hanmin
Highly regioselective and diastereodivergent aminomethylative annulation of dienyl alcohols enabled by a hydrogen-bonding assisting effect
Chemical Science, 2022, 13, 2317-2323
1566267 CIFC25 H21 N3 O7 SP -17.2994; 8.0887; 21.2887
91.614; 94.807; 100.145
1231.76Huang, Yao; Zou, Suchen; Yu, Bangkui; Yan, Xuyang; Liu, Song; Huang, Hanmin
Highly regioselective and diastereodivergent aminomethylative annulation of dienyl alcohols enabled by a hydrogen-bonding assisting effect
Chemical Science, 2022, 13, 2317-2323
1566268 CIFC25 H24 N2 O5 SP 1 21/c 114.60983; 31.1413; 10.11618
90; 91.553; 90
4600.86Huang, Yao; Zou, Suchen; Yu, Bangkui; Yan, Xuyang; Liu, Song; Huang, Hanmin
Highly regioselective and diastereodivergent aminomethylative annulation of dienyl alcohols enabled by a hydrogen-bonding assisting effect
Chemical Science, 2022, 13, 2317-2323
1566269 CIFBa K2 P2 S6P n a 2112.3592; 14.4324; 6.7939
90; 90; 90
1211.8Nguyen, Vivian; Ji, Bingheng; Wu, Kui; Zhang, Bingbing; Wang, Jian
Unprecedented Mid-Infrared Nonlinear Optical Materials Achieved by Crystal Structure Engineering, a Case Study of (KX)P2S6(X=Sb, Bi, Ba)
Chemical Science, 2022
1566270 CIFC20 H32 Cu Mo2 N8 O7P -18.8009; 9.6826; 10.4994
112.804; 93.996; 114.554
721.23Huang, Xianqiang; Cui, Yanan; Liu, Gang; Wang, Haitao; Ren, Junyu; Zhang, Yalin; Shen, Guodong; Lv, Lingling; Wang, Huai-Wei; Chen, Yi-Fa
Imidazole-Dependent Assembly of Copper Polymolybdate Frameworks for One-Pot Sulfide Oxidation and C–H Activation
Energy & Fuels, 2022, 36, 1665-1675
1566271 CIFC24 H40 Cu Mo4 N8 O13P -110.9545; 14.0136; 14.1643
112.531; 105.692; 100.281
1833.7Huang, Xianqiang; Cui, Yanan; Liu, Gang; Wang, Haitao; Ren, Junyu; Zhang, Yalin; Shen, Guodong; Lv, Lingling; Wang, Huai-Wei; Chen, Yi-Fa
Imidazole-Dependent Assembly of Copper Polymolybdate Frameworks for One-Pot Sulfide Oxidation and C–H Activation
Energy & Fuels, 2022, 36, 1665-1675
1566272 CIFC36 H58 Cl2 Cu N12P 1 21/c 18.149; 17.0301; 16.8649
90; 101.629; 90
2292.4Huang, Xianqiang; Cui, Yanan; Liu, Gang; Wang, Haitao; Ren, Junyu; Zhang, Yalin; Shen, Guodong; Lv, Lingling; Wang, Huai-Wei; Chen, Yi-Fa
Imidazole-Dependent Assembly of Copper Polymolybdate Frameworks for One-Pot Sulfide Oxidation and C–H Activation
Energy & Fuels, 2022, 36, 1665-1675
1566273 CIFC28 H48 Cu Mo4 N8 O13P -111.261; 14.1964; 14.56
67.177; 71.068; 78.144
2020.9Huang, Xianqiang; Cui, Yanan; Liu, Gang; Wang, Haitao; Ren, Junyu; Zhang, Yalin; Shen, Guodong; Lv, Lingling; Wang, Huai-Wei; Chen, Yi-Fa
Imidazole-Dependent Assembly of Copper Polymolybdate Frameworks for One-Pot Sulfide Oxidation and C–H Activation
Energy & Fuels, 2022, 36, 1665-1675
1566274 CIFC24 H18 Fe O2F d d 211.3424; 25.8718; 11.9601
90; 90; 90
3509.67Kunde, Tom; Pausch, Tobias; Guńka, Piotr A; Krzyżanowski, Maurycy; Kasprzak, Artur; Schmidt, Bernd M.
Fast, solvent-free synthesis of ferrocene-containing organic cages <i>via</i> dynamic covalent chemistry in the solid state.
Chemical science, 2022, 13, 2877-2883
1566275 CIFC69 H75 Cl9 Fe3 N6 O0.39P -113.1378; 16.3059; 19.0267
97.399; 93.732; 113.532
3675.33Kunde, Tom; Pausch, Tobias; Guńka, Piotr A; Krzyżanowski, Maurycy; Kasprzak, Artur; Schmidt, Bernd M.
Fast, solvent-free synthesis of ferrocene-containing organic cages <i>via</i> dynamic covalent chemistry in the solid state.
Chemical science, 2022, 13, 2877-2883
1566276 CIFC113 H114 Cl18 Fe3 N6P -116.0318; 17.0394; 21.0388
102.395; 99.882; 91.283
5519.49Kunde, Tom; Pausch, Tobias; Guńka, Piotr A; Krzyżanowski, Maurycy; Kasprzak, Artur; Schmidt, Bernd M.
Fast, solvent-free synthesis of ferrocene-containing organic cages <i>via</i> dynamic covalent chemistry in the solid state.
Chemical science, 2022, 13, 2877-2883
1566277 CIFC75 H58 Fe3 N8 O0.5P -110.8575; 16.0366; 19.8722
107.932; 90.985; 106.814
3129.76Kunde, Tom; Pausch, Tobias; Guńka, Piotr A; Krzyżanowski, Maurycy; Kasprzak, Artur; Schmidt, Bernd M.
Fast, solvent-free synthesis of ferrocene-containing organic cages <i>via</i> dynamic covalent chemistry in the solid state.
Chemical science, 2022, 13, 2877-2883
1566278 CIFC187 H120 F9 N62 Nd O57.5 S3 Zn16P 4/n c c :229.7978; 29.7978; 27.541
90; 90; 90
24453.9Eliseeva, Svetlana V.; Nguyen, Tu N.; Kampf, Jeff W.; Trivedi, Evan R.; Pecoraro, Vincent L.; Petoud, Stéphane
Tuning the photophysical properties of lanthanide(iii)/zinc(ii) 'encapsulated sandwich' metallacrowns emitting in the near-infrared range.
Chemical science, 2022, 13, 2919-2931
1566279 CIFC187 H124.5 F9 N56 O47 S3 Yb Zn16P 4/n c c :230.0778; 30.0778; 26.9277
90; 90; 90
24360.8Eliseeva, Svetlana V.; Nguyen, Tu N.; Kampf, Jeff W.; Trivedi, Evan R.; Pecoraro, Vincent L.; Petoud, Stéphane
Tuning the photophysical properties of lanthanide(iii)/zinc(ii) 'encapsulated sandwich' metallacrowns emitting in the near-infrared range.
Chemical science, 2022, 13, 2919-2931
1566280 CIFC20 H14 N2 O SP 1 21/c 115.662; 10.0274; 10.2923
90; 104.545; 90
1564.59Gao, Yang; Yang, Simin; She, Minwei; Nie, Jianhong; Huo, Yanping; Chen, Qian; Li, Xianwei; Hu, Xiao-Qiang
Practical synthesis of 3-aryl anthranils via an electrophilic aromatic substitution strategy
Chemical Science, 2022
1566281 CIFC43 H62 F6 N4 O5.5 PP -113.1015; 13.9905; 14.3129
103.697; 99.4485; 117.548
2142.83Guillou, Amaury; Nisli, Eda; Klingler, Simon; Linden, Anthony; Holland, Jason P.
Photoactivatable Fluorescent Tags for Dual-Modality Positron Emission Tomography Optical Imaging.
Journal of medicinal chemistry, 2022, 65, 811-823
1566282 CIFC32 H34 O11P 17.3468; 9.587; 10.3986
71.686; 80.813; 86.65
686.37Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566283 CIFC33 H40 O14P 17.2806; 9.8268; 11.0309
85.062; 88.911; 86.614
784.83Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566284 CIFC32 H34 O12P 1 21 114.3066; 7.5865; 14.8171
90; 113.339; 90
1476.62Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566285 CIFC36 H42 O14P 21 21 217.4273; 17.5037; 25.5651
90; 90; 90
3323.6Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566286 CIFC36 H42 O14P 1 21 110.0366; 10.7583; 15.9163
90; 95.435; 90
1710.86Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566287 CIFC32 H34 O12P 21 21 217.8346; 15.3938; 24.8916
90; 90; 90
3002.03Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566288 CIFC32 H34 O11P 21 21 217.03918; 16.93129; 24.57803
90; 90; 90
2929.27Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566289 CIFC34 H40 O12 SP 1 21 112.3621; 11.0513; 13.3183
90; 110.977; 90
1698.92Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566290 CIFC32 H34 O12P 1 21 17.9321; 10.0348; 18.6923
90; 91.815; 90
1487.11Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566291 CIFC32 H34 O12P 1 21 18.0867; 10.26; 17.8397
90; 100.578; 90
1455Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566292 CIFC32 H34 O12P 21 21 216.7227; 17.5115; 24.9638
90; 90; 90
2938.85Cao, Hai-Yan; Yi, Cheng; Sun, Sen-Feng; Li, Yong; Liu, Yun-Bao
Anti-inflammatory Dimeric Tetrahydroxanthones from an Endophytic <i>Muyocopron laterale</i>.
Journal of natural products, 2022, 85, 148-161
1566293 CIFC26 H30 O9P 21 21 218.20954; 13.0261; 22.2179
90; 90; 90
2375.94Wu, Yu-Zhuo; Xia, Gui-Yang; Xia, Huan; Wang, Ling-Yan; Wang, Ya-Nan; Li, Li; Shang, Hong-Cai; Lin, Sheng
<i>Seco</i> and Nor-<i>seco</i> Isodhilarane-Type Meroterpenoids from <i>Penicillium purpurogenum</i> and the Configuration Revisions of Related Compounds.
Journal of natural products, 2022, 85, 248-255
1566294 CIFC26 H30 O8P 21 21 219.14014; 13.23545; 19.4513
90; 90; 90
2353.1Wu, Yu-Zhuo; Xia, Gui-Yang; Xia, Huan; Wang, Ling-Yan; Wang, Ya-Nan; Li, Li; Shang, Hong-Cai; Lin, Sheng
<i>Seco</i> and Nor-<i>seco</i> Isodhilarane-Type Meroterpenoids from <i>Penicillium purpurogenum</i> and the Configuration Revisions of Related Compounds.
Journal of natural products, 2022, 85, 248-255
1566295 CIFC24 H26 O9P 21 21 2111.2389; 12.4074; 15.325
90; 90; 90
2137Wu, Yu-Zhuo; Xia, Gui-Yang; Xia, Huan; Wang, Ling-Yan; Wang, Ya-Nan; Li, Li; Shang, Hong-Cai; Lin, Sheng
<i>Seco</i> and Nor-<i>seco</i> Isodhilarane-Type Meroterpenoids from <i>Penicillium purpurogenum</i> and the Configuration Revisions of Related Compounds.
Journal of natural products, 2022, 85, 248-255
1566296 CIFC28 H44 O7P 1 21 111.6684; 8.063; 29.5996
90; 98.518; 90
2754.08Zhang, Xiuyun; Liu, Yao; Deng, Jili; Xia, Jiankai; Zhang, Qiang; Chen, Xin; Liu, Runze; Gao, Yuqi; Gao, Jin-Ming
Structurally Diverse Sesquiterpenoid Glycoside Esters from <i>Pittosporum qinlingense</i> with Anti-neuroinflammatory Activity.
Journal of natural products, 2022, 85, 115-126
1566297 CIFC16 H18 O4P 1 21 14.705; 12.2221; 12.1951
90; 99.486; 90
691.69Chen, De-Li; Chen, Mei-Ying; Hou, Yong; Wang, Can-Hong; Sun, Zhao-Cui; Yang, Yun; Liang, Han-Qiao; Ma, Guo-Xu; Xu, Xu-Dong; Wei, Jian-He
Cadinane-Type Sesquiterpenoids with Cytotoxic Activity from the Infected Stems of the Semi-mangrove <i>Hibiscus tiliaceus</i>.
Journal of natural products, 2022, 85, 127-135
1566298 CIFC18 H24 O3P 1 21 15.832; 11.0477; 24.6078
90; 93.38; 90
1582.73Chen, De-Li; Chen, Mei-Ying; Hou, Yong; Wang, Can-Hong; Sun, Zhao-Cui; Yang, Yun; Liang, Han-Qiao; Ma, Guo-Xu; Xu, Xu-Dong; Wei, Jian-He
Cadinane-Type Sesquiterpenoids with Cytotoxic Activity from the Infected Stems of the Semi-mangrove <i>Hibiscus tiliaceus</i>.
Journal of natural products, 2022, 85, 127-135
1566299 CIFC16 H18 O4I 1 2/a 115.851; 9.869; 17.994
90; 92.952; 90
2811.1Chen, De-Li; Chen, Mei-Ying; Hou, Yong; Wang, Can-Hong; Sun, Zhao-Cui; Yang, Yun; Liang, Han-Qiao; Ma, Guo-Xu; Xu, Xu-Dong; Wei, Jian-He
Cadinane-Type Sesquiterpenoids with Cytotoxic Activity from the Infected Stems of the Semi-mangrove <i>Hibiscus tiliaceus</i>.
Journal of natural products, 2022, 85, 127-135
1566300 CIFC14 H14 O4P 1 21/c 114.0059; 12.3372; 7.0592
90; 100.903; 90
1197.77Chen, De-Li; Chen, Mei-Ying; Hou, Yong; Wang, Can-Hong; Sun, Zhao-Cui; Yang, Yun; Liang, Han-Qiao; Ma, Guo-Xu; Xu, Xu-Dong; Wei, Jian-He
Cadinane-Type Sesquiterpenoids with Cytotoxic Activity from the Infected Stems of the Semi-mangrove <i>Hibiscus tiliaceus</i>.
Journal of natural products, 2022, 85, 127-135
1566301 CIFC14 H16 O3P 1 21/c 114.155; 9.2926; 18.6842
90; 106.042; 90
2361.96Chen, De-Li; Chen, Mei-Ying; Hou, Yong; Wang, Can-Hong; Sun, Zhao-Cui; Yang, Yun; Liang, Han-Qiao; Ma, Guo-Xu; Xu, Xu-Dong; Wei, Jian-He
Cadinane-Type Sesquiterpenoids with Cytotoxic Activity from the Infected Stems of the Semi-mangrove <i>Hibiscus tiliaceus</i>.
Journal of natural products, 2022, 85, 127-135
1566302 CIFC44 H48P 1 21/n 115.9081; 10.1431; 23.4731
90; 98.646; 90
3744.5Hirao, Yasukazu; Ihara, Keiji; Ishibashi, Yukihide; Tiu, Elisha Gabrielle; Asahi, Tsuyoshi; Kubo, Takashi
Mechanism and Kinetics of Fluorescence Quenching of Fluorene-Endcapped Butatriene: A Microspectroscopic Study of the Discrete State Constructed in Microcrystals
The Journal of Physical Chemistry C, 2022, 126, 1196-1203
1566303 CIFC28 H16P 1 21/n 111.658; 5.99; 13.4368
90; 100.125; 90
923.7Hirao, Yasukazu; Ihara, Keiji; Ishibashi, Yukihide; Tiu, Elisha Gabrielle; Asahi, Tsuyoshi; Kubo, Takashi
Mechanism and Kinetics of Fluorescence Quenching of Fluorene-Endcapped Butatriene: A Microspectroscopic Study of the Discrete State Constructed in Microcrystals
The Journal of Physical Chemistry C, 2022, 126, 1196-1203
1566304 CIFC28 H20P -19.993; 10.043; 10.481
92.172; 104.863; 105.068
975.5Hirao, Yasukazu; Ihara, Keiji; Ishibashi, Yukihide; Tiu, Elisha Gabrielle; Asahi, Tsuyoshi; Kubo, Takashi
Mechanism and Kinetics of Fluorescence Quenching of Fluorene-Endcapped Butatriene: A Microspectroscopic Study of the Discrete State Constructed in Microcrystals
The Journal of Physical Chemistry C, 2022, 126, 1196-1203
1566305 CIFC7 H4 Br N3 O7P 1 21/c 110.5476; 9.05; 11.9209
90; 115.048; 90
1030.9Childs, Christian M.; Steele, Brad A.; Grivickas, Paulius; Zhang, Dongzhou; Crowhurst, Jonathan; Kuo, I-Feng W.; Bastea, Sorin; Clarke, Samantha M.
High-Pressure Investigation of 2,4,6-Trinitro-3-bromoanisole (TNBA): Structural Determination and Piezochromism
The Journal of Physical Chemistry C, 2022, 126, 1176-1187
1566306 CIFC6 H10 I4 N2 PbP 1 21/c 112.9783; 14.4105; 8.381
90; 105.605; 90
1509.67Jia, Qiang-Qiang; Luo, Qing-Feng; Ni, Hao-Fei; Su, Chang-Yuan; Fu, Da-Wei; Xie, Li-Yan; Lu, Hai-Feng
High-Sensitivity Organic–Inorganic Hybrid Materials with Reversible Thermochromic Property and Dielectric Switching
The Journal of Physical Chemistry C, 2022, 126, 1552-1557
1566307 CIF
HKL
Paper
C8 H11 N O3P 1 21/c 19.915; 7.2523; 11.9573
90; 98.558; 90
850.23Moussa Slimane, Nabila; Benarous, Nesrine; Bougueria, Hassiba; Cherouana, Aouatef
2-Hydroxybenzenaminium acetate
IUCrData, 2022, 7, x220112
1566308 CIFC37 H32 B P SC 1 c 120.883; 8.704; 19.093
90; 123.59; 90
2891Fuchs, Sonja; Jayaraman, Arumugam; Krummenacher, Ivo; Haley, Laura; Baštovanović, Marta; Fest, Maximilian; Radacki, Krzysztof; Helten, Holger; Braunschweig, Holger
Diboramacrocycles: reversible borole dimerisation-dissociation systems.
Chemical science, 2022, 13, 2932-2938
1566309 CIFC21 H16 B N SP 1 21/c 18.8; 10.843; 17.829
90; 99.74; 90
1676.7Fuchs, Sonja; Jayaraman, Arumugam; Krummenacher, Ivo; Haley, Laura; Baštovanović, Marta; Fest, Maximilian; Radacki, Krzysztof; Helten, Holger; Braunschweig, Holger
Diboramacrocycles: reversible borole dimerisation-dissociation systems.
Chemical science, 2022, 13, 2932-2938
1566310 CIFC44.25 H33.51 B2 N3 S2P -110.278; 12.065; 16.702
92.946; 107.906; 114.158
1760.3Fuchs, Sonja; Jayaraman, Arumugam; Krummenacher, Ivo; Haley, Laura; Baštovanović, Marta; Fest, Maximilian; Radacki, Krzysztof; Helten, Holger; Braunschweig, Holger
Diboramacrocycles: reversible borole dimerisation-dissociation systems.
Chemical science, 2022, 13, 2932-2938
1566311 CIFC41 H37 B2 N3 S2 SiP -19.9577; 12.2845; 16.579
100.823; 90.407; 112.635
1831.5Fuchs, Sonja; Jayaraman, Arumugam; Krummenacher, Ivo; Haley, Laura; Baštovanović, Marta; Fest, Maximilian; Radacki, Krzysztof; Helten, Holger; Braunschweig, Holger
Diboramacrocycles: reversible borole dimerisation-dissociation systems.
Chemical science, 2022, 13, 2932-2938
1566312 CIFC36 H30 B2 S2C 1 2/c 114.644; 11.056; 17.829
90; 94.9; 90
2876Fuchs, Sonja; Jayaraman, Arumugam; Krummenacher, Ivo; Haley, Laura; Baštovanović, Marta; Fest, Maximilian; Radacki, Krzysztof; Helten, Holger; Braunschweig, Holger
Diboramacrocycles: reversible borole dimerisation-dissociation systems.
Chemical science, 2022, 13, 2932-2938
1566313 CIFC32 H22 B2 S2P 1 21 111.4201; 17.9796; 12.1277
90; 90.12; 90
2490.16Fuchs, Sonja; Jayaraman, Arumugam; Krummenacher, Ivo; Haley, Laura; Baštovanović, Marta; Fest, Maximilian; Radacki, Krzysztof; Helten, Holger; Braunschweig, Holger
Diboramacrocycles: reversible borole dimerisation-dissociation systems.
Chemical science, 2022, 13, 2932-2938
1566314 CIFC19 H17 B SP 1 21/c 113.289; 30.28; 7.763
90; 93.3; 90
3119Fuchs, Sonja; Jayaraman, Arumugam; Krummenacher, Ivo; Haley, Laura; Baštovanović, Marta; Fest, Maximilian; Radacki, Krzysztof; Helten, Holger; Braunschweig, Holger
Diboramacrocycles: reversible borole dimerisation-dissociation systems.
Chemical science, 2022, 13, 2932-2938
1566315 CIFC38 H26 B2 N4 O2 S2P 1 21/n 113.299; 18.859; 13.574
90; 112.808; 90
3138.2Fuchs, Sonja; Jayaraman, Arumugam; Krummenacher, Ivo; Haley, Laura; Baštovanović, Marta; Fest, Maximilian; Radacki, Krzysztof; Helten, Holger; Braunschweig, Holger
Diboramacrocycles: reversible borole dimerisation-dissociation systems.
Chemical science, 2022, 13, 2932-2938
1566316 CIFC13 H7 F5 O2P 1 21/n 16.327; 26.441; 7.0232
90; 95.01; 90
1170.4Gerthoffer, Margaret C.; Xu, Bohan; Wu, Sikai; Cox, Jordan; Huss, Steven; Oburn, Shalisa M.; Lopez, Steven A.; Crespi, Vincent H.; Badding, John V.; Elacqua, Elizabeth
Mechanistic insights into the pressure-induced polymerization of aryl/perfluoroaryl co-crystals
Polymer Chemistry, 2022, 13, 1359-1368
1566317 CIFC13 H7 F5 O2P -15.9872; 7.934; 13.242
105.378; 99.982; 94.446
592.3Gerthoffer, Margaret C.; Xu, Bohan; Wu, Sikai; Cox, Jordan; Huss, Steven; Oburn, Shalisa M.; Lopez, Steven A.; Crespi, Vincent H.; Badding, John V.; Elacqua, Elizabeth
Mechanistic insights into the pressure-induced polymerization of aryl/perfluoroaryl co-crystals
Polymer Chemistry, 2022, 13, 1359-1368
1566318 CIFC40 H46 Ag2 N4 S4P -18.165; 15.5778; 16.2365
77.7; 87.359; 83.158
2002.9Oladipo, Segun D.; Omondi, Bernard
N,N′-Diarylformamidine Dithiocarbamate Ag(I) Cluster and Coordination Polymer
Molbank, 2022, 2022, M1327
1566319 CIFC156 H210 Ag6 N12 S12R -3 :H30.0941; 30.0941; 50.6555
90; 90; 120
39730.1Oladipo, Segun D.; Omondi, Bernard
N,N′-Diarylformamidine Dithiocarbamate Ag(I) Cluster and Coordination Polymer
Molbank, 2022, 2022, M1327
1566320 CIFC10 H5 Cl N2 O2 S3P n a 2114.6146; 15.4871; 5.3576
90; 90; 90
1212.63Plakas, Konstantinos; Kalogirou, Andreas S.; Kourtellaris, Andreas; Koutentis, Panayiotis A.
Reaction of 4,5-Dichloro-1,2,3-dithiazolium Chloride with 2-(Phenylsulfonyl)acetonitrile
Molbank, 2022, 2022, M1322
1566321 CIFC14 H12 Cl2 O2P 1 21/c 18.058; 9.064; 34.864
90; 92.718; 90
2543.5Aitken, R. Alan; Gidlow, Anna L. G.; Ramsewak, Russel S.; Slawin, Alexandra M. Z.
2,2′-(Ethane-1,2-diyl)bis(4-chlorophenol)
Molbank, 2022, 2022, M1318
1566322 CIFC8 H12 Br3 N PbP 21 21 217.9178; 8.1363; 20.5574
90; 90; 90
1324.34Feng, Rui; Fan, Jia-Hui; Li, Kai; Li, Zhi-Gang; Qin, Yan; Li, Zi-Ying; Li, Wei; Bu, Xian-He
Temperature-Responsive Photoluminescence and Elastic Properties of 1D Lead Halide Perovskites R- and S-(Methylbenzylamine)PbBr3
Molecules, 2022, 27, 728
1566323 CIFC8 H12 Br3 N PbP 21 21 217.8835; 8.068; 20.1237
90; 90; 90
1279.95Feng, Rui; Fan, Jia-Hui; Li, Kai; Li, Zhi-Gang; Qin, Yan; Li, Zi-Ying; Li, Wei; Bu, Xian-He
Temperature-Responsive Photoluminescence and Elastic Properties of 1D Lead Halide Perovskites R- and S-(Methylbenzylamine)PbBr3
Molecules, 2022, 27, 728
1566331 CIFC24 H29 N O6P 1 21 18.4222; 8.6086; 15.573
90; 93.674; 90
1126.77You, Shiqi; Ruan, Mengyao; Lu, Cuifen; Liu, Li; Weng, Yue; Yang, Guichun; Wang, Shengchun; Alhumade, Hesham; Lei, Aiwen; Gao, Meng
Paired electrolysis enabled annulation for the quinolyl-modification of bioactive molecules
Chemical Science, 2022, 13, 2310-2316
1566332 CIFC68 H146 Cr Mo6 N3 O32P 1 21/c 127.8416; 13.6571; 25.0139
90; 92.128; 90
9504.6Salazar Marcano, David E.; Moussawi, Mhamad Aly; Anyushin, Alexander V.; Lentink, Sarah; Van Meervelt, Luc; Ivanović-Burmazović, Ivana; Parac-Vogt, Tatjana N
Versatile post-functionalisation strategy for the formation of modular organic-inorganic polyoxometalate hybrids.
Chemical science, 2022, 13, 2891-2899
1566333 CIFC26 H55 N O13.5 V3P 1 21/c 113.052; 13.4949; 20.5929
90; 104.803; 90
3506.8Salazar Marcano, David E.; Moussawi, Mhamad Aly; Anyushin, Alexander V.; Lentink, Sarah; Van Meervelt, Luc; Ivanović-Burmazović, Ivana; Parac-Vogt, Tatjana N
Versatile post-functionalisation strategy for the formation of modular organic-inorganic polyoxometalate hybrids.
Chemical science, 2022, 13, 2891-2899
1566334 CIFC34.67 H59 B N2 Ni P2P 1 21/c 123.1838; 26.0619; 17.536
90; 101.639; 90
10377.6Deziel, Anthony P.; Espinosa, Matthew R.; Pavlovic, Ljiljana; Charboneau, David J.; Hazari, Nilay; Hopmann, Kathrin H.; Mercado, Brandon Q.
Ligand and solvent effects on CO2 insertion into group 10 metal alkyl bonds
Chemical Science, 2022, 13, 2391-2404
1566335 CIFC30 H50 P2 Pd SiP -19.5911; 9.8051; 19.1276
90.444; 94.813; 117.164
1592.59Deziel, Anthony P.; Espinosa, Matthew R.; Pavlovic, Ljiljana; Charboneau, David J.; Hazari, Nilay; Hopmann, Kathrin H.; Mercado, Brandon Q.
Ligand and solvent effects on CO2 insertion into group 10 metal alkyl bonds
Chemical Science, 2022, 13, 2391-2404
1566336 CIFC50 H94 B2 N6 Ni2 P4P -110.5516; 11.9228; 13.7755
103.985; 111.062; 90.654
1560Deziel, Anthony P.; Espinosa, Matthew R.; Pavlovic, Ljiljana; Charboneau, David J.; Hazari, Nilay; Hopmann, Kathrin H.; Mercado, Brandon Q.
Ligand and solvent effects on CO2 insertion into group 10 metal alkyl bonds
Chemical Science, 2022, 13, 2391-2404
1566337 CIFC26 H47 B N2 O2 P2 PdP 1 21/c 112.5308; 15.0351; 15.989
90; 103.614; 90
2927.72Deziel, Anthony P.; Espinosa, Matthew R.; Pavlovic, Ljiljana; Charboneau, David J.; Hazari, Nilay; Hopmann, Kathrin H.; Mercado, Brandon Q.
Ligand and solvent effects on CO2 insertion into group 10 metal alkyl bonds
Chemical Science, 2022, 13, 2391-2404
1566338 CIFC32 H52 B Cl N2 Ni P2R -3 c :H26.0265; 26.0265; 26.0801
90; 90; 120
15299.3Deziel, Anthony P.; Espinosa, Matthew R.; Pavlovic, Ljiljana; Charboneau, David J.; Hazari, Nilay; Hopmann, Kathrin H.; Mercado, Brandon Q.
Ligand and solvent effects on CO2 insertion into group 10 metal alkyl bonds
Chemical Science, 2022, 13, 2391-2404
1566339 CIFC25 H47 B N2 P2 PdP b c a11.9139; 14.4308; 32.1655
90; 90; 90
5530.12Deziel, Anthony P.; Espinosa, Matthew R.; Pavlovic, Ljiljana; Charboneau, David J.; Hazari, Nilay; Hopmann, Kathrin H.; Mercado, Brandon Q.
Ligand and solvent effects on CO2 insertion into group 10 metal alkyl bonds
Chemical Science, 2022, 13, 2391-2404
1566340 CIFC28 H28 O3 SP 1 21/c 114.1193; 10.6583; 16.1923
90; 95.636; 90
2425Wang, Lihong; Ma, Ruiyang; Sun, Jiaqiong; Zheng, GuangFan; Zhang, Qian
NHCs and Visible Light-mediated Photoredox Co-catalyzed 1,4-Sulfonylacylation of 1,3-Enynes for Tetrasubstituted Allenyl Ketones
Chemical Science, 2022
1566341 CIFC22 H23 Cl2 F6 N3 P RhP 1 21/c 112.804; 13.813; 13.807
90; 95.465; 90
2431Angoy, Marta; Jiménez, M. Victoria; Lahoz, Fernando J.; Vispe, Eugenio; Pérez-Torrente, Jesús J.
Polymerization of phenylacetylene catalyzed by rhodium(i) complexes with N-functionalized N-heterocyclic carbene ligands
Polymer Chemistry, 2022, 13, 1411-1421
1566346 CIFC52 H77 B2 Na O6P 1 21/c 112.5628; 13.3264; 15.5838
90; 106.231; 90
2505Mao, Xiaofeng; Zhang, Jie; Lu, Zhenpin; Xie, Zuowei
A (μ-hydrido)diborane(4) anion and its coordination chemistry with coinage metals.
Chemical science, 2022, 13, 3009-3013
1566347 CIFC55 H65 B2 Cu N2C 1 2/c 113.312; 19.989; 17.2387
90; 96.574; 90
4556.9Mao, Xiaofeng; Zhang, Jie; Lu, Zhenpin; Xie, Zuowei
A (μ-hydrido)diborane(4) anion and its coordination chemistry with coinage metals.
Chemical science, 2022, 13, 3009-3013
1566348 CIFC55 H65 Ag B2 N2C 1 2/c 113.3073; 20.5224; 17.1012
90; 96.418; 90
4641Mao, Xiaofeng; Zhang, Jie; Lu, Zhenpin; Xie, Zuowei
A (μ-hydrido)diborane(4) anion and its coordination chemistry with coinage metals.
Chemical science, 2022, 13, 3009-3013
1566349 CIFC55 H65 Au B2 N2P b c a21.161; 17.679; 25.912
90; 90; 90
9694Mao, Xiaofeng; Zhang, Jie; Lu, Zhenpin; Xie, Zuowei
A (μ-hydrido)diborane(4) anion and its coordination chemistry with coinage metals.
Chemical science, 2022, 13, 3009-3013
1566350 CIFC36 H33 B N4P 1 21/n 114.348; 9.7155; 20.1083
90; 95.494; 90
2790.2Huang, Huanan; Liu, Lingxiu; Wang, Jianguo; Zhou, Ying; Hu, Huanan; Ye, Xinglin; Liu, Guochang; Xu, Zhixiong; Xu, Han; Yang, Wen; Wang, Yawei; Peng, You; Yang, Pinghua; Sun, Jianqi; Yan, Ping; Cao, Xiaohua; Tang, Ben Zhong
Aggregation caused quenching to aggregation induced emission transformation: a precise tuning based on BN-doped polycyclic aromatic hydrocarbons toward subcellular organelle specific imaging
Chemical Science, 2022
1566351 CIFC32 H23 B N2P 1 21/c 18.1281; 14.6359; 22.9977
90; 93.688; 90
2730.2Huang, Huanan; Liu, Lingxiu; Wang, Jianguo; Zhou, Ying; Hu, Huanan; Ye, Xinglin; Liu, Guochang; Xu, Zhixiong; Xu, Han; Yang, Wen; Wang, Yawei; Peng, You; Yang, Pinghua; Sun, Jianqi; Yan, Ping; Cao, Xiaohua; Tang, Ben Zhong
Aggregation caused quenching to aggregation induced emission transformation: a precise tuning based on BN-doped polycyclic aromatic hydrocarbons toward subcellular organelle specific imaging
Chemical Science, 2022
1566352 CIFC17 H23 F N2 O4P 1 21 110.32624; 15.5828; 11.74267
90; 106.113; 90
1815.31Bing, Jade A.; Schley, Nathan D.; Johnston, Jeffrey N.
Fluorine-induced diastereodivergence discovered in an equally rare enantioselective syn-aza-Henry reaction
Chemical Science, 2022
1566353 CIFC20 H31 F N2 O4P 6111.8419; 11.8419; 27.2204
90; 90; 120
3305.73Bing, Jade A.; Schley, Nathan D.; Johnston, Jeffrey N.
Fluorine-induced diastereodivergence discovered in an equally rare enantioselective syn-aza-Henry reaction
Chemical Science, 2022
1566354 CIFC20 H31 F N2 O4P 21 21 2111.50004; 18.45454; 30.36728
90; 90; 90
6444.79Bing, Jade A.; Schley, Nathan D.; Johnston, Jeffrey N.
Fluorine-induced diastereodivergence discovered in an equally rare enantioselective syn-aza-Henry reaction
Chemical Science, 2022
1566355 CIFC21 H24 Cl F N2 O4P 1 21 112.8885; 5.3127; 15.1705
90; 95.058; 90
1034.72Bing, Jade A.; Schley, Nathan D.; Johnston, Jeffrey N.
Fluorine-induced diastereodivergence discovered in an equally rare enantioselective syn-aza-Henry reaction
Chemical Science, 2022
1566356 CIFC20 H32 N2 O4P 6111.84105; 11.84105; 27.02804
90; 90; 120
3281.9Bing, Jade A.; Schley, Nathan D.; Johnston, Jeffrey N.
Fluorine-induced diastereodivergence discovered in an equally rare enantioselective syn-aza-Henry reaction
Chemical Science, 2022
1566357 CIFAl2 H4 O9 Si2P 15.185369; 8.997871; 7.347378
91.7552; 105.095; 89.8358
330.82Richard, D; Rendtorff, N M
Kaolin group minerals under pressure: The study of their structural and electronic properties by DFT methods
Applied Clay Science, 2022, 219, 106444-106444
1566358 CIFAl2 H4 O9 Si2P 15.210756; 5.189703; 7.581904
89.3723; 72.4369; 119.963
166.073Richard, D; Rendtorff, N M
Kaolin group minerals under pressure: The study of their structural and electronic properties by DFT methods
Applied Clay Science, 2022, 219, 106444-106444
1566359 CIFAl2 H4 O9 Si2P 15.162169; 5.176777; 7.781752
104.444; 98.2915; 119.884
165.438Richard, D; Rendtorff, N M
Kaolin group minerals under pressure: The study of their structural and electronic properties by DFT methods
Applied Clay Science, 2022, 219, 106444-106444
1566360 CIFAl2 H4 O9 Si2P 15.159081; 8.934001; 14.410312
90; 96.3063; 90
660.17Richard, D; Rendtorff, N M
Kaolin group minerals under pressure: The study of their structural and electronic properties by DFT methods
Applied Clay Science, 2022, 219, 106444-106444
1566361 CIFAl2 H4 O9 Si2P 15.185121; 8.939635; 14.188437
90.001; 89.08; 89.9997
657.593Richard, D; Rendtorff, N M
Kaolin group minerals under pressure: The study of their structural and electronic properties by DFT methods
Applied Clay Science, 2022, 219, 106444-106444
1566362 CIFAl2 H4 O9 Si2P 18.902908; 5.163177; 14.518933
90.0004; 99.3478; 90
658.533Richard, D; Rendtorff, N M
Kaolin group minerals under pressure: The study of their structural and electronic properties by DFT methods
Applied Clay Science, 2022, 219, 106444-106444
1566363 CIFC18 H21 F4 N3P 1 21/n 19.21581; 14.44752; 13.23644
90; 91.4811; 90
1761.78Tan, Jin-Fay; Bormann, Carl Thomas; Severin, Kay; Cramer, Nicolai
Chemo- and regio-divergent access to fluorinated 1-alkyl and 1-acyl triazenes from alkynyl triazenes
Chemical Science, 2022
1566364 CIFC15 H21 F2 N3 OP -19.5957; 9.9111; 10.2433
104.216; 114.117; 101.164
812.95Tan, Jin-Fay; Bormann, Carl Thomas; Severin, Kay; Cramer, Nicolai
Chemo- and regio-divergent access to fluorinated 1-alkyl and 1-acyl triazenes from alkynyl triazenes
Chemical Science, 2022
1566365 CIFC42 H71 B2 Cs2 F2 N3P 21 21 2110.5055; 17.6861; 24.528
90; 90; 90
4557.3Kirschner, Sven; Peters, Matthew; Yuan, Kang; Uzelac, Marina; Ingleson, Michael J.
Developing organoboranes as phase transfer catalysts for nucleophilic fluorination using CsF
Chemical Science, 2022
1566366 CIFC62 H87.79 Cl4 Fe2 N12 O24.9P -111.684; 13.345; 25.013
75.152; 84.913; 87.753
3754.5Rohde, Gregory T.; Xue, Genqiang; Que, Jr, Lawrence
Explorations of the nonheme high-valent iron-oxo landscape: crystal structure of a synthetic complex with an [FeIV2(μ-O)<sub>2</sub>] diamond core relevant to the chemistry of sMMOH.
Faraday discussions, 2022, 234, 109-128
1566367 CIFC152 H197 Cl8 D24 Fe4 N27 O48P -114.2183; 15.72; 21.5627
86.579; 71.452; 72.753
4360.5Rohde, Gregory T.; Xue, Genqiang; Que, Jr, Lawrence
Explorations of the nonheme high-valent iron-oxo landscape: crystal structure of a synthetic complex with an [FeIV2(μ-O)<sub>2</sub>] diamond core relevant to the chemistry of sMMOH.
Faraday discussions, 2022, 234, 109-128
1566368 CIFC62 H90 Cl3 Fe2 N10 O22C 1 2/c 127.9262; 11.108; 22.8446
90; 105.11; 90
6841.5Rohde, Gregory T.; Xue, Genqiang; Que, Jr, Lawrence
Explorations of the nonheme high-valent iron-oxo landscape: crystal structure of a synthetic complex with an [FeIV2(μ-O)<sub>2</sub>] diamond core relevant to the chemistry of sMMOH.
Faraday discussions, 2022, 234, 109-128
1566369 CIFC19 H24 O3P 21 21 219.16551; 10.4822; 17.5734
90; 90; 90
1688.36Wang, Jianhua; Li, Xiaoxun
Asymmetric β-arylation of cyclopropanols enabled by photoredox and nickel dual catalysis.
Chemical science, 2022, 13, 3020-3026
1566370 CIFC432 H471 Ag38 Au43 Cl12R -3 :H26.1589; 26.1589; 148.875
90; 90; 120
88225Xu, Jiayu; Xiong, Lin; Cai, Xiao; Tang, Shisi; Tang, Ancheng; Liu, Xu; Pei, Yong; Zhu, Yan
Evolution from superatomic Au24Ag20 monomers into molecular-like Au43Ag38 dimeric nanoclusters
Chemical Science, 2022
1566371 CIFC324 H251 Ag38 Au43 Cl9P -125.413; 25.542; 28.705
77.099; 83.178; 73.626
17394Xu, Jiayu; Xiong, Lin; Cai, Xiao; Tang, Shisi; Tang, Ancheng; Liu, Xu; Pei, Yong; Zhu, Yan
Evolution from superatomic Au24Ag20 monomers into molecular-like Au43Ag38 dimeric nanoclusters
Chemical Science, 2022
1566372 CIFC216 H168 Ag20 Au24 Cl4P -118.9562; 19.6527; 33.671
78.295; 79.704; 63.881
10971.5Xu, Jiayu; Xiong, Lin; Cai, Xiao; Tang, Shisi; Tang, Ancheng; Liu, Xu; Pei, Yong; Zhu, Yan
Evolution from superatomic Au24Ag20 monomers into molecular-like Au43Ag38 dimeric nanoclusters
Chemical Science, 2022
1566373 CIFC288 H312 Ag20 Au24 Cl2P -119.2914; 24.9197; 34.987
97.077; 105.131; 100.118
15729Xu, Jiayu; Xiong, Lin; Cai, Xiao; Tang, Shisi; Tang, Ancheng; Liu, Xu; Pei, Yong; Zhu, Yan
Evolution from superatomic Au24Ag20 monomers into molecular-like Au43Ag38 dimeric nanoclusters
Chemical Science, 2022
1566374 CIF
HKL
Paper
C28 H16 Cl4 Ni S4P -19.5487; 11.4141; 15.0254
107.486; 94.791; 111.423
1419.16Koehne, Sydney; Mirmelli, Bailey; Mague, Joel T.; Donahue, James P.
Bis[1,2-bis(4-chlorophenyl)ethylene-1,2-dithiolato(1–)]nickel(II)
IUCrData, 2022, 7, x220148
1566375 CIF
HKL
Paper
C42 H24C 1 2/c 136.615; 8.0709; 36.282
90; 90.863; 90
10720.7Schollmeyer, Dieter; Detert, Heiner
13,13'-Bi(dibenzo[<i>a</i>,<i>i</i>]fluorenylidene)
IUCrData, 2022, 7, x220169
1566376 CIFC15 H19 Cl2 Co N3 OP -17.3409; 8.2378; 14.1911
77.242; 85.133; 77.261
815.8Sharma, Dipesh M.; Gouda, Chandrakant; Gonnade, Rajesh G.; Punji, Benudhar
Room temperature Z-selective hydrogenation of alkynes by hemilabile and non-innocent (NNN)Co(ii) catalysts
Catalysis Science & Technology, 2022, 12, 1843-1849
1566377 CIFC15 H21 Cl2 Co N3P 1 21/c 116.65; 24.8705; 7.9667
90; 90.49; 90
3298.8Sharma, Dipesh M.; Gouda, Chandrakant; Gonnade, Rajesh G.; Punji, Benudhar
Room temperature Z-selective hydrogenation of alkynes by hemilabile and non-innocent (NNN)Co(ii) catalysts
Catalysis Science & Technology, 2022, 12, 1843-1849
1566378 CIFC33 H28 F6 S2P 21 21 2110.4026; 21.482; 25.657
90; 90; 90
5733.5Kim, Alexia; Ngamnithiporn, Aurapat; Bartberger, Michael D.; Stoltz, Brian M.
Iridium-Catalyzed Asymmetric trans-Selective Hydrogenation of 1,3-Disubstituted Isoquinolines
Chemical Science, 2022
1566379 CIFC42 H34 B2 F8 Fe N18P -110.209; 10.4618; 21.8559
82.284; 82.051; 87.374
2290.06Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566380 CIFC42 H34 F12 Fe N18 P2P -19.8259; 10.8645; 22.6056
101.98; 91.87; 91.858
2357.51Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566381 CIFC42 H34 B2 F8 Fe N18P 1 21/c 110.1555; 18.7976; 24.3818
90; 99.376; 90
4592.3Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566382 CIFC42 H34 F12 Fe N18 P2P -19.9994; 11.0389; 22.5035
102.939; 90.267; 90.662
2420.69Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566383 CIFC46 H42 B2 F8 Fe N14I 1 2/a 122.0537; 9.5781; 22.3969
90; 98.891; 90
4674.11Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566384 CIFC42 H34 B2 F8 Fe N14P 1 21/n 110.2889; 18.9461; 22.8834
90; 95.792; 90
4438Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566385 CIFC42 H34 B2 F8 Fe N18P -19.82; 10.0724; 22.5535
92.684; 100.135; 94.567
2184.8Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566386 CIFC46 H38 B2 F8 Fe N14P 1 21/c 110.4294; 18.5284; 24.7378
90; 99.669; 90
4712.4Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566387 CIFC42 H34 B2 F8 Fe N14P -110.2254; 10.1492; 21.6116
96.133; 94.628; 93.979
2215.84Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566388 CIFC42 H34 F12 Fe N18 P2P -110.1721; 11.3235; 22.3862
104.374; 88.492; 88.975
2496.15Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566389 CIFC42 H34 B2 F8 Fe N18P -19.9373; 10.241; 22.3677
81.92; 80.061; 85.898
2217.3Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566390 CIFC24 H24 B2 F8 Fe N10 OC 1 2/c 120.4712; 17.3086; 18.6657
90; 113.286; 90
6075.04Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566391 CIFC42 H34 F12 Fe N18 P2P 1 21/n 112.4569; 16.5431; 23.9335
90; 98.279; 90
4880.71Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566392 CIFC42 H34 F12 Fe N14 P2C 1 2/m 114.9529; 14.8247; 21.0093
90; 95.4899; 90
4635.82Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566393 CIFC46 H38 F12 Fe N14 P2P -19.8578; 10.9457; 22.5606
100.301; 91.468; 93.516
2388.9Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566394 CIFC42 H34 B2 F8 Fe N18P 1 21/c 19.9764; 18.0458; 24.6253
90; 97.592; 90
4394.48Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566395 CIFC46 H42 F12 Fe N14 P2P 1 21 19.0523; 30.808; 18.3037
90; 102.668; 90
4980.3Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566396 CIFC46 H42 F12 Fe N14 P2P 1 21 19.55236; 18.1504; 15.00388
90; 102.111; 90
2543.46Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566397 CIFC42 H34 F12 Fe N14 P2 S4P 32 2 114.8052; 14.8052; 19.695
90; 90; 120
3738.7Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566398 CIFC46 H38 F12 Fe N14 P2P -110.2078; 11.4083; 21.4035
97.221; 96.811; 93.568
2447.76Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566399 CIFC42 H34 B2 F8 Fe N14P 1 21/n 110.2076; 18.9941; 22.8634
90; 96.403; 90
4405.2Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566400 CIFC46 H42 F12 Fe N14 P2P 1 21 19.45496; 17.9858; 14.95322
90; 101.545; 90
2491.42Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566401 CIFC42 H34 B2 F8 Fe N14P -110.0861; 10.1542; 21.849
96.262; 96.2; 93.852
2204.26Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566402 CIFC46 H38 F12 Fe N14 P2P -19.8294; 22.3967; 22.3209
79.439; 89.335; 89.19
4829.9Birchall, Lee; Truccolo, Giada; Jackson, Lewis; Shepherd, Helena Jane
Co-crystallisation as a Modular Approach to the Discovery of Spin-Crossover Materials
Chemical Science, 2022
1566403 CIF
HKL
Paper
C14 H18 N6 O5 SP 1 21/c 112.1115; 10.6282; 17.4772
90; 127.723; 90
1779.48Peña Hueso, Adrian; Esparza Ruiz, Adriana; Flores Parra, Angelina
Bis(2-aminobenzimidazolium) sulfate monohydrate
IUCrData, 2022, 7, x220172
1566404 CIFC37 H31 F O5P 1 21 110.9625; 9.5991; 14.075
90; 97.804; 90
1467.4Wu, Mingyue; Han, Zhaobin; Ni, Huanzhen; Wang, Nengzhong; Ding, Kuiling; Lu, Yixin
Phosphine-catalyzed divergent domino processes between γ-substituted allenoates and carbonyl-activated alkenes
Chemical Science, 2022
1566405 CIFC38 H34 O8P 21 21 215.0488; 25.2228; 8.6864
90; 90; 90
3297.1Wu, Mingyue; Han, Zhaobin; Ni, Huanzhen; Wang, Nengzhong; Ding, Kuiling; Lu, Yixin
Phosphine-catalyzed divergent domino processes between γ-substituted allenoates and carbonyl-activated alkenes
Chemical Science, 2022
1566406 CIFC10 H11 Cl F N O2P 21 21 215.1224; 8.268; 24.1637
90; 90; 90
1023.38Yamane, Daiki; Onitsuka, Satsuki; Re, Suyong; Isogai, Hikaru; Hamada, Rui; Hiramoto, Tadanari; Kawanishi, Eiji; Mizuguchi, Kenji; Shindo, Naoya; Ojida, Akio
Selective covalent targeting of SARS-CoV-2 main protease by enantiopure chlorofluoroacetamide.
Chemical science, 2022, 13, 3027-3034
1566407 CIFC22 H18 Cl F7 N4 O2 SP 1 21/n 19.4276; 19.5575; 50.822
90; 93.634; 90
9351.7Yamane, Daiki; Onitsuka, Satsuki; Re, Suyong; Isogai, Hikaru; Hamada, Rui; Hiramoto, Tadanari; Kawanishi, Eiji; Mizuguchi, Kenji; Shindo, Naoya; Ojida, Akio
Selective covalent targeting of SARS-CoV-2 main protease by enantiopure chlorofluoroacetamide.
Chemical science, 2022, 13, 3027-3034
1566408 CIFC15 H16 O2C 1 c 18.7883; 12.6773; 10.4803
90; 99.097; 90
1152.94Wu, Wen-Biao; Mu, Bo-Shuai; Yu, Jin-Sheng; Zhou, Jian
Me2(CH2=CH)SiCN: a bifunctional ethylene equivalent for Diels-Alder reaction based controllable tandem synthesis
Chemical Science, 2022
1566409 CIFC17 H18 Br N OP 1 21/c 119.7377; 9.5738; 7.613
90; 99.09; 90
1420.52Wu, Wen-Biao; Mu, Bo-Shuai; Yu, Jin-Sheng; Zhou, Jian
Me2(CH2=CH)SiCN: a bifunctional ethylene equivalent for Diels-Alder reaction based controllable tandem synthesis
Chemical Science, 2022
1566410 CIFC16 H18 OP 1 21/n 17.2763; 13.1879; 12.6095
90; 94.179; 90
1206.78Wu, Wen-Biao; Mu, Bo-Shuai; Yu, Jin-Sheng; Zhou, Jian
Me2(CH2=CH)SiCN: a bifunctional ethylene equivalent for Diels-Alder reaction based controllable tandem synthesis
Chemical Science, 2022
1566411 CIFC18 H21 N O2P -17.2466; 8.3731; 12.6472
95.047; 96.626; 94.254
756.54Wu, Wen-Biao; Mu, Bo-Shuai; Yu, Jin-Sheng; Zhou, Jian
Me2(CH2=CH)SiCN: a bifunctional ethylene equivalent for Diels-Alder reaction based controllable tandem synthesis
Chemical Science, 2022
1566412 CIFC25 H32 O2P 1 21 112.196; 6.2725; 13.2067
90; 97.53; 90
1001.59Wu, Wen-Biao; Mu, Bo-Shuai; Yu, Jin-Sheng; Zhou, Jian
Me2(CH2=CH)SiCN: a bifunctional ethylene equivalent for Diels-Alder reaction based controllable tandem synthesis
Chemical Science, 2022
1566413 CIFC20 H17 N OP 21 21 216.55952; 7.19955; 33.374
90; 90; 90
1576.11Wu, Wen-Biao; Mu, Bo-Shuai; Yu, Jin-Sheng; Zhou, Jian
Me2(CH2=CH)SiCN: a bifunctional ethylene equivalent for Diels-Alder reaction based controllable tandem synthesis
Chemical Science, 2022
1566414 CIFC20 H22 N4 S2 ZnC 1 2 138.805; 6.6795; 16.442
90; 91.833; 90
4259.6Koskela, Kristopher M.; Quiton, Stephen J.; Sharada, Shaama Mallikarjun; Williams, Travis J.; Brutchey, Richard L.
Kinetics and mechanistic details of bulk ZnO dissolution using a thiol–imidazole system
Chemical Science, 2022
1566415 CIFC92 H120 B20 Co2 Cs2 O4 P4P 1 21/n 112.1327; 17.926; 22.865
90; 103.927; 90
4826.7Keener, Megan; Mattejat, Maxwell; Zheng, Shao-Liang; Wu, Guang; Hayton, Trevor W.; Ménard, Gabriel
Selective electrochemical capture and release of uranyl from aqueous alkali, lanthanide, and actinide mixtures using redox-switchable carboranes
Chemical Science, 2022
1566416 CIFC254 H332 B60 Co4 N7 O14 P12 Th2C 1 2/c 170.509; 17.5517; 23.4008
90; 108.146; 90
27519Keener, Megan; Mattejat, Maxwell; Zheng, Shao-Liang; Wu, Guang; Hayton, Trevor W.; Ménard, Gabriel
Selective electrochemical capture and release of uranyl from aqueous alkali, lanthanide, and actinide mixtures using redox-switchable carboranes
Chemical Science, 2022
1566417 CIFC154 H129 B30 Co3 N8 Nd O6 P6P c c n19.004; 23.285; 36.829
90; 90; 90
16297Keener, Megan; Mattejat, Maxwell; Zheng, Shao-Liang; Wu, Guang; Hayton, Trevor W.; Ménard, Gabriel
Selective electrochemical capture and release of uranyl from aqueous alkali, lanthanide, and actinide mixtures using redox-switchable carboranes
Chemical Science, 2022
1566418 CIFC42 H67 B10 N O2 P2P -111.082; 11.112; 37.623
93.075; 96.139; 101.822
4495Keener, Megan; Mattejat, Maxwell; Zheng, Shao-Liang; Wu, Guang; Hayton, Trevor W.; Ménard, Gabriel
Selective electrochemical capture and release of uranyl from aqueous alkali, lanthanide, and actinide mixtures using redox-switchable carboranes
Chemical Science, 2022
1566419 CIFC154 H204 B30 Co3 N8 O6 P6 SmP 1 21/c 119.0168; 23.3163; 36.48
90; 90.563; 90
16174.5Keener, Megan; Mattejat, Maxwell; Zheng, Shao-Liang; Wu, Guang; Hayton, Trevor W.; Ménard, Gabriel
Selective electrochemical capture and release of uranyl from aqueous alkali, lanthanide, and actinide mixtures using redox-switchable carboranes
Chemical Science, 2022
1566420 CIFC25 H33 N O6 S SiP -19.1233; 11.1747; 13.3729
92.8956; 109.796; 90.2891
1280.81Bunyamin, Amanda; Hua, Carol; Polyzos, Anastasios; Priebbenow, Daniel
Intramolecular Photochemical [2+1]-Cycloadditions of Nucleophilic Siloxy Carbenes
Chemical Science, 2022
1566421 CIFC16 H22 O4 SiP 1 21/c 18.6905; 16.3296; 11.4842
90; 98.168; 90
1613.22Bunyamin, Amanda; Hua, Carol; Polyzos, Anastasios; Priebbenow, Daniel
Intramolecular Photochemical [2+1]-Cycloadditions of Nucleophilic Siloxy Carbenes
Chemical Science, 2022
1566422 CIFC23 H29 N O6 S SiC 1 2/c 145.775; 5.703; 18.31
90; 99.58; 90
4713.3Bunyamin, Amanda; Hua, Carol; Polyzos, Anastasios; Priebbenow, Daniel
Intramolecular Photochemical [2+1]-Cycloadditions of Nucleophilic Siloxy Carbenes
Chemical Science, 2022
1566423 CIFC23 H29 N O5 S SiP 1 21 18.92; 18.338; 14.723
90; 99.61; 90
2374.5Bunyamin, Amanda; Hua, Carol; Polyzos, Anastasios; Priebbenow, Daniel
Intramolecular Photochemical [2+1]-Cycloadditions of Nucleophilic Siloxy Carbenes
Chemical Science, 2022
1566424 CIF
HKL
Paper
C23 H19 N O5P 1 21/n 19.7089; 14.351; 14.2749
90; 106.946; 90
1902.6Surya Prakash Rao, H.; M, Prabakaran; Muthukumaran, Jayaraman
Ethyl 10-cyano-7-hydroxy-6-oxo-3-phenyl-8,9,10,10a-tetrahydro-6<i>H</i>-benzo[<i>c</i>]chromene-10-carboxylate
IUCrData, 2022, 7, x220199
1566425 CIF
HKL
Paper
C10 H13 Cl N3 O3 PP 1 21/c 111.5857; 7.0616; 16.6118
90; 108.222; 90
1290.92Chachlaki, Elpiniki; Choquesillo-Lazarte, Duane; Demadis, Konstantinos D.
5-Phenyl-3-(2-phosphonoethyl)-1,2,3-triazol-1-ium chloride
IUCrData, 2022, 7, x220189
1566426 CIFC21 H17 F3 O3 S2P 1 21/n 18.8793; 13.4651; 16.2393
90; 94.659; 90
1935.17Zhang, Qiu-Chi; Xue, Xiaoping; Hong, Biqiong; Gu, Zhenhua
Torsional Strain Inversed Chemoselectivity in Pd-Catalyzed Atroposelective Carboxylation Reaction of Dibenzothiophenium
Chemical Science, 2022
1566427 CIFC30 H29 N O SP 31 2 110.0094; 10.0094; 42.946
90; 90; 120
3726.2Zhang, Qiu-Chi; Xue, Xiaoping; Hong, Biqiong; Gu, Zhenhua
Torsional Strain Inversed Chemoselectivity in Pd-Catalyzed Atroposelective Carboxylation Reaction of Dibenzothiophenium
Chemical Science, 2022
1566428 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566429 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566430 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566431 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566432 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566433 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566434 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566435 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566436 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566437 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566438 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566439 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566440 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566441 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566442 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566443 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566444 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566445 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566446 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566447 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566448 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566449 CIFC3 H7 N O2P 21 21 215.9279; 12.2597; 5.7939
90; 90; 90
421.07Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566450 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566451 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566452 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566453 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566454 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566456 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566457 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566458 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566459 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566460 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566461 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566462 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566463 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566464 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566465 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566466 CIFC13 H11 N O5P 21 21 215.3386; 9.9878; 22.3493
90; 90; 90
1191.68Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566467 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566468 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566469 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566470 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566471 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566472 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566473 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566474 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566475 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566476 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566477 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566478 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566479 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566480 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566481 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566482 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566483 CIFC8 H18 Mg O14P 1 21/c 110.195; 11.759; 6.6206
90; 103.67; 90
771.2Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566484 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566485 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566486 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566487 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566488 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566489 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566490 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566491 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566492 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566493 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566494 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566495 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566496 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566497 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566498 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566499 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566500 CIFC5 H12 O5P 21 21 218.264; 8.901; 8.9223
90; 90; 90
656.3Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566501 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566502 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566503 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566504 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566505 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566506 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566507 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566508 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566509 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566510 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566511 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566512 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566513 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566514 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566515 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566516 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566517 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566518 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566519 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566520 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566521 CIFC64 H86 Cl2 N6 O6P 3120.2894; 20.2894; 13.6577
90; 90; 120
4869.1Ding, Yanjun; Alimi, Lukman O.; Du, Jing; Hua, Bin; Dey, Avishek; Yu, Pei; Khashab, Niveen M.
Pillar[3]trianglamines: deeper cavity triangular macrocycles for selective hexene isomer separation
Chemical Science, 2022
1566522 CIFC69 H96 N6 O6R 3 :H20.366; 20.366; 13.791
90; 90; 120
4953.79Ding, Yanjun; Alimi, Lukman O.; Du, Jing; Hua, Bin; Dey, Avishek; Yu, Pei; Khashab, Niveen M.
Pillar[3]trianglamines: deeper cavity triangular macrocycles for selective hexene isomer separation
Chemical Science, 2022
1566523 CIFC66 H90 N6 O6R 3 :H20.3338; 20.3338; 13.7372
90; 90; 120
4918.88Ding, Yanjun; Alimi, Lukman O.; Du, Jing; Hua, Bin; Dey, Avishek; Yu, Pei; Khashab, Niveen M.
Pillar[3]trianglamines: deeper cavity triangular macrocycles for selective hexene isomer separation
Chemical Science, 2022
1566524 CIFC74 H104 Ga2 N8 Sb2P -110.4552; 11.9732; 14.9227
93.2189; 97.3354; 107.995
1753.06Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566525 CIFC66 H102 Ga2 N4 O2 Sb2 SiC 1 2/c 159.557; 11.8135; 21.011
90; 108.078; 90
14053Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566526 CIFC78 H116 Ga2 N6 Sb2 SiP -110.919; 14.343; 26.014
83.994; 78.718; 88.053
3973Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566527 CIFC64.5 H98 Cl2 Ga2 N4 Sb2 SiP 1 21/c 119.7547; 10.5843; 33.512
90; 96.97; 90
6955.2Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566528 CIFC71.5 H103 Ga2 N7 Sb2P 1 21/c 119.9634; 12.5667; 29.4717
90; 109.028; 90
6989.7Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566529 CIFC65 H103 Ga2 N7 Sb2 SiP 1 21 110.7967; 21.163; 15.164
90; 96.979; 90
3439.2Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566530 CIFC79 H117 Ga2 N7 Sb2P 1 21/n 110.9672; 45.894; 15.2335
90; 94.502; 90
7643.8Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566531 CIFC72.5 H102 F3 Ga2 N7 Sb2P -110.6581; 12.7136; 27.5744
102.129; 92.993; 98.869
3595.5Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566532 CIFC78 H119 F3 Ga2 N7 Sb2P 1 21/n 112.1758; 27.211; 24.248
90; 99.805; 90
7916.4Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566533 CIFC68 H110 Ga2 N8 Sb2 Si2P 1 21/n 111.889; 18.46; 33.366
90; 96.36; 90
7278Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566534 CIFC81 H112 Ga2 N8 Sb2P -111.6222; 17.8727; 19.5796
108.099; 90.076; 93.817
3856.2Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566535 CIFC77 H110 Ga2 N8 Sb2P 1 21/c 113.6969; 28.763; 20.711
90; 94.587; 90
8133.3Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566536 CIFC84 H108 Ga2 N6 Sb4P -112.0886; 12.3645; 14.1831
86.028; 75.849; 74.786
1983.54Weinert, Hanns Micha; Wölper, Christoph; Schulz, Stephan
Synthesis of Distibiranes and Azadistibiranes by Cycloaddition Reactions of Distibenes with Diazomethanes and Azides
Chemical Science, 2022
1566537 CIFC44 H45 F6 N6 P Ru2P 1 21/n 112.6141; 12.2041; 27.463
90; 98.846; 90
4177.47Bellini, Marco; Bösken, Jonas; Bartoli, Francesco; Miller, Hamish; Thöny, Debora; Poggini, Lorenzo; Wörle, Michael; Oberhauser, Werner; Gamboa-Carballo, Juan José; Lavacchi, Alessandro; Krumeich, Frank; Grützmacher, Hansjörg; Vizza, Francesco
Remarkable Stability of a Molecular Ruthenium Complex in PEM Water Electrolysis
Chemical Science, 2022
1566538 CIFC36 H35 B F4 N2 O Ru2P -19.5469; 10.1082; 17.4002
78.96; 76.819; 85.773
1603.87Bellini, Marco; Bösken, Jonas; Bartoli, Francesco; Miller, Hamish; Thöny, Debora; Poggini, Lorenzo; Wörle, Michael; Oberhauser, Werner; Gamboa-Carballo, Juan José; Lavacchi, Alessandro; Krumeich, Frank; Grützmacher, Hansjörg; Vizza, Francesco
Remarkable Stability of a Molecular Ruthenium Complex in PEM Water Electrolysis
Chemical Science, 2022
1566539 CIFC37 H33 NC 1 2/c 135.402; 9.1778; 17.961
90; 110.844; 90
5453.8Duan, Shengzu; Zi, Yujin; Wang, Lingling; Cong, Jielun; Chen, Wen; Li, Minyan; Zhang, Hongbin; Yang, Xiaodong; Walsh, Patrick
α-Branched Amines through Radical Coupling with 2-Azaallyl Anions, Redox Active Esters and Alkenes
Chemical Science, 2022
1566540 CIFC21 H15 Cl F3 N3 O2P 1 21/n 115.287; 15.859; 17.629
90; 114.523; 90
3888Yang, Hefei; Wang, Le-Cheng; Zhang, Yu; Zheng, Dongling; Chen, Zhengkai; Wu, Xiao-Feng
Controllable access to trifluoromethyl-containing indoles and indolines: Palladium-catalyzed regioselective functionalization of unactivated alkenes with trifluoroacetimidoyl chlorides
Chemical Science, 2022
1566541 CIFC22 H15 F3 N3 OP 1 21/c 115.6657; 33.014; 7.2436
90; 98.651; 90
3703.7Yang, Hefei; Wang, Le-Cheng; Zhang, Yu; Zheng, Dongling; Chen, Zhengkai; Wu, Xiao-Feng
Controllable access to trifluoromethyl-containing indoles and indolines: Palladium-catalyzed regioselective functionalization of unactivated alkenes with trifluoroacetimidoyl chlorides
Chemical Science, 2022
1566542 CIFC492 H528 N48 O60P 3 c 132.5182; 32.5182; 51.424
90; 90; 120
47092Xu, Ning; Su, Kongzhao; M. El-Sayed, El-Sayed; Ju, Zhanfeng; Yuan, Daqiang
Chiral Proline-Substituted Porous Organic Cages in Asymmetric Organocatalysis
Chemical Science, 2022
1566543 CIFC280 H320 N32 O40P 128.4101; 30.2731; 32.7364
82.444; 81.795; 63.273
24818Xu, Ning; Su, Kongzhao; M. El-Sayed, El-Sayed; Ju, Zhanfeng; Yuan, Daqiang
Chiral Proline-Substituted Porous Organic Cages in Asymmetric Organocatalysis
Chemical Science, 2022
1566544 CIFC28 H28 Br Cl Cu N6 O2P 1 21/c 116.1127; 8.9758; 19.2463
90; 103.825; 90
2702.85Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566545 CIFC28 H28 Cl Cu N6 O1.5P 1 21/c 115.0147; 34.2629; 10.2999
90; 107.565; 90
5051.7Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566546 CIFC32 H39 Cl3 Cu N8 O3P 17.2313; 9.2604; 14.1201
78.16; 77.214; 70.423
859.9Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566547 CIFC60 H63 Br2 Cl N14 Ni O4P -19.7632; 15.6735; 19.622
87.172; 75.925; 85.319
2901.4Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566548 CIFC33 H39 Cl Cu N8 O3C 1 2/c 137.667; 10.5159; 19.22
90; 118.948; 90
6661.9Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566549 CIFC26 H23 Br N6 OP -112.22; 12.7328; 16.424
76.485; 82.598; 67.698
2296.6Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566550 CIFC12 H16 N2 O2P -17.7366; 7.9072; 10.7395
99.872; 102.594; 113.64
562.21Wittmann, Christopher; Bacher, Felix; Enyedy, Eva A.; Dömötör, Orsolya; Spengler, Gabriella; Madejski, Christian; Reynisson, Jóhannes; Arion, Vladimir B.
Highly Antiproliferative Latonduine and Indolo[2,3-<i>c</i>]quinoline Derivatives: Complex Formation with Copper(II) Markedly Changes the Kinase Inhibitory Profile.
Journal of medicinal chemistry, 2022, 65, 2238-2261
1566551 CIFC17 H29 N OP 1 21 17.18; 4.628; 48.944
90; 92.55; 90
1624.8Wu, Zhen-Long; Zhang, Wei-Yan; Zhong, Jin-Cheng; Huang, Xiao-Jun; Xu, Wei; Chen, Min-Feng; Weng, Shao-Quan; Zhang, Dong-Mei; Che, Chun-Tao; Ye, Wen-Cai; Wang, Ying
Angiogenesis-Inhibitory Piperidine Alkaloids from the Leaves of <i>Microcos paniculata</i>.
Journal of natural products, 2022, 85, 375-383
1566552 CIFC17 H31 N O3P 1 21 112.37896; 5.01515; 13.9105
90; 99.1891; 90
852.51Wu, Zhen-Long; Zhang, Wei-Yan; Zhong, Jin-Cheng; Huang, Xiao-Jun; Xu, Wei; Chen, Min-Feng; Weng, Shao-Quan; Zhang, Dong-Mei; Che, Chun-Tao; Ye, Wen-Cai; Wang, Ying
Angiogenesis-Inhibitory Piperidine Alkaloids from the Leaves of <i>Microcos paniculata</i>.
Journal of natural products, 2022, 85, 375-383
1566553 CIFC16 H27 N OP 21 21 215.1556; 9.493; 31.8376
90; 90; 90
1558.2Wu, Zhen-Long; Zhang, Wei-Yan; Zhong, Jin-Cheng; Huang, Xiao-Jun; Xu, Wei; Chen, Min-Feng; Weng, Shao-Quan; Zhang, Dong-Mei; Che, Chun-Tao; Ye, Wen-Cai; Wang, Ying
Angiogenesis-Inhibitory Piperidine Alkaloids from the Leaves of <i>Microcos paniculata</i>.
Journal of natural products, 2022, 85, 375-383
1566554 CIFC16 H25 N OP 21 21 215.0809; 9.5095; 31.1268
90; 90; 90
1503.95Wu, Zhen-Long; Zhang, Wei-Yan; Zhong, Jin-Cheng; Huang, Xiao-Jun; Xu, Wei; Chen, Min-Feng; Weng, Shao-Quan; Zhang, Dong-Mei; Che, Chun-Tao; Ye, Wen-Cai; Wang, Ying
Angiogenesis-Inhibitory Piperidine Alkaloids from the Leaves of <i>Microcos paniculata</i>.
Journal of natural products, 2022, 85, 375-383
1566555 CIFC21 H22 O8 SP 1 21/c 19.3577; 25.184; 9.0558
90; 96.873; 90
2118.8Xu, Yanchao; Liu, Wen; Wu, Dan; He, Wenwen; Zuo, Mingxing; Wang, Dongyang; Fu, Peng; Wang, Liping; Zhu, Weiming
Sulfur-Containing Phenolic Compounds from the Cave Soil-Derived <i>Aspergillus fumigatus</i> GZWMJZ-152.
Journal of natural products, 2022, 85, 433-440
1566556 CIFC9 H9 N O3 SP 21 21 218.2204; 8.5993; 13.4964
90; 90; 90
954.06Xu, Yanchao; Liu, Wen; Wu, Dan; He, Wenwen; Zuo, Mingxing; Wang, Dongyang; Fu, Peng; Wang, Liping; Zhu, Weiming
Sulfur-Containing Phenolic Compounds from the Cave Soil-Derived <i>Aspergillus fumigatus</i> GZWMJZ-152.
Journal of natural products, 2022, 85, 433-440
1566557 CIFC19 H20 O8 SP -18.1509; 10.0095; 12.0777
106.945; 90.36; 90.567
942.51Xu, Yanchao; Liu, Wen; Wu, Dan; He, Wenwen; Zuo, Mingxing; Wang, Dongyang; Fu, Peng; Wang, Liping; Zhu, Weiming
Sulfur-Containing Phenolic Compounds from the Cave Soil-Derived <i>Aspergillus fumigatus</i> GZWMJZ-152.
Journal of natural products, 2022, 85, 433-440
1566558 CIFC21 H22 O9 SP -18.1167; 9.0623; 15.8947
86.54; 87.286; 65.417
1060.92Xu, Yanchao; Liu, Wen; Wu, Dan; He, Wenwen; Zuo, Mingxing; Wang, Dongyang; Fu, Peng; Wang, Liping; Zhu, Weiming
Sulfur-Containing Phenolic Compounds from the Cave Soil-Derived <i>Aspergillus fumigatus</i> GZWMJZ-152.
Journal of natural products, 2022, 85, 433-440
1566559 CIFBi O2P 1 21/m 111.6212; 3.4067; 7.3247
90; 99.9889; 90
285.589Feng, Xuezhen; Zou, Haiyuan; Zheng, Renji; Wei, Wenfei; Wang, Ranhao; Zou, Wensong; Lim, Gukhyun; Hong, Jihyun; Duan, Lele; Chen, Hong
Bi<sub>2</sub>O<sub>3</sub>/BiO<sub>2</sub> Nanoheterojunction for Highly Efficient Electrocatalytic CO<sub>2</sub> Reduction to Formate.
Nano letters, 2022, 22, 1656-1664
1566560 CIF
HKL
Paper
C6 H13 Cl6 N3 O2 SnP -17.4224; 7.4518; 8.4986
105.726; 97.426; 112.383
403.85Ghallab, Rochdi; Bougueria, Hassiba; Merazig, Hocine
4-Amidinopyridinium hexachloridostannate(IV) dihydrate
IUCrData, 2022, 7, x220195
1566561 CIF
HKL
Paper
C10 H14 Cl10 N4 O2 SnP -17.4624; 8.4715; 10.1324
101.434; 90.043; 107.554
597.34Ghallab, Rochdi; Bougueria, Hassiba; Merazig, Hocine
Bis(2-amino-3,5-dichloropyridinium) hexachloridostannate(IV) dihydrate
IUCrData, 2022, 7
1566562 CIFC34 H38 Au2 O4 P2 S2P 1 21/n 111.7462; 39.197; 15.6529
90; 107.882; 90
6858.7Duminy, Welni; Pillay, Michael N.; van Zyl, Werner E.
Silver(I) and Gold(I) Monothiocarbonate Complexes: Synthesis, Structure, Luminescence
Inorganics, 2022, 10, 19
1566563 CIFC17 H22 O10P 21 21 217.776; 8.6993; 26.8196
90; 90; 90
1814.23Chen, Jianwei; Chen, Jun; Wang, Siqi; Bao, Xiaoze; Li, Songwei; Wei, Bin; Zhang, Huawei; Wang, Hong
Amycolachromones A–F, Isolated from a Streptomycin-Resistant Strain of the Deep-Sea Marine Actinomycete Amycolatopsis sp. WP1
Marine Drugs, 2022, 20, 162
1566564 CIFC1.21 H1.21 O0.6P 21 21 217.776; 8.6993; 26.8196
90; 90; 90
1814.23Chen, Jianwei; Chen, Jun; Wang, Siqi; Bao, Xiaoze; Li, Songwei; Wei, Bin; Zhang, Huawei; Wang, Hong
Amycolachromones A–F, Isolated from a Streptomycin-Resistant Strain of the Deep-Sea Marine Actinomycete Amycolatopsis sp. WP1
Marine Drugs, 2022, 20, 162
1566565 CIFC13.25 H13.25 O13.25P 21 21 217.776; 8.6993; 26.8196
90; 90; 90
1814.23Chen, Jianwei; Chen, Jun; Wang, Siqi; Bao, Xiaoze; Li, Songwei; Wei, Bin; Zhang, Huawei; Wang, Hong
Amycolachromones A–F, Isolated from a Streptomycin-Resistant Strain of the Deep-Sea Marine Actinomycete Amycolatopsis sp. WP1
Marine Drugs, 2022, 20, 162
1566566 CIFC17 H22 O10P 21 21 217.776; 8.6993; 26.8196
90; 90; 90
1814.23Chen, Jianwei; Chen, Jun; Wang, Siqi; Bao, Xiaoze; Li, Songwei; Wei, Bin; Zhang, Huawei; Wang, Hong
Amycolachromones A–F, Isolated from a Streptomycin-Resistant Strain of the Deep-Sea Marine Actinomycete Amycolatopsis sp. WP1
Marine Drugs, 2022, 20, 162
1566567 CIFC36 H31 N5 OP -17.8563; 9.2517; 21.803
95.923; 98.136; 96.538
1547.1Guillon, Jean; Savrimoutou, Solène; Albenque-Rubio, Sandra; Pinaud, Noël; Moreau, Stéphane; Desplat, Vanessa
Synthesis, Crystal Structure and Anti-Leukemic Activity of 1,3-Dihydro-1-{1-[4-(4-phenylpyrrolo[1,2-a]quinoxalin-3-yl)benzyl]piperidin-4-yl}-2H-benzimidazol-2-one
Molbank, 2022, 2022, M1333
1566568 CIFC80 H110 Cu4 O2 P6P 1 21/n 117.127; 19.946; 23.841
90; 105.715; 90
7840Dannenberg, Steven G.; Waterman, Rory
Cyclo-Tetrakis(μ-diphenylphosphido)-1,5-bis(tri-tert-butylphosphine)-Tetracopper
Molbank, 2022, 2022, M1334
1566569 CIFC28 H37 Cl4 I N2 SP 1 21/n 110.5912; 18.7089; 16.071
90; 102.093; 90
3113.8Saab, Marina; Nahra, Fady; Van Hecke, Kristof
Charge-Transfer Adducts of Chalcogenourea Derivatives of N-Heterocyclic Carbenes with Iodine Monochloride
Molbank, 2022, 2022, M1344
1566570 CIFC30 H42 Cl3 I N2 SeP 1 21/n 19.741; 16.9218; 19.8068
90; 97.399; 90
3237.67Saab, Marina; Nahra, Fady; Van Hecke, Kristof
Charge-Transfer Adducts of Chalcogenourea Derivatives of N-Heterocyclic Carbenes with Iodine Monochloride
Molbank, 2022, 2022, M1344
1566571 CIFC20 H24 N6 O4P -19.6243; 9.859; 12.5952
68.645; 72.467; 75.23
1047.06Lopes, Susana M. M.; Lemos, Américo; Paixão, José A.; Pinho e Melo, Teresa M. V. D.
Ethyl 7-Acetyl-8a-methyl-3-(1-phenyl-1H-tetrazol-5-yl)-1,4,4a,5,6,8a-hexahydro-7H-pyrano[2,3-c]pyridazine-1-carboxylate
Molbank, 2022, 2022, M1338
1566572 CIFC26 H31 N O12P 1 21 110.1989; 8.7455; 15.8721
90; 99.068; 90
1398.01Fitzgerald, Liam S.; O’Malley, Ciaran; Murphy, Paul V.
(1R,2R,3S,4R)-1-(Acetylamino)-2,4,5-tris(acetyloxy)-1-((2S)-4-(benzyloxy)-5-oxo-2,5-dihydrofuran-2-yl)pentan-3-yl Acetate
Molbank, 2022, 2022, M1337
1566573 CIFC13 H13 Cl N2P 1 21/c 19.4547; 16.2237; 7.9004
90; 104.169; 90
1174.98Adeleke, Adesola A.; Omondi, Bernard
Crystal Structure of a Chiral Sec-Amine, 4-Chloro-N-(1-(pyridin-2-yl)ethyl)aniline
Molbank, 2022, 2022, M1335
1566574 CIFC11 H10 N4 O3C 1 c 123.794; 5.347; 8.9367
90; 96.216; 90
1130.3Pokhodylo, Nazariy T.; Slyvka, Yuriy I.; Goreshnik, Evgeny A.; Obushak, Mykola D.
Ethyl 5-Formyl-1-(pyridin-3-yl)-1H-1,2,3-triazole-4-carboxylate: Synthesis, Crystal Structure, Hirshfeld Surface Analysis, and DFT Calculation
Molbank, 2022, 2022, M1340
1566575 CIFC14 H16 Co N2 O12P 1 21/n 16.9863; 23.7443; 10.6564
90; 100.456; 90
1738.38Xia, Zhengyao; Li, Yan; Ji, Cheng; Jiang, Yucheng; Ma, Chunlan; Gao, Ju; Zhang, Jinlei
Slow-Relaxation Behavior of a Mononuclear Co(II) Complex Featuring Long Axial Co-O Bond.
Nanomaterials (Basel, Switzerland), 2022, 12, 707
1566576 CIFC70 H81 B N2 O4P 1 21/c 125.398; 21.296; 11.522
90; 96.49; 90
6192Han, Jianmei; Huang, Zhongyan; Miao, Jingsheng; Qiu, Yuntao; Xie, Ziyang; Yang, Chuluo
Narrowband blue emission with insensitivity to the doping concentration from an oxygen-bridged triarylboron-based TADF emitter: nondoped OLEDs with a high external quantum efficiency up to 21.4%
Chemical Science, 2022
1566577 CIFC20 H46 Cl N2 P2 ReP 1 21/n 18.5852; 23.581; 12.2292
90; 92.515; 90
2473.39Connor, Gannon P.; Delony, Daniel; Weber, Jeremy E.; Mercado, Brandon Q.; Curley, Julia B.; Schneider, Sven; Mayer, James M.; Holland, Patrick L.
Facile conversion of ammonia to a nitride in a rhenium system that cleaves dinitrogen
Chemical Science, 2022
1566578 CIFC54 H67 B Cl F24 N3 O0.5 P2 ReP -112.2681; 15.3208; 17.9247
92.777; 109.357; 97.022
3140.5Connor, Gannon P.; Delony, Daniel; Weber, Jeremy E.; Mercado, Brandon Q.; Curley, Julia B.; Schneider, Sven; Mayer, James M.; Holland, Patrick L.
Facile conversion of ammonia to a nitride in a rhenium system that cleaves dinitrogen
Chemical Science, 2022
1566579 CIFC14 H22 OP 4110.0087; 10.0087; 12.7456
90; 90; 90
1276.78Pan, Aaron; Chojnacka, Maja; Crowley, Robert; Göttemann, Lucas; Haines, Brandon E.; Kou, Kevin G. M.
Synergistic Brønsted/Lewis acid catalyzed aromatic alkylation with unactivated tertiary alcohols or di-tert-butylperoxide to synthesize quaternary carbon centers
Chemical Science, 2022
1566580 CIFC261 H476 Ag55 Cu3 F3 Mo8 O38 S43P -123.3674; 23.7497; 38.3998
73.33; 75.236; 73.633
19233.6Gao, Jin-Ping; Qi, Zhikai; Zhang, Fu-Qiang; Zhang, Xian-Ming
In situ insertion of copper to form heteroanionic D3h-symmetric [Cu3Mo8O32]10− for a templated Ag55 nanocluster
Nanoscale, 2022
1566581 CIF
Paper
C68.39 H67.65 Cl6 N12 O4 Zn3C 1 2/c 133.3132; 14.4948; 31.7714
90; 102.245; 90
14992.4Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566582 CIFC68.62 H68.92 Cl6 N12 O4 Zn3C 1 2/c 133.306; 14.488; 31.8026
90; 102.247; 90
14996.7Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566583 CIFC54.5 H43 I6 N12 O4 Zn3C 1 2/c 134.4866; 14.9746; 31.0009
90; 101.933; 90
15663.6Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566584 CIFC55 H42 I6 N12 O4 Zn3C 1 2/c 134.4862; 15.0052; 31.125
90; 101.958; 90
15756.8Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566585 CIFC63 H78 I6 N12 Zn3C 1 2/c 134.5713; 15.1587; 29.5198
90; 100.649; 90
15203.6Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566586 CIFC64.69 H81.39 I6 N12 Zn3C 1 2/c 134.595; 15.1725; 29.535
90; 100.647; 90
15235.8Meurer, Florian; von Essen, Carolina; Kühn, Clemens; Puschmann, Horst; Bodensteiner, Michael
The benefits of Cu Kβ radiation for the single-crystal X-ray structure determination of crystalline sponges
IUCrJ, 2022, 9
1566587 CIFC25 H21 F3 N2 O3 SP 1 21/c 115.2479; 19.58181; 16.7407
90; 116.095; 90
4488.95Dai, Yating; Liang, Shuangshuang; Zeng, Guangkuo; Huang, Hongchun; Zhao, Xiaowei; Cao, Shanshan; Jiang, Zhiyong
Asymmetric [3 + 2] photocycloadditions of cyclopropylamines with electron-rich and electron-neutral olefins
Chemical Science, 2022
1566588 CIFC36 H32 F3 N O5 SC 1 2 129.3277; 7.49483; 18.2663
90; 124.382; 90
3313.6Dai, Yating; Liang, Shuangshuang; Zeng, Guangkuo; Huang, Hongchun; Zhao, Xiaowei; Cao, Shanshan; Jiang, Zhiyong
Asymmetric [3 + 2] photocycloadditions of cyclopropylamines with electron-rich and electron-neutral olefins
Chemical Science, 2022
1566589 CIFC33 H34 Cl N O2P 1 21 111.1324; 7.5493; 16.7445
90; 90.526; 90
1407.18Dai, Yating; Liang, Shuangshuang; Zeng, Guangkuo; Huang, Hongchun; Zhao, Xiaowei; Cao, Shanshan; Jiang, Zhiyong
Asymmetric [3 + 2] photocycloadditions of cyclopropylamines with electron-rich and electron-neutral olefins
Chemical Science, 2022
1566590 CIFC30 H29 Cl N2 O3P 21 21 2112.3663; 16.7129; 25.3786
90; 90; 90
5245.17Dai, Yating; Liang, Shuangshuang; Zeng, Guangkuo; Huang, Hongchun; Zhao, Xiaowei; Cao, Shanshan; Jiang, Zhiyong
Asymmetric [3 + 2] photocycloadditions of cyclopropylamines with electron-rich and electron-neutral olefins
Chemical Science, 2022
1566591 CIFC25 H25 O2 PP 21 21 215.89107; 16.00327; 22.3169
90; 90; 90
2103.96Zhang, Ya-Qian; Zhang, Qingwei; Han, Xue-Yu; Wu, Yue; Qi, Peng-Jia; Zhang, Qing
Ni-Catalyzed Asymmetric Hydrophosphinylation of Conjugated Enynes and Mechanistic Studies
Chemical Science, 2022
1566592 CIFC23 H22 O3 SP 17.2748; 12.2905; 12.5063
63.599; 79.446; 75.302
965.6Li, Yanjun; Liou, Yan-Cheng; Chen, Xinran; Ackermann, Lutz
Thioether-enabled palladium-catalyzed atroposelective C–H olefination for N−C and C−C axial chirality
Chemical Science, 2022
1566593 CIFC20 H20 N2 O SP 1 21 111.0831; 6.8389; 12.0729
90; 109.142; 90
864.48Li, Yanjun; Liou, Yan-Cheng; Chen, Xinran; Ackermann, Lutz
Thioether-enabled palladium-catalyzed atroposelective C–H olefination for N−C and C−C axial chirality
Chemical Science, 2022
1566594 CIF
HKL
Paper
C15 H26 I N3 O6P 1 21 110.816; 7.0106; 13.169
90; 106.833; 90
955.8Lambrecht, Sina; Villinger, Alexander; Jopp, Stefan
1-(Methyl-α-<small>D</small>-glucopyranosid-6-yl)-3-vinylimidazolium iodide dimethylformamide monosolvate
IUCrData, 2022, 7, x220265
1566595 CIF
HKL
Paper
C77 H83 Cl4 K Mn N6 O8 SP b c a19.5585; 24.7224; 29.8538
90; 90; 90
14435.3Yuan, Yiwen; Li, Jianfeng
([2.2.2]Cryptand)potassium (4-methylbenzenethiolato)[5,10,15,20-tetrakis(4-chlorophenyl)porphyrinato]manganate(II) tetrahydrofuran disolvate
IUCrData, 2022, 7, x220241
1566596 CIF
HKL
Paper
C17 H15 B F4 N2P 1 21/n 111.426; 9.0735; 15.5434
90; 102.118; 90
1575.54Welton, Claire E.; Nesterov, Vladimir N.; Smucker, Bradley W.
1-(2-Methylphenyl)-4,4'-bipyridin-1-ium tetrafluoridoborate
IUCrData, 2022, 7, x220248
1566597 CIFC28 H24 O6 S2P 21 21 219.2608; 14.3014; 18.9339
90; 90; 90
2507.65Hu, Linfeng; Li, Jinzhao; Zhang, Yongyan; Feng, Xiaoming; Liu, Xiaohua
Enantioselective [1,2]-Stevens Rearrangement of Thiosulfonates to Construct Dithio-Substituted Quaternary Carbon Centers
Chemical Science, 2022
1566598 CIFC33 H43 Cl2 Cr N2 O2P -116.326; 16.389; 16.464
70.953; 89.935; 71.859
3932.2Tian, Jiliang; Zhang, Xingwang; Liu, Shaofeng; Li, Zhibo
Chromium complexes supported by NNO-tridentate ligands: an unprecedented activity with the requirement of a small amount of MAO
Polymer Chemistry, 2022, 13, 1852-1860
1566599 CIFC31 H37 Cl2 Cr F2 N2 O2P 1 21/c 114.4764; 14.5398; 15.5208
90; 109.539; 90
3078.75Tian, Jiliang; Zhang, Xingwang; Liu, Shaofeng; Li, Zhibo
Chromium complexes supported by NNO-tridentate ligands: an unprecedented activity with the requirement of a small amount of MAO
Polymer Chemistry, 2022, 13, 1852-1860
1566600 CIFC36 H48 Ca Gd K O3P 1 21/c 19.2772; 13.9703; 26.2056
90; 90.079; 90
3396.4Zhou, Zheng; McNeely, James; Greenough, Joshua; Wei, Zheng; Han, Haixiang; Rouzières, Mathieu; Rogachev, Andrey Yu.; Clérac, Rodolphe; Petrukhina, Marina A.
Lanthanide-mediated tuning of electronic and magnetic properties in heterotrimetallic cyclooctatetraenyl multidecker self-assemblies
Chemical Science, 2022
1566601 CIFC36 H48 Ca Er K O3P 1 21/c 19.2555; 13.9514; 26.113
90; 90.709; 90
3371.6Zhou, Zheng; McNeely, James; Greenough, Joshua; Wei, Zheng; Han, Haixiang; Rouzières, Mathieu; Rogachev, Andrey Yu.; Clérac, Rodolphe; Petrukhina, Marina A.
Lanthanide-mediated tuning of electronic and magnetic properties in heterotrimetallic cyclooctatetraenyl multidecker self-assemblies
Chemical Science, 2022
1566602 CIFC36 H48 Ca Dy K O3P 1 21/c 19.2628; 13.9533; 26.1417
90; 90.377; 90
3378.7Zhou, Zheng; McNeely, James; Greenough, Joshua; Wei, Zheng; Han, Haixiang; Rouzières, Mathieu; Rogachev, Andrey Yu.; Clérac, Rodolphe; Petrukhina, Marina A.
Lanthanide-mediated tuning of electronic and magnetic properties in heterotrimetallic cyclooctatetraenyl multidecker self-assemblies
Chemical Science, 2022
1566603 CIFC36 H48 Ca Ho K O3P 1 21/c 19.2613; 13.9568; 26.1226
90; 90.566; 90
3376.4Zhou, Zheng; McNeely, James; Greenough, Joshua; Wei, Zheng; Han, Haixiang; Rouzières, Mathieu; Rogachev, Andrey Yu.; Clérac, Rodolphe; Petrukhina, Marina A.
Lanthanide-mediated tuning of electronic and magnetic properties in heterotrimetallic cyclooctatetraenyl multidecker self-assemblies
Chemical Science, 2022
1566604 CIFC36 H48 Ca K O3 TmP 1 21/c 19.2649; 13.9648; 26.111
90; 90.8583; 90
3377.9Zhou, Zheng; McNeely, James; Greenough, Joshua; Wei, Zheng; Han, Haixiang; Rouzières, Mathieu; Rogachev, Andrey Yu.; Clérac, Rodolphe; Petrukhina, Marina A.
Lanthanide-mediated tuning of electronic and magnetic properties in heterotrimetallic cyclooctatetraenyl multidecker self-assemblies
Chemical Science, 2022
1566605 CIFC36 H48 Ca K O3 TbP 1 21/c 19.2738; 13.9561; 26.155
90; 90.302; 90
3385.1Zhou, Zheng; McNeely, James; Greenough, Joshua; Wei, Zheng; Han, Haixiang; Rouzières, Mathieu; Rogachev, Andrey Yu.; Clérac, Rodolphe; Petrukhina, Marina A.
Lanthanide-mediated tuning of electronic and magnetic properties in heterotrimetallic cyclooctatetraenyl multidecker self-assemblies
Chemical Science, 2022
1566606 CIFC36 H48 Ca K O3 YbP 1 21/c 19.2602; 13.9561; 26.1046
90; 90.935; 90
3373.2Zhou, Zheng; McNeely, James; Greenough, Joshua; Wei, Zheng; Han, Haixiang; Rouzières, Mathieu; Rogachev, Andrey Yu.; Clérac, Rodolphe; Petrukhina, Marina A.
Lanthanide-mediated tuning of electronic and magnetic properties in heterotrimetallic cyclooctatetraenyl multidecker self-assemblies
Chemical Science, 2022
1566607 CIFC92 H166 Fe N4 O28 Si16P 21 21 2116.2474; 17.2899; 46.6858
90; 90; 90
13114.8Zong, Zhaohui; Hao, Aiyou; Xing, Pengyao; Zhao, Yanli
Chiral Molecular Nanosilicas
Chemical Science, 2022
1566608 CIFC92 H182 Fe N4 O32 Si16P 1 21 116.9205; 17.5657; 21.7093
90; 90.98; 90
6451.5Zong, Zhaohui; Hao, Aiyou; Xing, Pengyao; Zhao, Yanli
Chiral Molecular Nanosilicas
Chemical Science, 2022
1566609 CIFC76.5 Fe N4 O27.5 S2 Si16I 1 2 137.4731; 17.2234; 42.6209
90; 103.053; 90
26797.4Zong, Zhaohui; Hao, Aiyou; Xing, Pengyao; Zhao, Yanli
Chiral Molecular Nanosilicas
Chemical Science, 2022
1566610 CIFCl Ga6 K3 Mn2 S12P 3 1 c10.9208; 10.9208; 6.1774
90; 90; 120
638.04Liu, Bin-Wen; Pei, Shao-Min; Jiang, Xiao-Ming; Guo, Guo-Cong
Broad transparency and wide band gap achieved in a magnetic infrared nonlinear optical chalcogenide by suppressing d-d transitions.
Materials horizons, 2022, 9, 1513-1517
1566611 CIFC28 H41 F O4P 1 21 110.3779; 7.2974; 33.47
90; 98.797; 90
2504.9Jiang, Liyin; Sarró, Pau; Teo, Wei Jie; Llop, Jordi; Suero, Marcos
Catalytic alkene skeletal modification for the construction of fluorinated tertiary stereocenters
Chemical Science, 2022
1566612 CIFC26 H39 F O4C 1 2 114.7648; 6.0876; 26.974
90; 96.281; 90
2409.9Jiang, Liyin; Sarró, Pau; Teo, Wei Jie; Llop, Jordi; Suero, Marcos
Catalytic alkene skeletal modification for the construction of fluorinated tertiary stereocenters
Chemical Science, 2022
1566613 CIFC227 H209 Ag6 Au19 B2 F8 O17 P6 S17P -120.4536; 20.7898; 33.6586
72.945; 82.104; 63.917
12289Shi, Wan-Qi; Guan, Zong-Jie; Li, Jiao-Jiao; Han, Xu-Shuang; Wang, Quan-Ming
Site-Specified Doping of Silver Atoms into Au25 Nanocluster as Directed by Ligand Binding Preference
Chemical Science, 2022
1566614 CIFC66 H72 N4 Ni Si4P -111.7807; 11.8079; 22.9033
80.502; 78.053; 71.215
2934.25Shimamoto, Kento; Sunada, Yusuke
Metalation-Induced Denitrogenative Reductive Coupling of Isocyanides on a Silylene-Bridged Nickel Cluster
Chemical Science, 2022
1566615 CIFC34 H29 N2 Si2P -110.31; 12.326; 12.941
77.219; 79.312; 79.801
1560Shimamoto, Kento; Sunada, Yusuke
Metalation-Induced Denitrogenative Reductive Coupling of Isocyanides on a Silylene-Bridged Nickel Cluster
Chemical Science, 2022
1566616 CIFC83 H103 N7 Ni5 Si4P -113.9645; 14.7686; 24.4091
89.5959; 79.412; 63.052
4394.3Shimamoto, Kento; Sunada, Yusuke
Metalation-Induced Denitrogenative Reductive Coupling of Isocyanides on a Silylene-Bridged Nickel Cluster
Chemical Science, 2022
1566617 CIFC73 H85 N5 Ni2 Si4P -114.392; 22.272; 22.51
97.75; 95.438; 102.855
6912Shimamoto, Kento; Sunada, Yusuke
Metalation-Induced Denitrogenative Reductive Coupling of Isocyanides on a Silylene-Bridged Nickel Cluster
Chemical Science, 2022
1566618 CIFC35 H48 N PP -110.677; 11.8045; 12.4452
96.831; 101.037; 111.157
1405.1Chen, Zicong; Gu, Changxue; Yuen, On Ying; So, Chau Ming
Palladium-catalyzed chemoselective direct α-arylation of carbonyl compounds with chloroaryl triflates at the C–Cl site
Chemical Science, 2022
1566619 CIFC42 H34 B F3 P2 SeP -19.6724; 12.8821; 14.5407
84.961; 77.687; 74.085
1701.43Kelty, Margaret L.; McNeece, Andrew J.; Kurutz, Josh W.; Filatov, Alexander S.; Anderson, John S.
Electrostatic vs. Inductive Effects in Phosphine Ligand Donor Properties and Reactivity
Chemical Science, 2022
1566620 CIFC43 H39 B F3 O3 P2 RhP -19.1533; 13.0253; 33.273
83.172; 88.634; 79.181
3868.8Kelty, Margaret L.; McNeece, Andrew J.; Kurutz, Josh W.; Filatov, Alexander S.; Anderson, John S.
Electrostatic vs. Inductive Effects in Phosphine Ligand Donor Properties and Reactivity
Chemical Science, 2022
1566621 CIFC36.96 H31.91 B0.95 F2.87 I0.05 P2 Se0.95P n a 2114.5444; 19.8328; 11.0256
90; 90; 90
3180.4Kelty, Margaret L.; McNeece, Andrew J.; Kurutz, Josh W.; Filatov, Alexander S.; Anderson, John S.
Electrostatic vs. Inductive Effects in Phosphine Ligand Donor Properties and Reactivity
Chemical Science, 2022
1566622 CIFC15 H16 B F3 K O0.5 PP -15.6907; 21.5917; 26.847
78.455; 89.976; 89.948
3232Kelty, Margaret L.; McNeece, Andrew J.; Kurutz, Josh W.; Filatov, Alexander S.; Anderson, John S.
Electrostatic vs. Inductive Effects in Phosphine Ligand Donor Properties and Reactivity
Chemical Science, 2022
1566623 CIFC91 H144 O10P -111.9787; 17.3956; 22.0177
110.06; 90.8994; 101.377
4207.6Onishi, Katsuto; Ohtani, Shunsuke; Kato, Kenichi; Fa, Shixin; Sakata, Yoko; Akine, Shigehisa; Ogasawara, Moe; Asakawa, Hitoshi; Nagano, Shusaku; Takashima, Yoshinori; Mizuno, Motohiro; Ogoshi, Tomoki
State- and water repellency-controllable molecular glass of pillar[5]arenes with fluoroalkyl groups by guest vapors
Chemical Science, 2022
1566624 CIFC16 H16 F10 O2P 1 21/a 111.164; 5.0419; 15.9267
90; 91.317; 90
896.2Onishi, Katsuto; Ohtani, Shunsuke; Kato, Kenichi; Fa, Shixin; Sakata, Yoko; Akine, Shigehisa; Ogasawara, Moe; Asakawa, Hitoshi; Nagano, Shusaku; Takashima, Yoshinori; Mizuno, Motohiro; Ogoshi, Tomoki
State- and water repellency-controllable molecular glass of pillar[5]arenes with fluoroalkyl groups by guest vapors
Chemical Science, 2022
1566625 CIFC108 H108 F60 O12C 1 2/c 169.979; 13.9205; 24.2019
90; 96.4154; 90
23428.5Onishi, Katsuto; Ohtani, Shunsuke; Kato, Kenichi; Fa, Shixin; Sakata, Yoko; Akine, Shigehisa; Ogasawara, Moe; Asakawa, Hitoshi; Nagano, Shusaku; Takashima, Yoshinori; Mizuno, Motohiro; Ogoshi, Tomoki
State- and water repellency-controllable molecular glass of pillar[5]arenes with fluoroalkyl groups by guest vapors
Chemical Science, 2022
1566626 CIFC81 H94 F30 O10P 1 21/a 123.6441; 22.5243; 31.147
90; 95.0726; 90
16522.9Onishi, Katsuto; Ohtani, Shunsuke; Kato, Kenichi; Fa, Shixin; Sakata, Yoko; Akine, Shigehisa; Ogasawara, Moe; Asakawa, Hitoshi; Nagano, Shusaku; Takashima, Yoshinori; Mizuno, Motohiro; Ogoshi, Tomoki
State- and water repellency-controllable molecular glass of pillar[5]arenes with fluoroalkyl groups by guest vapors
Chemical Science, 2022
1566627 CIFC91 H94 F50 O10P -120.9282; 22.7403; 24.2682
98.976; 98.951; 114.017
10108.6Onishi, Katsuto; Ohtani, Shunsuke; Kato, Kenichi; Fa, Shixin; Sakata, Yoko; Akine, Shigehisa; Ogasawara, Moe; Asakawa, Hitoshi; Nagano, Shusaku; Takashima, Yoshinori; Mizuno, Motohiro; Ogoshi, Tomoki
State- and water repellency-controllable molecular glass of pillar[5]arenes with fluoroalkyl groups by guest vapors
Chemical Science, 2022
1566628 CIFC90.65 H93.56 F50 O10P 1 21/n 122.9793; 21.8597; 40.474
90; 102.22; 90
19870Onishi, Katsuto; Ohtani, Shunsuke; Kato, Kenichi; Fa, Shixin; Sakata, Yoko; Akine, Shigehisa; Ogasawara, Moe; Asakawa, Hitoshi; Nagano, Shusaku; Takashima, Yoshinori; Mizuno, Motohiro; Ogoshi, Tomoki
State- and water repellency-controllable molecular glass of pillar[5]arenes with fluoroalkyl groups by guest vapors
Chemical Science, 2022
1566629 CIFC18 H26 Cd N4 O6 P2 S4P -17.2387; 9.6411; 10.4545
81.448; 75.399; 70.165
662.56Tan, Yee Seng; Yeo, Chien Ing; Kwong, Huey Chong; Tiekink, Edward R. T.
Unusual {⋯HNC <sub>2</sub> O⋯HC <sub> <i>n</i> </sub> O}, <i>n</i> = 1 or 2, synthons predominate in the molecular packing of one-dimensional coordination polymers, {Cd[S <sub>2</sub> P(OR) <sub>2</sub> ] <sub>2</sub> ( <sup>3</sup> LH <sub>2</sub> )} <sub> <i>n</i> </sub> , for R = Me and Et, but are precluded when R = i-Pr; <sup>3</sup> LH <sub>2</sub> = <i>N</i> , <i>N</i> ′-bis(3-pyridylmethyl)oxalamide
CrystEngComm, 2022, 24, 2992-3004
1566630 CIFC26 H42 Cd N4 O6 P2 S4P -19.9154; 12.3655; 15.4749
106.08; 99.172; 91.827
1794.03Tan, Yee Seng; Yeo, Chien Ing; Kwong, Huey Chong; Tiekink, Edward R. T.
Unusual {⋯HNC <sub>2</sub> O⋯HC <sub> <i>n</i> </sub> O}, <i>n</i> = 1 or 2, synthons predominate in the molecular packing of one-dimensional coordination polymers, {Cd[S <sub>2</sub> P(OR) <sub>2</sub> ] <sub>2</sub> ( <sup>3</sup> LH <sub>2</sub> )} <sub> <i>n</i> </sub> , for R = Me and Et, but are precluded when R = i-Pr; <sup>3</sup> LH <sub>2</sub> = <i>N</i> , <i>N</i> ′-bis(3-pyridylmethyl)oxalamide
CrystEngComm, 2022, 24, 2992-3004
1566631 CIFC22 H34 Cd N4 O6 P2 S4P -19.0611; 9.2065; 10.5703
82.436; 77.672; 64.113
774.27Tan, Yee Seng; Yeo, Chien Ing; Kwong, Huey Chong; Tiekink, Edward R. T.
Unusual {⋯HNC <sub>2</sub> O⋯HC <sub> <i>n</i> </sub> O}, <i>n</i> = 1 or 2, synthons predominate in the molecular packing of one-dimensional coordination polymers, {Cd[S <sub>2</sub> P(OR) <sub>2</sub> ] <sub>2</sub> ( <sup>3</sup> LH <sub>2</sub> )} <sub> <i>n</i> </sub> , for R = Me and Et, but are precluded when R = i-Pr; <sup>3</sup> LH <sub>2</sub> = <i>N</i> , <i>N</i> ′-bis(3-pyridylmethyl)oxalamide
CrystEngComm, 2022, 24, 2992-3004
1566632 CIFC78 H78 N6 O3P -114.2538; 17.1903; 17.3592
79.038; 72.546; 68.828
3767.7Fang, Lingyi; Zhang, Yuyan; Ren, Ming; Xie, Xinrui; Li, Tianyu; Yuan, Yi; Zhang, Jing; Wang, Peng
A triple helicene based molecular semiconductor characteristic of a fully fused conjugated backbone for perovskite solar cells
Energy & Environmental Science, 2022, 15, 1630-1637
1566633 CIFC15 H15 N3 O SP 1 21/n 16.6492; 13.731; 15.329
90; 101.032; 90
1373.7Kshtriya, Vivekshinh; Koshti, Bharti; Mehmood, Tahir; Singh, Ramesh; Joshi, Khashti Ballabh; Bandyopadhyay, Sujoy; Boukhvalov, Danil W.; Reddy, J. Prakasha; Gour, Nidhi
A new aggregation induced emission enhancement (AIEE) dye which self-assembles to panchromatic fluorescent flowers and has application in sensing dichromate ions.
Soft matter, 2022, 18, 3019-3030
1566663 CIFC36 H37 K N3 O3 P2 Ru SP c a 2112.6529; 18.7504; 15.5836
90; 90; 90
3697.2Tossaint, Alex S.; Rebreyend, Christophe; Sinha, Vivek; Weber, Manuela; Canossa, Stefano; Pidko, Evgeny A.; Filonenko, Georgy A.
Two step activation of Ru-PN3P pincer catalysts for CO2 hydrogenation
Catalysis Science & Technology, 2022, 12, 2972-2977
1566664 CIFC100 H83 N6 O3 P6 Ru2P 1 21/c 114.8971; 22.753; 28.6172
90; 100.332; 90
9542.6Tossaint, Alex S.; Rebreyend, Christophe; Sinha, Vivek; Weber, Manuela; Canossa, Stefano; Pidko, Evgeny A.; Filonenko, Georgy A.
Two step activation of Ru-PN3P pincer catalysts for CO2 hydrogenation
Catalysis Science & Technology, 2022, 12, 2972-2977
1566665 CIFC51 H48 Cl N4 O2 P3 RuP b c n25.849; 19.5041; 21.0152
90; 90; 90
10595Tossaint, Alex S.; Rebreyend, Christophe; Sinha, Vivek; Weber, Manuela; Canossa, Stefano; Pidko, Evgeny A.; Filonenko, Georgy A.
Two step activation of Ru-PN3P pincer catalysts for CO2 hydrogenation
Catalysis Science & Technology, 2022, 12, 2972-2977
1566666 CIFC23 H27 B O3P n a 2112.912; 10.1397; 15.597
90; 90; 90
2042Wei, Yu-Bai; Luo, Dong; Xiong, Xiao; Huang, Yong-Liang; Xie, Mo; Lu, Weigang; Li, Dan
Biomimetic Mimicry of Formaldehyde-Induced DNA–Protein Crosslinks in the Confined Space of Metal–Organic Framework
Chemical Science, 2022
1566667 CIFC23 H27 B O3P 1 21/n 112.4943; 9.9586; 16.762
90; 95.6616; 90
2075.5Wei, Yu-Bai; Luo, Dong; Xiong, Xiao; Huang, Yong-Liang; Xie, Mo; Lu, Weigang; Li, Dan
Biomimetic Mimicry of Formaldehyde-Induced DNA–Protein Crosslinks in the Confined Space of Metal–Organic Framework
Chemical Science, 2022
1566668 CIFC16 H29 N O6 SP 21 21 215.46991; 10.15896; 34.3303
90; 90; 90
1907.69Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566669 CIFC18 H22 O2 SP n a 219.3374; 6.0661; 28.5106
90; 90; 90
1614.89Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566670 CIFC15 H20 Cl N O3 SP -15.0188; 9.6241; 16.1198
89.487; 85.132; 82.136
768.5Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566671 CIFC10 H18 O4 S2P 1 21/n 16.4691; 11.4368; 8.7387
90; 102.114; 90
632.143Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566672 CIFC11 H14 O3 SP -15.72076; 8.13039; 11.8424
91.8184; 91.4466; 103.412
535.219Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566673 CIFC10 H11 F O3 SP 1 c 15.7165; 12.1828; 14.7356
90; 91.722; 90
1025.77Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566674 CIFC15 H27 N O6 SP 1 21/c 111.1742; 16.6182; 10.3665
90; 116.394; 90
1724.34Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566675 CIFC10 H18 O4 S2P 1 21/c 16.09765; 8.92648; 22.0926
90; 91.4743; 90
1202.11Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566676 CIFC15 H17 N O2 SP 1 21/c 19.0612; 15.82137; 10.2622
90; 114.837; 90
1335.12Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566677 CIFC25 H30 O8 SP 1 21 110.04584; 19.87397; 12.32816
90; 95.9688; 90
2447.98Nguyen, Vu T.; Haug, Graham C.; Nguyen, Viet D.; Vuong, Ngan T. H.; Karki, Guna B.; Arman, Hadi; Larionov, Oleg V.
Functional Group Divergence and the Structural Basis of Acridine Photocatalysis Revealed by Direct Decarboxysulfonylation
Chemical Science, 2022
1566678 CIFC23 H27 B O3P n a 2112.912; 10.1397; 15.597
90; 90; 90
2042wu, Fu-Peng; Wu, Xiao-Feng
Catalyst-Controlled Selective Borocarbonylation of Benzylidenecyclopropanes: Regiodivergent Synthesis of γ-Vinylboryl Ketones and β-Cyclopropylboryl Ketones
Chemical Science, 2022
1566679 CIFC23 H27 B O3P 1 21/n 112.4943; 9.9586; 16.762
90; 95.6616; 90
2075.5wu, Fu-Peng; Wu, Xiao-Feng
Catalyst-Controlled Selective Borocarbonylation of Benzylidenecyclopropanes: Regiodivergent Synthesis of γ-Vinylboryl Ketones and β-Cyclopropylboryl Ketones
Chemical Science, 2022
1566680 CIFC50.5 H47 Co O3 P2P 1 21/n 19.9652; 18.349; 23.3602
90; 96.462; 90
4244.3Martínez-Carrión, Alicia; Romero-Navarro, Andrés; Núñez-Rico, José Luis; Gutiérrez, Albert; Grabulosa, Arnald; Vidal-Ferran, Anton
Valorisation of mixtures of linear alkenes using cobalt-mediated isomerisation and hydroformylation chemistries
Catalysis Science & Technology, 2022, 12, 3219-3227
1566681 CIFC45 H32 Co2 O7 P2P -110.8578; 11.6947; 17.4282
106.744; 95.84; 112.496
1900.9Martínez-Carrión, Alicia; Romero-Navarro, Andrés; Núñez-Rico, José Luis; Gutiérrez, Albert; Grabulosa, Arnald; Vidal-Ferran, Anton
Valorisation of mixtures of linear alkenes using cobalt-mediated isomerisation and hydroformylation chemistries
Catalysis Science & Technology, 2022, 12, 3219-3227
1566682 CIFC16 H19 N O6 SP 21 21 218.0346; 12.621; 16.5455
90; 90; 90
1677.79Li, Gonglin; Zhang, Yan; Zeng, Hongkun; Feng, Xiaoming; Su, Zhishan; Lin, Lili
Water Enables Diastereodivergency in Bispidine-Based Chiral Amine-Catalyzed Asymmetric Mannich Reaction of Cyclic N-Sulfonyl Ketimines with Ketones
Chemical Science, 2022
1566683 CIFC16 H19 N O6 SP 1 21 110.1269; 8.043; 10.8756
90; 114.408; 90
806.66Li, Gonglin; Zhang, Yan; Zeng, Hongkun; Feng, Xiaoming; Su, Zhishan; Lin, Lili
Water Enables Diastereodivergency in Bispidine-Based Chiral Amine-Catalyzed Asymmetric Mannich Reaction of Cyclic N-Sulfonyl Ketimines with Ketones
Chemical Science, 2022
1566684 CIFC17 H26 F6 N3 O7 S2P 1 21 111.0402; 9.5966; 12.5085
90; 115.079; 90
1200.32Li, Gonglin; Zhang, Yan; Zeng, Hongkun; Feng, Xiaoming; Su, Zhishan; Lin, Lili
Water Enables Diastereodivergency in Bispidine-Based Chiral Amine-Catalyzed Asymmetric Mannich Reaction of Cyclic N-Sulfonyl Ketimines with Ketones
Chemical Science, 2022
1566685 CIFC16 H20 N2 O6 SP 21 21 218.1051; 14.1921; 15.2659
90; 90; 90
1756.01Li, Gonglin; Zhang, Yan; Zeng, Hongkun; Feng, Xiaoming; Su, Zhishan; Lin, Lili
Water Enables Diastereodivergency in Bispidine-Based Chiral Amine-Catalyzed Asymmetric Mannich Reaction of Cyclic N-Sulfonyl Ketimines with Ketones
Chemical Science, 2022
1566686 CIFC160 H218 N8 O49 S8P 1 21 113.5261; 12.674; 25.4683
90; 99.78; 90
4302.6Li, Gonglin; Zhang, Yan; Zeng, Hongkun; Feng, Xiaoming; Su, Zhishan; Lin, Lili
Water Enables Diastereodivergency in Bispidine-Based Chiral Amine-Catalyzed Asymmetric Mannich Reaction of Cyclic N-Sulfonyl Ketimines with Ketones
Chemical Science, 2022
1566687 CIFC1220 H968 B11.95 Cu24 F47.82 N52 O104P 1 21/n 118.838; 32.458; 64.439
90; 94.55; 90
39277Domoto, Yuya; Yamamoto, Kidai; Horie, Shumpei; Yu, Zhengsu; Fujita, Makoto
Multiplication of weak chiral inductions for excellent control over the helical orientation of discrete topologically chiral (M3L2)n polyhedra
Chemical Science, 2022
1566688 CIFC29.4 H40.8 Cl8.8 N2 P2 PdP 1 21/n 115.262; 12.8154; 20.9917
90; 108.535; 90
3892.8Kucmierczyk, Peter; Behrens, Stephan; Kubis, Christoph; Baumann, Wolfgang; Wei, Zhihong; Jiao, Haijun; Dong, Kaiwu; Spannenberg, Anke; Neumann, Helfried; Jackstell, Ralf; Börner, Armin; Franke, Robert; Beller, Matthias
(In situ) spectroscopic studies on state-of-the-art Pd(ii) catalysts in solution for the alkoxycarbonylation of alkenes
Catalysis Science & Technology, 2022, 12, 3175-3189
1566689 CIFC26 H40 B2 N2 P2P -19.1591; 11.3142; 15.1394
103.273; 102.525; 105.201
1408Kucmierczyk, Peter; Behrens, Stephan; Kubis, Christoph; Baumann, Wolfgang; Wei, Zhihong; Jiao, Haijun; Dong, Kaiwu; Spannenberg, Anke; Neumann, Helfried; Jackstell, Ralf; Börner, Armin; Franke, Robert; Beller, Matthias
(In situ) spectroscopic studies on state-of-the-art Pd(ii) catalysts in solution for the alkoxycarbonylation of alkenes
Catalysis Science & Technology, 2022, 12, 3175-3189
1566690 CIFC28 H34 F6 N2 O6 P2 Pd S2P -111.2734; 12.1729; 13.5903
73.9005; 72.8892; 73.6404
1671.4Kucmierczyk, Peter; Behrens, Stephan; Kubis, Christoph; Baumann, Wolfgang; Wei, Zhihong; Jiao, Haijun; Dong, Kaiwu; Spannenberg, Anke; Neumann, Helfried; Jackstell, Ralf; Börner, Armin; Franke, Robert; Beller, Matthias
(In situ) spectroscopic studies on state-of-the-art Pd(ii) catalysts in solution for the alkoxycarbonylation of alkenes
Catalysis Science & Technology, 2022, 12, 3175-3189
1566691 CIFC17 H21 B F2 N4 OP 21 21 218.9883; 11.1112; 17.485
90; 90; 90
1746.2Zeng, Lintao; Chen, Tianhong; Zhu, Beitong; Koo, Seyoung; Tang, Yonghe; Lin, Weiying; James, Tony D.; Kim, Jong Seung
A molecular recognition platform for the simultaneous sensing of diverse chemical weapons
Chemical Science, 2022
1566692 CIFC15 H19 B F2 N4P 4110.5675; 10.5675; 13.404
90; 90; 90
1496.9Zeng, Lintao; Chen, Tianhong; Zhu, Beitong; Koo, Seyoung; Tang, Yonghe; Lin, Weiying; James, Tony D.; Kim, Jong Seung
A molecular recognition platform for the simultaneous sensing of diverse chemical weapons
Chemical Science, 2022
1566693 CIFC16 H17 B F2 N4 OP -16.9141; 9.2485; 12.7582
93.651; 101.649; 97.353
789.08Zeng, Lintao; Chen, Tianhong; Zhu, Beitong; Koo, Seyoung; Tang, Yonghe; Lin, Weiying; James, Tony D.; Kim, Jong Seung
A molecular recognition platform for the simultaneous sensing of diverse chemical weapons
Chemical Science, 2022
1566694 CIFC83 H135 As7 K La2 O6 Si8P -115.7346; 18.2731; 19.7473
106.435; 102.572; 100.222
5139Reinfandt, Niklas; Hauser, Adrian; Münzfeld, Luca; Roesky, Peter W.
From a nanoparticular solid-state material to molecular organo-f-element-polyarsenides
Chemical Science, 2022
1566695 CIFC96 H164 As14 Ce2 K2 O12 Si8P -111.223; 16.579; 18.693
72.888; 89.816; 73.008
3166Reinfandt, Niklas; Hauser, Adrian; Münzfeld, Luca; Roesky, Peter W.
From a nanoparticular solid-state material to molecular organo-f-element-polyarsenides
Chemical Science, 2022
1566696 CIFC80 H132 As7 K Nd2 O6 Si8P -115.6899; 18.4469; 20.1223
111.299; 104.839; 100.119
5006.3Reinfandt, Niklas; Hauser, Adrian; Münzfeld, Luca; Roesky, Peter W.
From a nanoparticular solid-state material to molecular organo-f-element-polyarsenides
Chemical Science, 2022
1566697 CIFC77 H129 As3 K Nd2 O6 Si8P -111.7764; 17.4676; 26.292
84.855; 79.39; 71.581
5040.7Reinfandt, Niklas; Hauser, Adrian; Münzfeld, Luca; Roesky, Peter W.
From a nanoparticular solid-state material to molecular organo-f-element-polyarsenides
Chemical Science, 2022
1566698 CIFC58 H102 As7 K2 Nd O12 Si4P 1 21/n 114.2709; 31.995; 17.4941
90; 98.678; 90
7896.3Reinfandt, Niklas; Hauser, Adrian; Münzfeld, Luca; Roesky, Peter W.
From a nanoparticular solid-state material to molecular organo-f-element-polyarsenides
Chemical Science, 2022
1566699 CIFC77 H132 As7 Ce2 K O6 Si8P 1 21/n 120.0117; 18.0444; 27.5019
90; 96.273; 90
9871.5Reinfandt, Niklas; Hauser, Adrian; Münzfeld, Luca; Roesky, Peter W.
From a nanoparticular solid-state material to molecular organo-f-element-polyarsenides
Chemical Science, 2022
1566700 CIFC74 H138 As14 K2 Nd2 O12 Si8C 1 2/c 141.591; 13.2497; 19.5306
90; 95.516; 90
10712.9Reinfandt, Niklas; Hauser, Adrian; Münzfeld, Luca; Roesky, Peter W.
From a nanoparticular solid-state material to molecular organo-f-element-polyarsenides
Chemical Science, 2022
1566701 CIFC43 H40 Au N O6P 21 21 219.9306; 13.2468; 27.4297
90; 90; 90
3608.3Guo, Jia; Xiong, Wen-Bin; Ma, Hao-Ran; Fan, Luoyi; Zhou, You-Yun; Wong, Henry N. C.; Cui, Jian-Fang
Optical Resolution of 1,16-Dihydroxytetraphenylene by Chiral Gold(III) Complexation and Its Applications as Chiral Ligands in Asymmetric Catalysis
Chemical Science, 2022
1566702 CIFC38 H24 N O2 PP 21 21 2111.8935; 12.6595; 18.8734
90; 90; 90
2841.7Guo, Jia; Xiong, Wen-Bin; Ma, Hao-Ran; Fan, Luoyi; Zhou, You-Yun; Wong, Henry N. C.; Cui, Jian-Fang
Optical Resolution of 1,16-Dihydroxytetraphenylene by Chiral Gold(III) Complexation and Its Applications as Chiral Ligands in Asymmetric Catalysis
Chemical Science, 2022
1566703 CIFC41.17 H29.17 Au Cl3.5 N O3P 21 21 2112.999; 13.954; 22.15
90; 90; 90
4018Guo, Jia; Xiong, Wen-Bin; Ma, Hao-Ran; Fan, Luoyi; Zhou, You-Yun; Wong, Henry N. C.; Cui, Jian-Fang
Optical Resolution of 1,16-Dihydroxytetraphenylene by Chiral Gold(III) Complexation and Its Applications as Chiral Ligands in Asymmetric Catalysis
Chemical Science, 2022
1566704 CIFC42 H32 Au Cl4 N O3P 21 21 2112.578; 13.7123; 21.0398
90; 90; 90
3628.8Guo, Jia; Xiong, Wen-Bin; Ma, Hao-Ran; Fan, Luoyi; Zhou, You-Yun; Wong, Henry N. C.; Cui, Jian-Fang
Optical Resolution of 1,16-Dihydroxytetraphenylene by Chiral Gold(III) Complexation and Its Applications as Chiral Ligands in Asymmetric Catalysis
Chemical Science, 2022
1566705 CIFC42 H36 Au N O5P 21 21 219.9266; 13.1669; 27.3976
90; 90; 90
3580.9Guo, Jia; Xiong, Wen-Bin; Ma, Hao-Ran; Fan, Luoyi; Zhou, You-Yun; Wong, Henry N. C.; Cui, Jian-Fang
Optical Resolution of 1,16-Dihydroxytetraphenylene by Chiral Gold(III) Complexation and Its Applications as Chiral Ligands in Asymmetric Catalysis
Chemical Science, 2022
1566706 CIFH66 Mo60 Na8 O187I 41/a c d :223.5571; 23.5571; 61.035
90; 90; 90
33870.6Li, xuexin; Ji, Tuo; Gao, Jun-Yang; Chen, Wei-Chao; Yuan, Ye; Sha, Haoyan; Faller, Roland; Shan, Guo-Gang; Shao, Kui-Zhan; Wang, Xinlong; Su, Zhong-Min
An Unprecedented Fully Reduced {MoV60} Polyoxometalate: From All-Inorganic Molecular Light-Absorber Model to Improved Photoelectronic Performance
Chemical Science, 2022
1566707 CIFC54.5 H53 B Cl P2 SP -18.8424; 11.4067; 24.8662
81.957; 80.897; 69.046
2303.2Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566708 CIFC29.25 H31.5 B Cl0.5 F4 P2 Pt SP b a m20.9374; 10.9959; 14.9555
90; 90; 90
3443.14Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566709 CIFC28 H28 Cl O P2 Rh SP 21 21 2110.4581; 14.2792; 17.4031
90; 90; 90
2598.86Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566710 CIFC54 H53 B Cl P2 Rh SP 1 21/n 110.9915; 34.1432; 12.5533
90; 99.76; 90
4642.9Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566711 CIFC45.5 H36 Cl F7 P3 Rh SP -19.1404; 12.3384; 19.4965
102.063; 92.077; 103.656
2080.95Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566712 CIFC43 H32 F4 O3 P2 S2P 1 21/n 112.4956; 28.031; 12.6611
90; 119.324; 90
3866.48Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566713 CIFC56 H59 B P2 Pt SP 1 21/c 116.6775; 15.3273; 19.3126
90; 102.496; 90
4819.76Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566714 CIFC47 H35 F13 N2 O8 P2 Pt S5P 1 21/c 123.6369; 12.7303; 18.9449
90; 98.297; 90
5640.95Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566715 CIFC32 H39 B2 F8 N O2 P2 Pt SP -110.727; 13.1882; 15.143
65.687; 75.111; 75.546
1861.41Li, Ruiping; Barel, Nitsan; Subramaniyan, Vasudevan; Cohen, Orit; Tibika, Françoise; Tulchinsky, Yuri
Sulfonium cations as versatile strongly π-acidic ligands
Chemical Science, 2022
1566718 CIF
HKL
Paper
C21 H18 N2 OC 1 2/c 130.3989; 8.7177; 14.0581
90; 115.367; 90
3366.3Meenatchi, C. Selva; Athimoolam, S.; Suresh, J.; Priya, R. Vishnu; Rubina, S. Raja; Bhandari, S. R.
(<i>E</i>)-5-(4-Methylbenzylidene)-1-phenyl-4,5,6,7-tetrahydro-1<i>H</i>-indazol-4-one
IUCrData, 2022, 7, x220283
1566719 CIFC20 H56 Bi2 Br10 N4P -112.4378; 13.2166; 14.021
97.835; 93.139; 90.289
2279.7Su, Chang-Yuan; Yao, Yefeng; Zhang, Zhixu; Wang, Ying; Chen, Ming; Huang, Pei-Zhi; Zhang, Yi; Qiao, Wencheng; Fu, Da-Wei
The construction of a two-dimensional organic-inorganic hybrid double perovskite ferroelastic with high Tc and narrow band gap
Chemical Science, 2022
1566720 CIFC20 H56 Ag Bi Br8 N4P -18.4797; 8.7683; 13.9411
73.253; 88.908; 87.415
991.56Su, Chang-Yuan; Yao, Yefeng; Zhang, Zhixu; Wang, Ying; Chen, Ming; Huang, Pei-Zhi; Zhang, Yi; Qiao, Wencheng; Fu, Da-Wei
The construction of a two-dimensional organic-inorganic hybrid double perovskite ferroelastic with high Tc and narrow band gap
Chemical Science, 2022
1566721 CIFC20 Ag Bi Br8 N8C m m m8.774; 27.47; 8.771
90; 90; 90
2114Su, Chang-Yuan; Yao, Yefeng; Zhang, Zhixu; Wang, Ying; Chen, Ming; Huang, Pei-Zhi; Zhang, Yi; Qiao, Wencheng; Fu, Da-Wei
The construction of a two-dimensional organic-inorganic hybrid double perovskite ferroelastic with high Tc and narrow band gap
Chemical Science, 2022
1566722 CIFC25 H69 Br9 N5 Pb2P -111.996; 13.422; 17.477
72.658; 70.158; 77.179
2503.7Su, Chang-Yuan; Yao, Yefeng; Zhang, Zhixu; Wang, Ying; Chen, Ming; Huang, Pei-Zhi; Zhang, Yi; Qiao, Wencheng; Fu, Da-Wei
The construction of a two-dimensional organic-inorganic hybrid double perovskite ferroelastic with high Tc and narrow band gap
Chemical Science, 2022
1566723 CIFC25 H70 Br9 N5 Pb2P -111.975; 13.366; 17.472
72.618; 70.213; 77.258
2488.9Su, Chang-Yuan; Yao, Yefeng; Zhang, Zhixu; Wang, Ying; Chen, Ming; Huang, Pei-Zhi; Zhang, Yi; Qiao, Wencheng; Fu, Da-Wei
The construction of a two-dimensional organic-inorganic hybrid double perovskite ferroelastic with high Tc and narrow band gap
Chemical Science, 2022
1566724 CIFC23 H23 Cl N2 O2P 1 21 19.6064; 7.9331; 13.748
90; 101.106; 90
1028.09Xiao, Lu; Li, Bo; Xiao, Fan; Fu, Cong; Wei, Liang; Dang, Yanfeng; Dong, Xiu-Qin; Wang, Chun-Jiang
Stereodivergent Synthesis of Enantioenriched Azepino[3,4,5-cd]-Indoles via Cooperative Cu/Ir-Catalyzed Asymmetric Allylic Alkylation and Intramolecular Friedel-Crafts Reaction
Chemical Science, 2022
1566725 CIFC46 H46 Cl2 N4 O4P 21 21 219.2992; 18.0846; 24.744
90; 90; 90
4161.26Xiao, Lu; Li, Bo; Xiao, Fan; Fu, Cong; Wei, Liang; Dang, Yanfeng; Dong, Xiu-Qin; Wang, Chun-Jiang
Stereodivergent Synthesis of Enantioenriched Azepino[3,4,5-cd]-Indoles via Cooperative Cu/Ir-Catalyzed Asymmetric Allylic Alkylation and Intramolecular Friedel-Crafts Reaction
Chemical Science, 2022
1566726 CIFC23 H23 Cl N2 O2P 21 21 219.11893; 17.37833; 50.2087
90; 90; 90
7956.66Xiao, Lu; Li, Bo; Xiao, Fan; Fu, Cong; Wei, Liang; Dang, Yanfeng; Dong, Xiu-Qin; Wang, Chun-Jiang
Stereodivergent Synthesis of Enantioenriched Azepino[3,4,5-cd]-Indoles via Cooperative Cu/Ir-Catalyzed Asymmetric Allylic Alkylation and Intramolecular Friedel-Crafts Reaction
Chemical Science, 2022
1566727 CIFC23 H30 N4 O2P 1 21/c 116.0767; 12.9097; 10.9767
90; 99.712; 90
2245.51Zhan, Yi-Zhou; Meng, Huan; Shu, Wei
Rapid Access to t-Butylalkylated Olefins Enabled by Ni-Catalyzed Intermolecular Regio- and trans-Selective Cross-Electrophile t-Butylalkylation of Alkynes
Chemical Science, 2022
1566728 CIF
HKL
Paper
C15 H14 Cl N5 O2P 1 21 17.1533; 11.936; 9.004
90; 98.128; 90
761.1Song, Jingjing; Jiang, Xinyu; Wang, Ziyi; Pei, Jingyao; Li, Hongsen
4-Chloro-5-(dimethylamino)-2-[(5-phenyl-1,3,4-oxadiazol-2-yl)methyl]pyridazin-3(2<i>H</i>)-one
IUCrData, 2022, 7, x220342
1566729 CIF
HKL
Paper
C16 H9 N O2 SP 1 21/c 14.60717; 20.7275; 12.6444
90; 91.911; 90
1206.81Abdallah, Amira E. M.; Elgemeie, Galal H.; Jones, Peter G.
3-(Benzo[<i>d</i>]thiazol-2-yl)-2<i>H</i>-chromen-2-one
IUCrData, 2022, 7, x220332
1566730 CIFC61 H45 Cl3P -113.1323; 14.2033; 14.7079
94.606; 111.041; 97.973
2510.43Bergman, Harrison; Beattie, D. Dawson; Kiel, Gavin R.; Handford, Rex; Liu, Yi; Tilley, T. Don
A sequential cyclization/π-extension strategy for modular construction of nanographenes enabled by stannole cycloadditions
Chemical Science, 2022
1566731 CIFC22 H9 Br N4 SP -17.5508; 8.0138; 8.139
85.38; 77.75; 75.07
464.86Liu, Kun; Li, Shuai; Fu, Liyuan; Lei, Yilong; Liao, Qing; Fu, Hongbing
Cocrystallization Tailoring Radiative Decay Pathways for Thermally Activated Delayed Fluorescence and Room Temperature Phosphorescence Emission
Nanoscale, 2022
1566732 CIFC22 H9 Br N4 SP 1 21/c 17.4921; 8.1212; 30.277
90; 92.33; 90
1840.7Liu, Kun; Li, Shuai; Fu, Liyuan; Lei, Yilong; Liao, Qing; Fu, Hongbing
Cocrystallization Tailoring Radiative Decay Pathways for Thermally Activated Delayed Fluorescence and Room Temperature Phosphorescence Emission
Nanoscale, 2022
1566733 CIFC32 H28 N2 O5 SP -17.2319; 11.7336; 16.6396
102.141; 94.257; 104.092
1327.08Dong, Jingyue; Gao, Wei; Li, Kun; Hong, Zeyu; Tang, Liangfu; Han, Lijun; Wang, Zhihong; Fan, Zhijin
Design, Synthesis, and Biological Evaluation of Novel Psoralen-Based 1,3,4-Oxadiazoles as Potent Fungicide Candidates Targeting Pyruvate Kinase.
Journal of agricultural and food chemistry, 2022, 70, 3435-3446
1566734 CIFC29 H22 N2 O4 SP b c a9.6146; 15.9025; 29.7245
90; 90; 90
4544.8Dong, Jingyue; Gao, Wei; Li, Kun; Hong, Zeyu; Tang, Liangfu; Han, Lijun; Wang, Zhihong; Fan, Zhijin
Design, Synthesis, and Biological Evaluation of Novel Psoralen-Based 1,3,4-Oxadiazoles as Potent Fungicide Candidates Targeting Pyruvate Kinase.
Journal of agricultural and food chemistry, 2022, 70, 3435-3446
1566735 CIFC22 H22 Cl F3 N4 OC 1 2/c 119.4942; 8.0752; 27.7657
90; 102.868; 90
4261.09Sun, Susu; Chen, Lai; Huo, Jingqian; Wang, Ying; Kou, Song; Yuan, Shitao; Fu, Yining; Zhang, Jinlin
Discovery of Novel Pyrazole Amides as Potent Fungicide Candidates and Evaluation of Their Mode of Action.
Journal of agricultural and food chemistry, 2022, 70, 3447-3457
1566736 CIFC15 H14 O3P 21 21 215.5437; 8.4551; 52.42
90; 90; 90
2457.06Müller, Christoph; Gleixner, Jakob; Tahk, Maris-Johanna; Kopanchuk, Sergei; Laasfeld, Tõnis; Weinhart, Michael; Schollmeyer, Dieter; Betschart, Martin U.; Lüdeke, Steffen; Koch, Pierre; Rinken, Ago; Keller, Max
Structure-Based Design of High-Affinity Fluorescent Probes for the Neuropeptide Y Y<sub>1</sub> Receptor.
Journal of medicinal chemistry, 2022, 65, 4832-4853
1566737 CIFC108.96 H78.42 Cl1.5 N5 O12P -110.4997; 15.5071; 35.5889
83.392; 82.236; 71.57
5430.8Loong, Hao; Zhou, Jiadong; Jiang, Nianqiang; Feng, Yi; Xie, Guojing; Liu, Linlin; Xie, Zengqi
Photoinduced Cascading Charge Transfer in Perylene Bisimide-Based Triads.
The journal of physical chemistry. B, 2022, 126, 2441-2448
1566738 CIFC46 H31 N3 O2P 1 21/c 112.1514; 26.995; 10.64
90; 99.479; 90
3442.6Dey, Suvendu; Hasan, Monirul; Shukla, Atul; Acharya, Nirmalya; Upadhyay, Manoj; Lo, Shih-Chun; Namdas, Ebinazar B.; Ray, Debdas
Thermally Activated Delayed Fluorescence and Room-Temperature Phosphorescence in Asymmetric Phenoxazine-Quinoline (D2–A) Conjugates and Dual Electroluminescence
The Journal of Physical Chemistry C, 2022, 126, 5649-5657
1566739 CIFC17 H15 N O2P 21 21 216.562; 14.232; 14.4563
90; 90; 90
1350.1Kim, Alexia N.; Ngamnithiporn, Aurapat; Bartberger, Michael D.; Stoltz, Brian M.
Iridium-catalyzed asymmetric trans-selective hydrogenation of 1,3-disubstituted isoquinolines
Chemical Science, 2022, 13, 3227-3232
1566740 CIFC20 H10 B11 Cl11 F6C 1 2 121.8423; 11.6968; 19.7476
90; 98.58; 90
4988.8Gunther, S. Olivia; Lee, Chun-I; Song, Ellen; Bhuvanesh, Nattamai; Ozerov, Oleg V.
Isolable Fluorinated Triphenymethyl Cation Salts of [HCB11Cl11]-: Demonstration of Remarkable Hydride Affinity
Chemical Science, 2022
1566741 CIFC24.5 H17 B11 Cl12.5 F2P -112.5709; 13.3424; 23.0855
83.592; 88.189; 73.431
3688.1Gunther, S. Olivia; Lee, Chun-I; Song, Ellen; Bhuvanesh, Nattamai; Ozerov, Oleg V.
Isolable Fluorinated Triphenymethyl Cation Salts of [HCB11Cl11]-: Demonstration of Remarkable Hydride Affinity
Chemical Science, 2022
1566742 CIFC184 H128 O8P -110.9971; 21.3867; 28.861
76.152; 85.884; 86.204
6565.14Kodama, Takuya; Saito, Kanako; Tobisu, Mamoru
Nickel-Catalyzed Skeletal Transformation of Tropone Derivatives via C–C Bond Activation: Catalyst-Controlled Access to Diverse Ring Systems
Chemical Science, 2022
1566743 CIFC45 H34 O2P -110.26982; 12.9; 13.4161
101.787; 98.9295; 108.913
1598.21Kodama, Takuya; Saito, Kanako; Tobisu, Mamoru
Nickel-Catalyzed Skeletal Transformation of Tropone Derivatives via C–C Bond Activation: Catalyst-Controlled Access to Diverse Ring Systems
Chemical Science, 2022
1566744 CIFC41 H26 OP -110.4122; 11.1627; 14.3485
103.578; 103.147; 112.391
1402.62Kodama, Takuya; Saito, Kanako; Tobisu, Mamoru
Nickel-Catalyzed Skeletal Transformation of Tropone Derivatives via C–C Bond Activation: Catalyst-Controlled Access to Diverse Ring Systems
Chemical Science, 2022
1566745 CIFC77 H89 Ni O3 P2P -110.9952; 14.137; 21.6909
104.76; 97.213; 100.584
3151.76Kodama, Takuya; Saito, Kanako; Tobisu, Mamoru
Nickel-Catalyzed Skeletal Transformation of Tropone Derivatives via C–C Bond Activation: Catalyst-Controlled Access to Diverse Ring Systems
Chemical Science, 2022
1566746 CIFC138 H152 Ni2 O2 P4P 1 21/c 133.7405; 13.5307; 24.6084
90; 105.039; 90
10849.8Kodama, Takuya; Saito, Kanako; Tobisu, Mamoru
Nickel-Catalyzed Skeletal Transformation of Tropone Derivatives via C–C Bond Activation: Catalyst-Controlled Access to Diverse Ring Systems
Chemical Science, 2022
1566747 CIFC43 H30 OP 1 21/n 113.0907; 10.1466; 22.1188
90; 94.055; 90
2930.6Kodama, Takuya; Saito, Kanako; Tobisu, Mamoru
Nickel-Catalyzed Skeletal Transformation of Tropone Derivatives via C–C Bond Activation: Catalyst-Controlled Access to Diverse Ring Systems
Chemical Science, 2022
1566748 CIFC59 H64 N4 Ni2 O6P 1 21/c 119.0889; 15.9034; 18.9504
90; 106.854; 90
5505.8Kodama, Takuya; Saito, Kanako; Tobisu, Mamoru
Nickel-Catalyzed Skeletal Transformation of Tropone Derivatives via C–C Bond Activation: Catalyst-Controlled Access to Diverse Ring Systems
Chemical Science, 2022
1566749 CIFC12 H4 F6 N2P 1 21/n 14.487; 9.3652; 13.1716
90; 97.27; 90
549.04Peng, Hang; Qi, Jun-Chao; Song, Xian-Jiang; Xiong, Ren-Gen; Liao, Wei-Qiang
An Unprecedented Azobenzene-Based Organic Single-Component Ferroelectric
Chemical Science, 2022
1566750 CIFC12 H6 F5 N3P 1 21 13.76719; 6.2632; 24.1516
90; 92.008; 90
569.5Peng, Hang; Qi, Jun-Chao; Song, Xian-Jiang; Xiong, Ren-Gen; Liao, Wei-Qiang
An Unprecedented Azobenzene-Based Organic Single-Component Ferroelectric
Chemical Science, 2022
1566751 CIFC123 H116 F21 N12 O21 Rh4 S7P 1 21/c 124.6083; 12.7106; 23.5913
90; 114.206; 90
6730.2Dang, Li-Long; Li, Ting-Ting; Zhang, Ting-Ting; Zhao, Ying; Chen, Tian; Gao, Xiang; Ma, Lufang; Jin, Guo-Xin
Highly selective synthesis and near-infrared photothermal conversion of metalla-Borromean ring and [2]catenane assemblies
Chemical Science, 2022
1566752 CIFC211.76 H184 F35.28 Ir8 N8 O51.28 S11.76P 1 21/c 121.3182; 15.4343; 19.1459
90; 99.14; 90
6219.6Dang, Li-Long; Li, Ting-Ting; Zhang, Ting-Ting; Zhao, Ying; Chen, Tian; Gao, Xiang; Ma, Lufang; Jin, Guo-Xin
Highly selective synthesis and near-infrared photothermal conversion of metalla-Borromean ring and [2]catenane assemblies
Chemical Science, 2022
1566753 CIFC113.5 H132 F12 N4 O24.5 Rh4 S4P 1 21 115.5383; 19.2201; 41.5739
90; 94.273; 90
12381.4Dang, Li-Long; Li, Ting-Ting; Zhang, Ting-Ting; Zhao, Ying; Chen, Tian; Gao, Xiang; Ma, Lufang; Jin, Guo-Xin
Highly selective synthesis and near-infrared photothermal conversion of metalla-Borromean ring and [2]catenane assemblies
Chemical Science, 2022
1566754 CIFC268 H233 F60 N8 O76 Rh8 S20P n a 2129.3957; 27.2297; 40.625
90; 90; 90
32518Dang, Li-Long; Li, Ting-Ting; Zhang, Ting-Ting; Zhao, Ying; Chen, Tian; Gao, Xiang; Ma, Lufang; Jin, Guo-Xin
Highly selective synthesis and near-infrared photothermal conversion of metalla-Borromean ring and [2]catenane assemblies
Chemical Science, 2022
1566755 CIFC366 H318 F54 N24 O94 Rh14 S18P 1 21/c 120.474; 34.09; 38.801
90; 105.086; 90
26148Dang, Li-Long; Li, Ting-Ting; Zhang, Ting-Ting; Zhao, Ying; Chen, Tian; Gao, Xiang; Ma, Lufang; Jin, Guo-Xin
Highly selective synthesis and near-infrared photothermal conversion of metalla-Borromean ring and [2]catenane assemblies
Chemical Science, 2022
1566756 CIFC366 H300 F54 N12 O78 Rh12 S18P 1 21/n 123.67; 36.843; 25.731
90; 112.251; 90
20768Dang, Li-Long; Li, Ting-Ting; Zhang, Ting-Ting; Zhao, Ying; Chen, Tian; Gao, Xiang; Ma, Lufang; Jin, Guo-Xin
Highly selective synthesis and near-infrared photothermal conversion of metalla-Borromean ring and [2]catenane assemblies
Chemical Science, 2022
1566757 CIF
HKL
Al0.067 Fe0.067 Mg1.94 O6 Si1.93P b c a5.1815; 18.2321; 8.8085
90; 90; 90
832.14Glazyrin, K.; Khandarkhaeva, S.; Fedotenko, T.; Dong, W.; Laniel, D.; Seiboth, F.; Schropp, A.; Garrevoet, J.; Brückner, D.; Falkenberg, G.; Kubec, A.; David, C.; Wendt, M.; Wenz, S.; Dubrovinsky, L.; Dubrovinskaia, N.; Liermann, H.-P.
Sub-micrometer focusing setup for high-pressure crystallography at the Extreme Conditions beamline at PETRAIII
Journal of Synchrotron Radiation, 2022, 29, 654-663
1566758 CIFFe0.091 Mg0.909 O3 SiP b n m4.194; 4.525; 6.191
90; 90; 90
117.49Glazyrin, K.; Khandarkhaeva, S.; Fedotenko, T.; Dong, W.; Laniel, D.; Seiboth, F.; Schropp, A.; Garrevoet, J.; Brückner, D.; Falkenberg, G.; Kubec, A.; David, C.; Wendt, M.; Wenz, S.; Dubrovinsky, L.; Dubrovinskaia, N.; Liermann, H.-P.
Sub-micrometer focusing setup for high-pressure crystallography at the Extreme Conditions beamline at PETRAIII
Journal of Synchrotron Radiation, 2022, 29, 654-663
1566759 CIFCo Sb3I m -39.036; 9.036; 9.036
90; 90; 90
737.783Glazyrin, K.; Khandarkhaeva, S.; Fedotenko, T.; Dong, W.; Laniel, D.; Seiboth, F.; Schropp, A.; Garrevoet, J.; Brückner, D.; Falkenberg, G.; Kubec, A.; David, C.; Wendt, M.; Wenz, S.; Dubrovinsky, L.; Dubrovinskaia, N.; Liermann, H.-P.
Sub-micrometer focusing setup for high-pressure crystallography at the Extreme Conditions beamline at PETRAIII
Journal of Synchrotron Radiation, 2022, 29, 654-663
1566760 CIFC151 H250 Al4 K4 N8 O4 S4 Si8P 1 21/c 125.01159; 19.41543; 33.7313
90; 100.884; 90
16085.6Evans, Matthew J.; Anker, Mathew D.; McMullin, Claire L.; Neale, Samuel E.; Rajabi, Nasir A.; Coles, Martyn P.
Carbon–chalcogen bond formation initiated by [Al(NONDipp)(E)]− anions containing Al–E{16} (E{16} = S, Se) multiple bonds
Chemical Science, 2022
1566761 CIFC82 H140 Al2 K2 N4 O12 Se2 Si4P 1 21/n 115.4374; 13.47603; 22.5971
90; 93.2318; 90
4693.51Evans, Matthew J.; Anker, Mathew D.; McMullin, Claire L.; Neale, Samuel E.; Rajabi, Nasir A.; Coles, Martyn P.
Carbon–chalcogen bond formation initiated by [Al(NONDipp)(E)]− anions containing Al–E{16} (E{16} = S, Se) multiple bonds
Chemical Science, 2022
1566762 CIFC49 H66 Al K N2 O3 S Si2P 1 21/n 114.78551; 13.04163; 25.96015
90; 104.132; 90
4854.33Evans, Matthew J.; Anker, Mathew D.; McMullin, Claire L.; Neale, Samuel E.; Rajabi, Nasir A.; Coles, Martyn P.
Carbon–chalcogen bond formation initiated by [Al(NONDipp)(E)]− anions containing Al–E{16} (E{16} = S, Se) multiple bonds
Chemical Science, 2022
1566763 CIFC53 H80 Al K N2 O5 Se Si2P 1 21/n 19.75833; 31.8983; 17.54162
90; 92.6949; 90
5454.21Evans, Matthew J.; Anker, Mathew D.; McMullin, Claire L.; Neale, Samuel E.; Rajabi, Nasir A.; Coles, Martyn P.
Carbon–chalcogen bond formation initiated by [Al(NONDipp)(E)]− anions containing Al–E{16} (E{16} = S, Se) multiple bonds
Chemical Science, 2022
1566764 CIFC50 H90 Al K N4 O8 S Si2P -110.0626; 17.1004; 17.2361
88.851; 83.037; 84.293
2929.33Evans, Matthew J.; Anker, Mathew D.; McMullin, Claire L.; Neale, Samuel E.; Rajabi, Nasir A.; Coles, Martyn P.
Carbon–chalcogen bond formation initiated by [Al(NONDipp)(E)]− anions containing Al–E{16} (E{16} = S, Se) multiple bonds
Chemical Science, 2022
1566765 CIFC45 H66 Al K N2 O3 S Si2P 1 21/c 115.45971; 12.3875; 24.7548
90; 90.4615; 90
4740.57Evans, Matthew J.; Anker, Mathew D.; McMullin, Claire L.; Neale, Samuel E.; Rajabi, Nasir A.; Coles, Martyn P.
Carbon–chalcogen bond formation initiated by [Al(NONDipp)(E)]− anions containing Al–E{16} (E{16} = S, Se) multiple bonds
Chemical Science, 2022
1566766 CIFC74 H132 Al2 K2 N4 O10 S2 Si4P 1 21 112.27766; 24.87997; 14.9006
90; 94.3187; 90
4538.73Evans, Matthew J.; Anker, Mathew D.; McMullin, Claire L.; Neale, Samuel E.; Rajabi, Nasir A.; Coles, Martyn P.
Carbon–chalcogen bond formation initiated by [Al(NONDipp)(E)]− anions containing Al–E{16} (E{16} = S, Se) multiple bonds
Chemical Science, 2022
1566767 CIFC49 H66 Al K N2 O3 Se Si2P 1 21/n 114.84213; 13.02613; 26.0062
90; 103.725; 90
4884.35Evans, Matthew J.; Anker, Mathew D.; McMullin, Claire L.; Neale, Samuel E.; Rajabi, Nasir A.; Coles, Martyn P.
Carbon–chalcogen bond formation initiated by [Al(NONDipp)(E)]− anions containing Al–E{16} (E{16} = S, Se) multiple bonds
Chemical Science, 2022
1566768 CIF
HKL
Paper
C36 H48 N4 O14P -16.0921; 8.5778; 18.726
94.922; 90.428; 98.945
962.88Naeem, Marilyn; Chadeayne, Andrew R.; Golen, James A.; Manke, David R.
Bis(oxotremorine) fumarate bis(fumaric acid)
IUCrData, 2022, 7
1566769 CIFC48 H28 Bi N4 O9P 21 21 2117.3; 17.4; 18.975
90; 90; 90
5711.9Xie, Dale; Wang, Sheng; Li, Shihao; Yang, Wenqing; Feng, Yi-Si
A two-dimensional Bi-based porphyrin metal–organic framework photocatalyst for white light-driven selective oxidation of sulfides
Catalysis Science & Technology, 2022, 12, 3254-3260
1566770 CIFC54 H78 Cl2 N10 O4C 1 2 120.799; 14.2717; 20.0159
90; 114.881; 90
5390Li, Hongfei; Kou, Lei; Liang, Lin; Li, Boyang; Zhao, Wei; Yang, Xiao-Juan; Wu, Biao
Anion-coordination-driven single-double helix switching and chiroptical molecular switch based on oligoureas
Chemical Science, 2022
1566771 CIFC198 H239 N40 O31 P2P 113.8456; 13.8504; 26.594
98.63; 90.112; 101.91
4930.7Li, Hongfei; Kou, Lei; Liang, Lin; Li, Boyang; Zhao, Wei; Yang, Xiao-Juan; Wu, Biao
Anion-coordination-driven single-double helix switching and chiroptical molecular switch based on oligoureas
Chemical Science, 2022
1566772 CIFC67 H96 N15 O13 PP 1 21 113.007; 20.8259; 13.9625
90; 106.566; 90
3625.2Li, Hongfei; Kou, Lei; Liang, Lin; Li, Boyang; Zhao, Wei; Yang, Xiao-Juan; Wu, Biao
Anion-coordination-driven single-double helix switching and chiroptical molecular switch based on oligoureas
Chemical Science, 2022
1566773 CIFC77 H44 Cl2 N12 O5P 1 21 111.9428; 25.5121; 12.5127
90; 92.975; 90
3807.3Li, Hongfei; Kou, Lei; Liang, Lin; Li, Boyang; Zhao, Wei; Yang, Xiao-Juan; Wu, Biao
Anion-coordination-driven single-double helix switching and chiroptical molecular switch based on oligoureas
Chemical Science, 2022
1566774 CIFC29 H18 NP -18.4867; 12.972; 18.128
105.478; 90.206; 96.312
1910.5Wei, Xiao; Xu, Chao; Li, Hao; Kang, Xi; Zhu, Manzhou
Fabrication of a Family of Atomically Precise Silver Nanoclusters via Dual-Level Kinetical Control
Chemical Science, 2022
1566775 CIFC30 H38 B2 N2 O4P 1 21/n 115.0763; 9.9694; 19.4363
90; 103.775; 90
2837.29Li, Manhong; Liu, Siqi; Bao, Haoshi; Li, Qini; Deng, Yi-Hui; Sun, Tian-Yu; Wang, Leifeng
Photoinduced metal-free borylation of aryl halides catalysed by an in situ formed donor–acceptor complex
Chemical Science, 2022
1566776 CIFC56 H71.75 Li5 Ni2 O5P 1 21/c 116.24036; 14.66026; 22.76116
90; 101.713; 90
5306.3Somerville, Rosie J.; Campos, Jesús; Carmona, Ernesto; Grabowsky, Simon; Malaspina, Lorraine A.; Balcells, David; Hevia, Eva; Nova, Ainara; Pérez-Jiménez, Marina; Borys, Andryj M.
Unmasking the constitution and bonding of the proposed lithium nickelate “Li3NiPh3(solv)3”: Revealing the hidden C6H4 ligand
Chemical Science, 2022
1566777 CIFC128 H224 Br4 Li12 Ni4 O16P 1 21/c 118.677; 19.8681; 39.575
90; 91.001; 90
14683.1Somerville, Rosie J.; Campos, Jesús; Carmona, Ernesto; Grabowsky, Simon; Malaspina, Lorraine A.; Balcells, David; Hevia, Eva; Nova, Ainara; Pérez-Jiménez, Marina; Borys, Andryj M.
Unmasking the constitution and bonding of the proposed lithium nickelate “Li3NiPh3(solv)3”: Revealing the hidden C6H4 ligand
Chemical Science, 2022
1566778 CIFC58 H73 Li6 Ni2 O4P -113.176; 14.1453; 15.9321
101.573; 103.502; 101.439
2733.3Somerville, Rosie J.; Campos, Jesús; Carmona, Ernesto; Grabowsky, Simon; Malaspina, Lorraine A.; Balcells, David; Hevia, Eva; Nova, Ainara; Pérez-Jiménez, Marina; Borys, Andryj M.
Unmasking the constitution and bonding of the proposed lithium nickelate “Li3NiPh3(solv)3”: Revealing the hidden C6H4 ligand
Chemical Science, 2022
1566779 CIFC88 H124 Li12 N4 Ni4 O12P 1 21/c 119.0297; 12.2915; 21.1653
90; 110.588; 90
4634.5Somerville, Rosie J.; Campos, Jesús; Carmona, Ernesto; Grabowsky, Simon; Malaspina, Lorraine A.; Balcells, David; Hevia, Eva; Nova, Ainara; Pérez-Jiménez, Marina; Borys, Andryj M.
Unmasking the constitution and bonding of the proposed lithium nickelate “Li3NiPh3(solv)3”: Revealing the hidden C6H4 ligand
Chemical Science, 2022
1566780 CIFC64 H92 Na4 Ni2 O6P -111.6655; 12.7905; 22.787
104.121; 90.47; 109.712
3088.75Somerville, Rosie J.; Campos, Jesús; Carmona, Ernesto; Grabowsky, Simon; Malaspina, Lorraine A.; Balcells, David; Hevia, Eva; Nova, Ainara; Pérez-Jiménez, Marina; Borys, Andryj M.
Unmasking the constitution and bonding of the proposed lithium nickelate “Li3NiPh3(solv)3”: Revealing the hidden C6H4 ligand
Chemical Science, 2022
1566781 CIFC80 H126 Na6 Ni2 O6C 1 2/c 121.45144; 17.82545; 22.25202
90; 109.731; 90
8009.22Somerville, Rosie J.; Campos, Jesús; Carmona, Ernesto; Grabowsky, Simon; Malaspina, Lorraine A.; Balcells, David; Hevia, Eva; Nova, Ainara; Pérez-Jiménez, Marina; Borys, Andryj M.
Unmasking the constitution and bonding of the proposed lithium nickelate “Li3NiPh3(solv)3”: Revealing the hidden C6H4 ligand
Chemical Science, 2022
1566782 CIFC188.19 H213.43 N59.05 Ni6 O59.05R -3 :H45.98; 45.98; 9.5196
90; 90; 120
17429.6Cui, Mengxing; Murase, Ryuichi; Shen, Yongbing; Sato, Tetsu; Koyama, Shohei; Uchida, Kaiji; Tanabe, Tappei; Takaishi, Shinya; Yamashita, Masahiro; Iguchi, Hiroaki
An electrically conductive metallocycle: densely packed molecular hexagons with π-stacked radicals
Chemical Science, 2022
1566783 CIFC26 H35 N5 O2P 1 21/c 110.3083; 24.752; 10.4153
90; 108.265; 90
2523.58Liu, Hong-Chao; Kong, Xiangtao; Gong, Xiao-Ping; Li, Yuke; Niu, Zhi-Jie; Gou, Xue-Ya; Li, Xue-Song; Wang, Yu-Zhao; Shi, Wei-Yu; Huang, Yan-Chong; Liu, Xue-Yuan; Liang, Yong-Min
Site-Selective Coupling of Remote C(sp3)−H/meta-C(sp2)−H Bonds Enabled by Ru/Photoredox Dual Catalysis and Mechanistic Studies
Chemical Science, 2022
1566784 CIFC20 H26 Br N3 OP 1 21/c 16.36816; 31.0073; 10.01092
90; 97.3165; 90
1960.66Liu, Hong-Chao; Kong, Xiangtao; Gong, Xiao-Ping; Li, Yuke; Niu, Zhi-Jie; Gou, Xue-Ya; Li, Xue-Song; Wang, Yu-Zhao; Shi, Wei-Yu; Huang, Yan-Chong; Liu, Xue-Yuan; Liang, Yong-Min
Site-Selective Coupling of Remote C(sp3)−H/meta-C(sp2)−H Bonds Enabled by Ru/Photoredox Dual Catalysis and Mechanistic Studies
Chemical Science, 2022
1566785 CIFC22 H30 N2 O2P 1 21/c 119.4831; 10.88; 9.8987
90; 99.028; 90
2072.29Liu, Hong-Chao; Kong, Xiangtao; Gong, Xiao-Ping; Li, Yuke; Niu, Zhi-Jie; Gou, Xue-Ya; Li, Xue-Song; Wang, Yu-Zhao; Shi, Wei-Yu; Huang, Yan-Chong; Liu, Xue-Yuan; Liang, Yong-Min
Site-Selective Coupling of Remote C(sp3)−H/meta-C(sp2)−H Bonds Enabled by Ru/Photoredox Dual Catalysis and Mechanistic Studies
Chemical Science, 2022
1566786 CIFO S6 Sn2 Sr2 ZnP -4 21 m9.664; 9.664; 6.33
90; 90; 90
591.177Cheng, Yansong; Wu, Hongping; Yu, Hongwei; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng
Rational Design of a Promising Oxychalcogenide Infrared Nonlinear Optical Crystal
Chemical Science, 2022
1566787 CIFC82 H82 Si2C 1 2/c 139.1632; 5.9464; 27.7746
90; 96.8606; 90
6421.8Ringström, Rasmus; Edhborg, Fredrik; Schroeder, Zachary W.; Chen, Lan; Ferguson, Michael J.; Tykwinski, Rik R.; Albinsson, Bo
Molecular rotational conformation controls the rate of singlet fission and triplet decay in pentacene dimers
Chemical Science, 2022
1566788 CIFC106 H126 Cl4 Si4P 1 21/c 18.3982; 34.669; 16.6828
90; 90.028; 90
4857.3Ringström, Rasmus; Edhborg, Fredrik; Schroeder, Zachary W.; Chen, Lan; Ferguson, Michael J.; Tykwinski, Rik R.; Albinsson, Bo
Molecular rotational conformation controls the rate of singlet fission and triplet decay in pentacene dimers
Chemical Science, 2022
1566789 CIFC106.65 H135.3 Cl1.3 Si4P 1 21/c 18.0655; 14.6582; 41.104
90; 91.616; 90
4857.6Ringström, Rasmus; Edhborg, Fredrik; Schroeder, Zachary W.; Chen, Lan; Ferguson, Michael J.; Tykwinski, Rik R.; Albinsson, Bo
Molecular rotational conformation controls the rate of singlet fission and triplet decay in pentacene dimers
Chemical Science, 2022
1566790 CIF
HKL
Paper
C26 H13 F8 I4 N3P -19.1574; 12.0339; 14.0667
91.989; 96.924; 102.996
1496.35Bosch, Eric; Bowling, Nathan P.
5-{[4-(Dimethylamino)phenyl]ethynyl}pyrimidine–1,2,3,5-tetrafluoro-4,6-diiodobenzene (1/2)
IUCrData, 2022, 7, x220380
1566791 CIFC38 H63 In N2 O3P -111.4082; 13.035; 14.939
66.497; 68.941; 83.213
1900.3Bruckmoser, Jonas; Henschel, Daniel; Vagin, Sergei; Rieger, Bernhard
Combining high activity with broad monomer scope: indium salan catalysts in the ring-opening polymerization of various cyclic esters
Catalysis Science & Technology, 2022, 12, 3295-3302
1566792 CIFC20 H17 N SP 18.3698; 8.6024; 11.6963
103.438; 103.111; 102.977
762.79Yan, Qiaolin; Duan, Meng; Chen, Cien; Deng, Zhiqin; Wu, Mandi; Yu, Peiyuan; He, Ming-Liang; Zhu, Guangyu; Houk, Kendall N.; Sun, Jianwei
Organocatalytic Discrimination of Non-Directing Aryl and Heteroaryl Groups: Enantioselective Synthesis of Bioactive Indole-Containing Triarylmethanes
Chemical Science, 2022
1566793 CIFC20 H17 N SP 18.4366; 8.5299; 11.8199
103.482; 103.756; 102.858
767.86Yan, Qiaolin; Duan, Meng; Chen, Cien; Deng, Zhiqin; Wu, Mandi; Yu, Peiyuan; He, Ming-Liang; Zhu, Guangyu; Houk, Kendall N.; Sun, Jianwei
Organocatalytic Discrimination of Non-Directing Aryl and Heteroaryl Groups: Enantioselective Synthesis of Bioactive Indole-Containing Triarylmethanes
Chemical Science, 2022
1566794 CIFC14 H12 F6 OP 21 21 215.8199; 11.7062; 18.082
90; 90; 90
1231.9Sathe, Devavrat; Zhou, Junfeng; Chen, Hanlin; Schrage, Briana R.; Yoon, Seiyoung; Wang, Zeyu; Ziegler, Christopher J.; Wang, Junpeng
Depolymerizable semi-fluorinated polymers for sustainable functional materials
Polymer Chemistry, 2022, 13, 2608-2614
1566795 CIFC155 H119 Er2 N16 O21 PrP -116.3636; 19.5224; 23.3873
108.669; 108.321; 92.112
6640.37Aromi, Guillem; Maniaki, Diamantoula; Garay-Ruiz, Diego; Barrios, Leoní A.; Aguilà, David; Reta, Daniel; Roubeau, Olivier; Bo, Carles; Tuna, Floriana; Martins, Daniel O. T. A.
Unparalleled selectivity and electronic structure of heterometallic [LnLn’Ln] molecules as 3-qubit quantum gates
Chemical Science, 2022
1566796 CIFC463 H730 N26 O239 P8 V52P -126.268; 27.835; 30.643
87.768; 71.483; 69.654
19855Guo, Ji; Liu, Junrui; Cui, Yingcui; Liu, Chuanhong; Wang, Yangming; Wang, Mou; Huang, Danmeng; Chen, Guanying; Wang, Wei; Xia, Debin; Fang, Xikui
Timing matters: pre-assembly versus post-assembly functionalization of a polyoxovanadate–organic cuboid
Chemical Science, 2022
1566797 CIFC423 H697 N33 O273 S8 V54P -120.5891; 28.609; 33.168
113.872; 92.142; 103.627
17168Guo, Ji; Liu, Junrui; Cui, Yingcui; Liu, Chuanhong; Wang, Yangming; Wang, Mou; Huang, Danmeng; Chen, Guanying; Wang, Wei; Xia, Debin; Fang, Xikui
Timing matters: pre-assembly versus post-assembly functionalization of a polyoxovanadate–organic cuboid
Chemical Science, 2022
1566798 CIFC462 H719 N29 O236 P8 S0 V48C 1 2/c 145.21; 27.4006; 55.215
90; 113.919; 90
62525Guo, Ji; Liu, Junrui; Cui, Yingcui; Liu, Chuanhong; Wang, Yangming; Wang, Mou; Huang, Danmeng; Chen, Guanying; Wang, Wei; Xia, Debin; Fang, Xikui
Timing matters: pre-assembly versus post-assembly functionalization of a polyoxovanadate–organic cuboid
Chemical Science, 2022
1566799 CIFC61 H75 N4 Y2P -110.5717; 11.0365; 12.4271
67.8112; 87.4492; 79.2874
1318.6Benner, Florian; Demir, Selvan
Isolation of the elusive bisbenzimidazole Bbim3−˙ radical anion and its employment in a metal complex
Chemical Science, 2022
1566800 CIFC84 H128 K N6 O9 Y2P -113.03; 18.0681; 18.371
86.907; 78.05; 76.349
4111.72Benner, Florian; Demir, Selvan
Isolation of the elusive bisbenzimidazole Bbim3−˙ radical anion and its employment in a metal complex
Chemical Science, 2022
1566801 CIFC21 H19 N3P 1 21/c 115.2933; 5.6759; 18.003
90; 99.217; 90
1542.5Begam, Hasina Mamataj; Nandi, Shantanu; Jana, Ranjan
Directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
Chemical Science, 2022
1566802 CIFC16 H12 N2 SP 1 21/c 16.1282; 14.1422; 14.4603
90; 95.255; 90
1247.95Begam, Hasina Mamataj; Nandi, Shantanu; Jana, Ranjan
Directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
Chemical Science, 2022
1566803 CIFC2.44 H2.44 N0.44 O0.11P -17.9957; 10.4307; 12.5078
67.727; 89.073; 71.4
908.36Begam, Hasina Mamataj; Nandi, Shantanu; Jana, Ranjan
Directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
Chemical Science, 2022
1566804 CIFC17 H13 N3P 1 21/n 110.9333; 7.34; 16.2518
90; 98.655; 90
1289.36Begam, Hasina Mamataj; Nandi, Shantanu; Jana, Ranjan
Directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
Chemical Science, 2022
1566805 CIFC23 H17 N3P 1 21/n 111.8246; 8.7668; 16.2183
90; 90.457; 90
1681.2Begam, Hasina Mamataj; Nandi, Shantanu; Jana, Ranjan
Directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
Chemical Science, 2022
1566806 CIFC19 H19 N O6P 21 21 218.7619; 9.0395; 21.2088
90; 90; 90
1679.8Zhang, Fangqing; Ren, Bing-Tao; Zhou, Yuqiao; Liu, Yangbin; Feng, Xiaoming
Enantioselective Construction of cis-Hydroindole Scaffolds via Asymmetric Inverse-Electron-Demand Diels–Alder Reaction: Application to the Formal Total Synthesis of (+)-Minovincine
Chemical Science, 2022
1566807 CIFC10 H9 B N2P 1 21/c 18.8712; 11.4894; 9.7181
90; 114.973; 90
897.91Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566808 CIFC21 H15 B N4P -19.6002; 9.8523; 10.4405
112.05; 100.947; 100.116
864.9Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566809 CIFC22 H17 B Cl2 N4P -17.6707; 8.6999; 15.3408
95.995; 100.572; 91.45
999.84Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566810 CIFC22 H17 B N4 OP -19.6949; 9.9989; 10.3454
74.22; 68.3124; 89.2819
892.41Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566811 CIFC15 H11 B N4P c a 2115.4138; 5.2751; 15.4456
90; 90; 90
1255.87Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566812 CIFC22 H17 B N4P 1 21/n 17.1974; 14.8004; 16.7357
90; 100.303; 90
1754.01Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566813 CIFC23 H19 B N4 O2P 1 21/n 111.0625; 11.3405; 15.4611
90; 94.428; 90
1933.87Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566814 CIFC24 H14 B F6 N3 O4P 1 21/c 111.8628; 19.2303; 11.1122
90; 114.593; 90
2305.02Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566815 CIFC20 H14 B Cl3 N4 SP -19.5849; 9.6966; 12.5042
102.614; 92.073; 115.981
1007.91Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566816 CIFC20 H16 B N3P 1 21/c 16.7975; 8.0452; 29.5872
90; 95.797; 90
1609.77Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566817 CIFC22 H14 B F3 N4P -18.8691; 9.7159; 11.5592
87.751; 85.002; 66.221
908.04Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566818 CIFC34 H30 B2 N8 O2P b c a15.0807; 9.7071; 19.4956
90; 90; 90
2853.96Tang, Qi; Shi, Xiaodong; Richardson, David; Wojtas, Lukasz; Shan, Chuan; He, Ying; Lan, Yu; Yuan, Teng; Ye, Xiaohan; Li, Shi-Jun; Zhao, Kai
Design and Synthesis of Stable Four-Coordinated Benzotriazole-Borane with Tunable Fluorescence Emission
Chemical Science, 2022
1566819 CIFC30 H25 F6 N S SbC 1 2/c 115.8665; 24.95; 16.2233
90; 99.104; 90
6341.4Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566820 CIFC48 H45 N SP 1 21/n 116.8923; 13.2924; 17.9856
90; 113.172; 90
3712.68Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566821 CIFC31 H27 Cl2 N SP 1 21/n 111.1803; 7.7394; 30.7513
90; 99.961; 90
2620.76Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566822 CIFC52 H47 N SR -3 :H36.5917; 36.5917; 17.7385
90; 90; 120
20569Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566823 CIFC74 H69 N SP -17.169; 17.2492; 25.1684
106.66; 90.552; 96.116
2962.06Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566824 CIFC22 H20 O2 S2P 17.0221; 7.9102; 9.5017
106.659; 105.234; 101.17
466.74Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566825 CIFC26 H23 N SP c c n23.8497; 21.8615; 7.9142
90; 90; 90
4126.4Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566826 CIFC18 H16 O2 SP b c n19.5758; 8.4512; 18.7056
90; 90; 90
3094.64Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566827 CIFC18 H10 F6 O6 S3P -18.4229; 10.6178; 12.2594
100.265; 102.985; 94.205
1043.88Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566828 CIFC13 H11.5 F3 N0.5 S0.5 Sb0.5C 1 2/m 127.184; 6.8384; 19.415
90; 133.036; 90
2638Zhou, Jun; Mao, Lijun; Wu, Meng-Xiang; Peng, Zhiyong; Yang, Yiming; Zhou, Manfei; Zhao, Xiao-Li; Shi, Xueliang; Yang, Hai-Bo
Extended phenothiazines: synthesis, photophysical and redox properties, and efficient photocatalytic oxidative coupling of amines
Chemical Science, 2022
1566829 CIFC18 H20 B10P -17.1379; 19.799; 27.542
110.801; 90.566; 90.757
3637.9Ji, Lei; Riese, Stefan; Schmiedel, Alexander; Holzapfel, Marco; Fest, Maximillian; Nitsch, Jörn; Curchod, Basile F. E.; Friedrich, Alexandra; Wu, Lin; Al Mamari, Hamad H.; Hammer, Sebastian; Pflaum, Jens; Fox, Mark A.; Tozer, David J.; Finze, Maik; Lambert, Christoph; Marder, Todd B.
Thermodynamic equilibrium between locally excited and charge-transfer states through thermally activated charge transfer in 1-(pyren-2′-yl)-o-carborane
Chemical Science, 2022
1566830 CIFC24 H37 F6 N2 O P RuP -19.637; 9.944; 27.528
95.325; 97.691; 96.476
2582Sumitani, Ryo; Yamanaka, Masamichi; Mochida, Tomoyuki
On-demand gelation of ionic liquids using photoresponsive organometallic gelators.
Soft matter, 2022, 18, 3479-3486
1566831 CIFC36 H24 N3 P S4P 1 21 19.351; 14.475; 12.042
90; 111.149; 90
1520.2Jena, Satyam; Jusaina, Jusaina; Behera, Santosh Kumar; Kitahara, Maho; Imai, Yoshitane; Thilagar, P.
Crystallization Induced Room-Temperature Phosphorescence and Chiral Photoluminescence Properties of Phosphoramides
Chemical Science, 2022
1566832 CIFC36 H24 N3 O P S3C 1 2/c 127.1703; 14.9942; 17.8873
90; 111.203; 90
6793.9Jena, Satyam; Jusaina, Jusaina; Behera, Santosh Kumar; Kitahara, Maho; Imai, Yoshitane; Thilagar, P.
Crystallization Induced Room-Temperature Phosphorescence and Chiral Photoluminescence Properties of Phosphoramides
Chemical Science, 2022
1566833 CIFC36 H24 N3 P0.5 S4 SeP 1 21 19.3508; 14.3508; 11.9256
90; 111.396; 90
1490.02Jena, Satyam; Jusaina, Jusaina; Behera, Santosh Kumar; Kitahara, Maho; Imai, Yoshitane; Thilagar, P.
Crystallization Induced Room-Temperature Phosphorescence and Chiral Photoluminescence Properties of Phosphoramides
Chemical Science, 2022
1566834 CIFC9 H11 N O3P 1 21 17.6764; 5.887; 9.6143
90; 94.575; 90
433.1Smalley, Christopher J. H.; Hoskyns, Harriet E.; Hughes, Colan E.; Johnstone, Duncan N.; Willhammar, Tom; Young, Mark T.; Pickard, Christopher J.; Logsdail, Andrew J.; Midgley, Paul A.; Harris, Kenneth D. M.
A structure determination protocol based on combined analysis of 3D-ED data, powder XRD data, solid-state NMR data and DFT-D calculations reveals the structure of a new polymorph of l-tyrosine
Chemical Science, 2022
1566835 CIFC18 H15 N3P 1 21/c 113.5606; 14.1429; 7.6056
90; 93.62; 90
1455.7Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566836 CIFC23 H19 N3P -17.4368; 11.5205; 11.7843
107.748; 101.471; 103.216
895.98Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566837 CIFC22 H17 N3P -17.5636; 10.607; 11.488
104.037; 99.019; 104.02
844.45Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566838 CIFC24 H21 N3P 1 21/c 110.9544; 15.459; 12.2647
90; 113.683; 90
1902Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566839 CIFC27 H19 N3P 1 21/n 17.4603; 14.026; 19.2722
90; 98.736; 90
1993.2Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566840 CIFC35 H23 N3P 1 21/c 19.7978; 27.007; 10.7502
90; 116.236; 90
2551.6Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566841 CIFC38 H25 Cl2 N3P 1 21/c 111.6662; 23.9537; 12.582
90; 115.611; 90
3170.6Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566842 CIFC26 H25 N3P b c n19.753; 10.6344; 20.535
90; 90; 90
4313.6Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566843 CIFC29 H23 N3 S2P 1 21/n 117.7692; 7.587; 17.8377
90; 91.248; 90
2404.2Li, Taian; Chiou, Mong-Feng; Li, Yajun; Ye, Changqing; Su, Min; Xue, Mengyu; Yuan, Xiaobin; Wang, Chuanchuan; Wan, Wen-Ming; Li, Daliang; Bao, Hongli
Synthesis of Unsymmetrically Tetrasubstituted Pyrroles and Studies of AIEE in Pyrrolo[1,2-a]pyrimidine Derivatives
Chemical Science, 2022
1566844 CIFC16 H11 N O2C m c 2114.732; 10.702; 7.661
90; 90; 90
1207.8Owatari, Yoshihiro; Iseki, Shuta; Ogata, Daiji; Yuasa, Junpei
Catalytic electron drives host–guest recognition
Chemical Science, 2022
1566845 CIFC117 H190 Br6 Mg6 N8 O6P 1 21 119.2717; 16.1154; 19.692
90; 93.454; 90
6104.66Monasterolo, Claudio; O'Gara, Ryan; Kavanagh, Saranna; Byrne, Sadbh Elise; Bieszczad, Bartosz; Murray, Orla; Wiesinger, Michael; Lynch, Rebecca; Nikitin, Kirill; Gilheany, Declan Gerard
Asymmetric addition of Grignard reagents to ketones: culmination of the ligand-mediated methodology allows modular construction of chiral tertiary alcohols
Chemical Science, 2022
1566846 CIFC20 H23 Br2 N O2P 1 21 115.0842; 18.1183; 15.8577
90; 109.235; 90
4091.96Monasterolo, Claudio; O'Gara, Ryan; Kavanagh, Saranna; Byrne, Sadbh Elise; Bieszczad, Bartosz; Murray, Orla; Wiesinger, Michael; Lynch, Rebecca; Nikitin, Kirill; Gilheany, Declan Gerard
Asymmetric addition of Grignard reagents to ketones: culmination of the ligand-mediated methodology allows modular construction of chiral tertiary alcohols
Chemical Science, 2022
1566847 CIFC15 H21 N O2P 1 21/n 19.7766; 13.914; 21.1903
90; 97.758; 90
2856.17Guan, Zhipeng; Zhong, Xingxing; Ye, Yayu; Li, Xiangwei; Cong, Hengjiang; Yi, Hong; Zhang, Heng; Huang, Zhiliang; Lei, Aiwen
Selective Radical Cascade (4+2) Annulation with Olefins towards the Synthesis of Chroman Derivatives via Organo-Photoredox Catalysis
Chemical Science, 2022
1566848 CIF
HKL
Paper
C15 H11 N O3 SP 1 21/c 112.6886; 9.2655; 11.6024
90; 105.374; 90
1315.24Pineda, Leslie W.; Ferllini, Natasha; Cabezas, Jorge A.
1-(Phenylsulfonyl)-1<i>H</i>-indole-2-carbaldehyde
IUCrData, 2022, 7, x220401
1566849 CIF
HKL
Paper
C50 H38 Mn N5 O3P c c n20.1021; 21.5505; 17.9807
90; 90; 90
7789.4Cao, Hongli; Wang, Junwen; Li, Jianfeng
Nitrato(5,10,15,20-tetraphenylporphinato)manganese(III)–benzene–<i>n</i>-hexane (2/1/1)
IUCrData, 2022, 7, x220386
1566850 CIFC3 H18 Al F9 O18 S3P 21 21 216.4503; 15.415; 22.904
90; 90; 90
2277.38Pastel, Glenn R.; Chen, Ying; Pollard, Travis P.; Schroeder, Marshall A.; Bowden, Mark E.; Zheng, Allen; Hahn, Nathan T.; Ma, Lin; Murugesan, Vijayakumar; Ho, Janet; Garaga, Mounesha; Borodin, Oleg; Mueller, Karl; Greenbaum, Steven; Xu, Kang
A sobering examination of the feasibility of aqueous aluminum batteries
Energy & Environmental Science, 2022, 15, 2460-2469
1566851 CIFC14 H17 N2 O PP 21 21 217.2488; 10.7508; 17.638
90; 90; 90
1374.5Zhang, Ying; Yuan, Jia; Huang, Guanglong; Yu, Hong; Liu, Jinpeng; Chen, Jian; Meng, Sixuan; Zhong, Jian-Ji; Dang, Li; Yu, Guang-Ao; Che, Chi-Ming
Direct visible-light-induced synthesis of P-stereogenic phosphine oxides under air conditions.
Chemical science, 2022, 13, 6519-6524
1566852 CIFC18 H35 Cl N2 O P2P 1 21 110.2116; 22.6532; 10.5288
90; 114.869; 90
2209.74Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566853 CIFC27 H48 I N3 O P2P 21 21 2111.3375; 16.044; 17.0248
90; 90; 90
3096.79Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566854 CIFC28 H50 I N3 O P2P 21 21 2111.2847; 16.6693; 16.9948
90; 90; 90
3196.86Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566855 CIFC18 H36 N2 O2 P2P 110.1507; 10.483; 12.0198
71.0631; 77.4831; 65.8533
1098.71Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566856 CIFC28 H52 N2 O2 P2P 21 21 219.9457; 13.5082; 22.3174
90; 90; 90
2998.31Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566857 CIFC27 H47 N3 O P2P 19.5345; 11.9909; 13.3121
104.379; 90.136; 94.2154
1469.93Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566858 CIFC26 H45 N3 O P2P 1 21 115.1934; 13.5842; 20.878
90; 101.6; 90
4221.01Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566859 CIFC28 H50 I N3 O P2P 1 21 110.0206; 28.85; 11.9155
90; 110.382; 90
3229.03Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566860 CIFC28 H50 I N3 O P2P 21 21 2111.3691; 16.4031; 17.294
90; 90; 90
3225.13Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566861 CIFC27 H47 N3 O P2P 19.5482; 12.0125; 13.2604
103.899; 90.8396; 94.8447
1470.17Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566862 CIFC26 H45 N3 O P2P 21 21 219.3035; 15.6398; 19.0287
90; 90; 90
2768.77Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566863 CIFC27 H47 N3 O P2P 19.5547; 11.9843; 13.3167
103.719; 90.305; 94.423
1476.49Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566864 CIFC28.5 H56 I N3 O P2C 1 2 114.361; 11.6776; 20.98
90; 92.239; 90
3515.7Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566865 CIFC27 H54 I N3 O P2P 21 21 2111.0895; 16.8933; 17.0952
90; 90; 90
3202.6Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566866 CIFC27 H48 I N3 O P2P 21 21 2111.7716; 15.9064; 16.4323
90; 90; 90
3076.85Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566867 CIFC23 H48 I N3 O P2C 1 2 114.3333; 11.7334; 18.0008
90; 97.111; 90
3004.1Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566868 CIFC28.5 H56 I N3 O P2C 1 2 114.3801; 11.8816; 20.9273
90; 100.971; 90
3510.3Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566869 CIFC28 H50 I N3 O P2P 1 21 19.9808; 28.802; 11.8786
90; 109.431; 90
3220.21Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566870 CIFC23 H48 I N3 O P2P 1 21 114.2761; 11.8123; 18.2335
90; 97.663; 90
3047.3Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566871 CIFC28 H50 I N3 O P2P 1 21 19.9968; 28.7847; 11.8857
90; 109.645; 90
3221.1Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566872 CIFC27 H54 I N3 O P2P 1 21 19.6161; 35.768; 9.7814
90; 98.955; 90
3323.3Peel, Andrew J.; Terzopoulos, Alexandros; Jethwa, Rajesh B.; Choudhury, Dipanjana; Niu, Hao-Che; Bond, Andrew D.; Slaughter, Jonathan; Wright, Dominic S.
A chiral phosphazane reagent strategy for the determination of enantiomeric excess of amines
Chemical Science, 2022
1566873 CIFC11 H10 F N O2P 1 21/c 113.2434; 3.8259; 19.122
90; 92.63; 90
967.85Xing, Yi; Li, Zhongyu; Baryshnikov, Glib; Shen, Shen; Ye, Danfeng; Ågren, Hans; Zhu, Liangliang
Water Molecular Bridge-Induced Selective Dual Polarization in Crystals for Stable Multi-Emitter
Chemical Science, 2022
1566874 CIFC16 H14 N2 O2P 1 2/c 19.948; 5.7541; 23.8405
90; 100.984; 90
1339.67Xing, Yi; Li, Zhongyu; Baryshnikov, Glib; Shen, Shen; Ye, Danfeng; Ågren, Hans; Zhu, Liangliang
Water Molecular Bridge-Induced Selective Dual Polarization in Crystals for Stable Multi-Emitter
Chemical Science, 2022
1566875 CIFC16 H13 F N2 O2P -110.5395; 10.6712; 13.2594
76.844; 85.075; 72.914
1387.8Xing, Yi; Li, Zhongyu; Baryshnikov, Glib; Shen, Shen; Ye, Danfeng; Ågren, Hans; Zhu, Liangliang
Water Molecular Bridge-Induced Selective Dual Polarization in Crystals for Stable Multi-Emitter
Chemical Science, 2022
1566876 CIFC15 H15 I O3 SR -3 :H20.7704; 20.7704; 21.5736
90; 90; 120
8060.1Soldatova, Natalia S.; Postnikov, Pavel S.; Ivanov, Daniil M.; Semyonov, Oleg V.; Kukurina, Olga S.; Guselnikova, Olga; Yamauchi, Yusuke; Wirth, Thomas; Zhdankin, Viktor V.; Yusubov, Mekhman S.; Gomila, Rosa M.; Frontera, Antonio; Resnati, Giuseppe; Kukushkin, Vadim Yu.
Zwitterionic iodonium species afford halogen bond-based porous organic frameworks
Chemical Science, 2022
1566877 CIFC14 H13 I O3 SP 1 21/c 17.0964; 23.1449; 8.145
90; 97.033; 90
1327.71Soldatova, Natalia S.; Postnikov, Pavel S.; Ivanov, Daniil M.; Semyonov, Oleg V.; Kukurina, Olga S.; Guselnikova, Olga; Yamauchi, Yusuke; Wirth, Thomas; Zhdankin, Viktor V.; Yusubov, Mekhman S.; Gomila, Rosa M.; Frontera, Antonio; Resnati, Giuseppe; Kukushkin, Vadim Yu.
Zwitterionic iodonium species afford halogen bond-based porous organic frameworks
Chemical Science, 2022
1566878 CIFC12 H8 Cl I O3 SP -16.0981; 8.1137; 25.8853
94.961; 93.997; 91.858
1271.9Soldatova, Natalia S.; Postnikov, Pavel S.; Ivanov, Daniil M.; Semyonov, Oleg V.; Kukurina, Olga S.; Guselnikova, Olga; Yamauchi, Yusuke; Wirth, Thomas; Zhdankin, Viktor V.; Yusubov, Mekhman S.; Gomila, Rosa M.; Frontera, Antonio; Resnati, Giuseppe; Kukushkin, Vadim Yu.
Zwitterionic iodonium species afford halogen bond-based porous organic frameworks
Chemical Science, 2022
1566879 CIFC15 H15 I O3 SP -110.1666; 14.3384; 20.5652
84.479; 82.633; 74.902
2864.29Soldatova, Natalia S.; Postnikov, Pavel S.; Ivanov, Daniil M.; Semyonov, Oleg V.; Kukurina, Olga S.; Guselnikova, Olga; Yamauchi, Yusuke; Wirth, Thomas; Zhdankin, Viktor V.; Yusubov, Mekhman S.; Gomila, Rosa M.; Frontera, Antonio; Resnati, Giuseppe; Kukushkin, Vadim Yu.
Zwitterionic iodonium species afford halogen bond-based porous organic frameworks
Chemical Science, 2022
1566880 CIFC50 H32 O4P 1 21 16.9528; 13.3069; 37.0562
90; 91.951; 90
3426.46Han, Jianlei; Shi, Yonghong; Jin, Xue; Yang, Xuefeng; Duan, Pengfei
Regulating the Excited State Chirality to Fabricate High-Performance-Solid-State Circularly Polarized Luminescence Materials
Chemical Science, 2022
1566881 CIFC52 H36 O5P 21 21 217.2123; 17.9092; 27.4926
90; 90; 90
3551.12Han, Jianlei; Shi, Yonghong; Jin, Xue; Yang, Xuefeng; Duan, Pengfei
Regulating the Excited State Chirality to Fabricate High-Performance-Solid-State Circularly Polarized Luminescence Materials
Chemical Science, 2022
1566882 CIFC54 H38 O4P 21 21 2125.8331; 10.6809; 13.7334
90; 90; 90
3789.3Han, Jianlei; Shi, Yonghong; Jin, Xue; Yang, Xuefeng; Duan, Pengfei
Regulating the Excited State Chirality to Fabricate High-Performance-Solid-State Circularly Polarized Luminescence Materials
Chemical Science, 2022
1566883 CIFC54 H30 O4P 21 21 2110.2762; 13.1669; 26.875
90; 90; 90
3636.3Han, Jianlei; Shi, Yonghong; Jin, Xue; Yang, Xuefeng; Duan, Pengfei
Regulating the Excited State Chirality to Fabricate High-Performance-Solid-State Circularly Polarized Luminescence Materials
Chemical Science, 2022
1566884 CIFC39 H34 O3P 1 21 110.9647; 18.7819; 14.2842
90; 98.404; 90
2910.07Han, Jianlei; Shi, Yonghong; Jin, Xue; Yang, Xuefeng; Duan, Pengfei
Regulating the Excited State Chirality to Fabricate High-Performance-Solid-State Circularly Polarized Luminescence Materials
Chemical Science, 2022
1566885 CIFC H N O SC 1 m 19.1813; 32.2736; 40.651
90; 96.354; 90
11971.5Zhang, Zhe; Bai, Qixia; Manandhar, Erendra; Zeng, Yunting; Wu, Tun; Wang, Ming; Yao, Liao-Yuan; Newkome, George R.; Wang, Pingshan; Xie, Tingzheng
Supramolecular Cuboctahedra with Aggregation-Induced Emission Enhancement and External Binding Ability
Chemical Science, 2022
1566886 CIFC98 H61 N12 S2P -113.8636; 15.9137; 20.4987
83.865; 73.294; 85.019
4299.28Zhang, Zhe; Bai, Qixia; Manandhar, Erendra; Zeng, Yunting; Wu, Tun; Wang, Ming; Yao, Liao-Yuan; Newkome, George R.; Wang, Pingshan; Xie, Tingzheng
Supramolecular Cuboctahedra with Aggregation-Induced Emission Enhancement and External Binding Ability
Chemical Science, 2022
1566887 CIFC29 H18 NP -18.4867; 12.972; 18.128
105.478; 90.206; 96.312
1910.5Meng, Guoyun; Zhang, Dongdong; Wei, Jinbei; Zhang, Yuewei; Huang, Tianyu; Liu, Ziyang; Yin, Chen; Hong, Xiangchen; Wang, Xiang; Zeng, Xuan; Yang, Dezhi; Ma, Dongge; Li, Guomeng; Duan, Lian
Highly efficient and stable deep-blue OLEDs based on narrowband emitters featuring an orthogonal spiro-configured indolo[3,2,1-de]acridine structure
Chemical Science, 2022
1566888 CIFC28 H31 Cl N2 O2 SiP -18.2938; 10.0055; 17.6368
74.549; 88.4; 68.207
1305.72Miller, Stephen; Rao, Desaboini Nageswara; Ji, Xincai
Silicon functionalization expands the repertoire of Si-rhodamine fluorescent probes
Chemical Science, 2022
1566889 CIFC31 H39 Al N2P 1 21/n 18.6731; 13.6845; 22.6164
90; 95.026; 90
2673.95Dhara, Debabrata; Jayaraman, Arumugam; Härterich, Marcel; Dewhurst, Rian; Braunschweig, Holger
Generation of a transient base-stabilised arylalumylene for the facile deconstruction of aromatic molecules
Chemical Science, 2022
1566890 CIFC68 H80 Al2 N4I 1 2/a 116.9198; 22.2833; 17.4576
90; 117.934; 90
5815.14Dhara, Debabrata; Jayaraman, Arumugam; Härterich, Marcel; Dewhurst, Rian; Braunschweig, Holger
Generation of a transient base-stabilised arylalumylene for the facile deconstruction of aromatic molecules
Chemical Science, 2022
1566891 CIFC159 H188 Al4 I8 N8P -115.879; 16.076; 16.533
92.956; 109.505; 102.27
3853Dhara, Debabrata; Jayaraman, Arumugam; Härterich, Marcel; Dewhurst, Rian; Braunschweig, Holger
Generation of a transient base-stabilised arylalumylene for the facile deconstruction of aromatic molecules
Chemical Science, 2022
1566892 CIFC78 H91 Al2 N4P 1 21/c 115.4528; 15.2329; 28.0296
90; 96.742; 90
6552.29Dhara, Debabrata; Jayaraman, Arumugam; Härterich, Marcel; Dewhurst, Rian; Braunschweig, Holger
Generation of a transient base-stabilised arylalumylene for the facile deconstruction of aromatic molecules
Chemical Science, 2022
1566893 CIFC71 H83 Al2 N4P -113.438; 15.123; 15.478
75.326; 80.106; 84.764
2993.9Dhara, Debabrata; Jayaraman, Arumugam; Härterich, Marcel; Dewhurst, Rian; Braunschweig, Holger
Generation of a transient base-stabilised arylalumylene for the facile deconstruction of aromatic molecules
Chemical Science, 2022
1566894 CIFC68 H88 Al2 N4P -111.884; 15.4141; 18.4138
112.49; 90.87; 105.49
2977.13Dhara, Debabrata; Jayaraman, Arumugam; Härterich, Marcel; Dewhurst, Rian; Braunschweig, Holger
Generation of a transient base-stabilised arylalumylene for the facile deconstruction of aromatic molecules
Chemical Science, 2022
1566895 CIFC33 H34 F3 O12 P SP 1 21 110.5045; 16.82; 11.0991
90; 112.514; 90
1811.6Liu, Fen; Huang, Haiyang; Sun, Longgen; Yan, Zeen; Tan, Xiao; Li, Jing; Luo, Xinyue; Ding, Haixin; Xiao, Qiang
P(v) intermediate-mediated E1cB elimination for the synthesis of glycals
Chemical Science, 2022
1566896 CIFC51 H54 B N3C 1 2/c 115.582; 33.295; 18.241
90; 90.452; 90
9463Jiang, Long; Wang, Yu; Tan, Dehui; Chen, Xiaobin; Ma, Tinghao; Zhang, Baoliang; Yang, Deng-Tao
Access to tetracoordinate boron-doped polycyclic aromatic hydrocarbons with delayed fluorescence and aggregation-induced emission under mild conditions
Chemical Science, 2022
1566897 CIFC59.42 H70.28 B N3I 1 2/a 121.747; 19.582; 23.834
90; 90.748; 90
10148.8Jiang, Long; Wang, Yu; Tan, Dehui; Chen, Xiaobin; Ma, Tinghao; Zhang, Baoliang; Yang, Deng-Tao
Access to tetracoordinate boron-doped polycyclic aromatic hydrocarbons with delayed fluorescence and aggregation-induced emission under mild conditions
Chemical Science, 2022
1566898 CIFC56 H62 B N3P -111.0795; 14.238; 15.3074
83.621; 78.486; 77.897
2307.5Jiang, Long; Wang, Yu; Tan, Dehui; Chen, Xiaobin; Ma, Tinghao; Zhang, Baoliang; Yang, Deng-Tao
Access to tetracoordinate boron-doped polycyclic aromatic hydrocarbons with delayed fluorescence and aggregation-induced emission under mild conditions
Chemical Science, 2022
1566899 CIFC22 H17 F3 O3P 1 21/c 111.6118; 9.7486; 17.4474
90; 102.403; 90
1928.9Zhang, Qi; Chiou, Mong-Feng; Ye, Changqing; Yuan, Xiaobin; Li, Yajun; Bao, Hongli
Radical 1,2,3-Tricarbofunctionalization of α-Vinyl-β-Ketoesters Enabled by Carbon Shift from All-carbon Quaternary Center
Chemical Science, 2022
1566900 CIFC23 H18 Cl F3 O4P 1 21/n 18.9925; 15.5533; 16.006
90; 105.451; 90
2157.7Zhang, Qi; Chiou, Mong-Feng; Ye, Changqing; Yuan, Xiaobin; Li, Yajun; Bao, Hongli
Radical 1,2,3-Tricarbofunctionalization of α-Vinyl-β-Ketoesters Enabled by Carbon Shift from All-carbon Quaternary Center
Chemical Science, 2022
1566901 CIFC23 H18 Cl F3 O3P 1 21/c 112.5234; 9.7432; 17.5168
90; 97.018; 90
2121.35Zhang, Qi; Chiou, Mong-Feng; Ye, Changqing; Yuan, Xiaobin; Li, Yajun; Bao, Hongli
Radical 1,2,3-Tricarbofunctionalization of α-Vinyl-β-Ketoesters Enabled by Carbon Shift from All-carbon Quaternary Center
Chemical Science, 2022
1566902 CIFC22 H19 F3 O3P 1 21/c 115.1282; 11.8989; 11.623
90; 111.112; 90
1951.8Zhang, Qi; Chiou, Mong-Feng; Ye, Changqing; Yuan, Xiaobin; Li, Yajun; Bao, Hongli
Radical 1,2,3-Tricarbofunctionalization of α-Vinyl-β-Ketoesters Enabled by Carbon Shift from All-carbon Quaternary Center
Chemical Science, 2022
1566903 CIF
HKL
Paper
C32 H29 Br N2 O10 S3P 1 21 116.99261; 6.02635; 17.4076
90; 107.831; 90
1696.97Azzam, Rasha A.; Elgemeie, Galal H.; Gad, Nagwa M.; Jones, Peter G.
4-Amino-5-(4-bromobenzoyl)-3-(benzo[<i>d</i>]thiazol-2-yl)-2-[(2',3',4',6'-tetra-<i>O</i>-acetyl-β-<small>D</small>-galactopyranosyl)sulfanyl]thiophene
IUCrData, 2022, 7, x220412
1566904 CIF
HKL
Paper
C16 H20 Cl2 N2 O4P 1 21/c 119.1257; 9.3864; 10.0502
90; 103.546; 90
1754.04Obidova, Nodira; Ashurov, Jamshid; Izotova, Lidiya; Ibragimov, Bakhtiyar
2-Hydroxyethylammonium [2-(2,6-dichloroanilino)phenyl]acetate monohydrate
IUCrData, 2022, 7, x220441
1566905 CIFC64 H50 N30 O15 Zn6P 1 2/c 120.5713; 15.332; 21.6572
90; 96.891; 90
6781.3Wei, Yu-Bai; Luo, Dong; Xiong, Xiao; Huang, Yong-Liang; Xie, Mo; Lu, Weigang; Li, Dan
Biomimetic mimicry of formaldehyde-induced DNA–protein crosslinks in the confined space of a metal–organic framework
Chemical Science, 2022, 13, 4813-4820
1566906 CIFC66 H50 N30 O15 Zn6P 1 2/c 120.7927; 15.218; 21.7299
90; 93.52; 90
6862.9Wei, Yu-Bai; Luo, Dong; Xiong, Xiao; Huang, Yong-Liang; Xie, Mo; Lu, Weigang; Li, Dan
Biomimetic mimicry of formaldehyde-induced DNA–protein crosslinks in the confined space of a metal–organic framework
Chemical Science, 2022, 13, 4813-4820
1566907 CIFC67 H50 N30 O15 Zn6P 1 2/c 120.6916; 15.2813; 21.6745
90; 92.481; 90
6846.93Wei, Yu-Bai; Luo, Dong; Xiong, Xiao; Huang, Yong-Liang; Xie, Mo; Lu, Weigang; Li, Dan
Biomimetic mimicry of formaldehyde-induced DNA–protein crosslinks in the confined space of a metal–organic framework
Chemical Science, 2022, 13, 4813-4820
1566908 CIFC66 H50 N30 O15 Zn6P 1 2/c 120.5389; 15.2128; 21.6422
90; 94.526; 90
6741.1Wei, Yu-Bai; Luo, Dong; Xiong, Xiao; Huang, Yong-Liang; Xie, Mo; Lu, Weigang; Li, Dan
Biomimetic mimicry of formaldehyde-induced DNA–protein crosslinks in the confined space of a metal–organic framework
Chemical Science, 2022, 13, 4813-4820
1566909 CIFC66 H50 N30 O15 Zn6P 1 2/c 120.7798; 15.2345; 21.6564
90; 93.144; 90
6845.4Wei, Yu-Bai; Luo, Dong; Xiong, Xiao; Huang, Yong-Liang; Xie, Mo; Lu, Weigang; Li, Dan
Biomimetic mimicry of formaldehyde-induced DNA–protein crosslinks in the confined space of a metal–organic framework
Chemical Science, 2022, 13, 4813-4820
1566910 CIFC30 H20 As Co O2P -19.0514; 10.5907; 12.8357
76.116; 84.418; 78.076
1167.24Kirk, Ryan M.; Hill, Anthony
Arsolyl-Supported Intermetallic Dative Bonding
Chemical Science, 2022
1566911 CIFC18 H12 As Co O2P n a 2111.2347; 17.2771; 7.8356
90; 90; 90
1520.91Kirk, Ryan M.; Hill, Anthony
Arsolyl-Supported Intermetallic Dative Bonding
Chemical Science, 2022
1566912 CIFC10 H12 As Cl2 Co Hg O2C 1 2/c 114.1928; 14.4745; 14.7169
90; 99.34; 90
2983.27Kirk, Ryan M.; Hill, Anthony
Arsolyl-Supported Intermetallic Dative Bonding
Chemical Science, 2022
1566913 CIFC23 H12 As Co F10 O3 PtP 21 21 219.1891; 12.7559; 21.0227
90; 90; 90
2464.18Kirk, Ryan M.; Hill, Anthony
Arsolyl-Supported Intermetallic Dative Bonding
Chemical Science, 2022
1566914 CIFC10 H12 As Cl2 Co Hg O2P 1 21/n 18.8304; 14.2969; 11.846
90; 94.222; 90
1491.47Kirk, Ryan M.; Hill, Anthony
Arsolyl-Supported Intermetallic Dative Bonding
Chemical Science, 2022
1566915 CIFC16 H33 As Co O4 P Si2C 1 c 17.9385; 19.9045; 15.3637
90; 90.3; 90
2427.61Kirk, Ryan M.; Hill, Anthony
Arsolyl-Supported Intermetallic Dative Bonding
Chemical Science, 2022
1566916 CIFC32 H24 As2 Au2 Co2 F10 O4P -115.1208; 21.7675; 23.8537
100.283; 104.78; 91.078
7452.43Kirk, Ryan M.; Hill, Anthony
Arsolyl-Supported Intermetallic Dative Bonding
Chemical Science, 2022
1566917 CIFC12 H21 As Co O4 PP 1 21/n 18.198; 14.8986; 26.2475
90; 97.071; 90
3181.45Kirk, Ryan M.; Hill, Anthony
Arsolyl-Supported Intermetallic Dative Bonding
Chemical Science, 2022
1566918 CIFC22 H38 N2 O7P 21 21 219.608; 13.2461; 20.0321
90; 90; 90
2549.46Chen, Wei-An; Chen, Yu-Hsin; Hsieh, Chiao-Yun; Hung, Pi-Fang; Chen, Chiao-Wen; Chen, Chien-Hung; Lin, Jung-Lee; Cheng, Ting-Jen R.; Hsu, Tsui-Ling; Wu, Ying-Ta; Shen, Chia-Ning; Cheng, Wei-Chieh
Harnessing natural-product-inspired combinatorial chemistry and computation-guided synthesis to develop N-glycan modulators as anticancer agents
Chemical Science, 2022
1566920 CIFC30 H28 O4P -110.891; 11.4276; 11.5284
116.793; 90.271; 101.247
1249.11Zhang, Qiao; Wang, Wenbo; Cai, Changyong; Wu, Shuanggen; Li, Jialing; Li, Fenfang; Dong, Shengyi
Underwater luminescent labeling materials constructed from a supramolecular approach.
Materials horizons, 2022, 9, 1984-1991
1566921 CIFC30 H28 O4P -17.8756; 11.8787; 13.8525
84.512; 84.625; 71.646
1221.59Zhang, Qiao; Wang, Wenbo; Cai, Changyong; Wu, Shuanggen; Li, Jialing; Li, Fenfang; Dong, Shengyi
Underwater luminescent labeling materials constructed from a supramolecular approach.
Materials horizons, 2022, 9, 1984-1991
1566922 CIFC108 H99 Cl9 O12P -114.9569; 17.9039; 22.5745
69.1; 74.702; 88.173
5434.3Fang, Shuai; Wang, Mengbin; Wu, Yating; Guo, Qing-Hui; Li, Errui; Li, Hao; Huang, Feihe
Cagearenes: synthesis, characterization, and application for programmed vapor release
Chemical Science, 2022
1566923 CIFC123 H114 O12C 1 2/c 125.7782; 18.2534; 27.4389
90; 117.813; 90
11419.5Fang, Shuai; Wang, Mengbin; Wu, Yating; Guo, Qing-Hui; Li, Errui; Li, Hao; Huang, Feihe
Cagearenes: synthesis, characterization, and application for programmed vapor release
Chemical Science, 2022
1566924 CIFC145 H148 O12P -114.166; 18.6824; 23.8099
82.321; 87.364; 74.141
6006.9Fang, Shuai; Wang, Mengbin; Wu, Yating; Guo, Qing-Hui; Li, Errui; Li, Hao; Huang, Feihe
Cagearenes: synthesis, characterization, and application for programmed vapor release
Chemical Science, 2022
1566925 CIFC114 H108 O12P -113.898; 19.031; 24.191
112.073; 103.948; 93.107
5680Fang, Shuai; Wang, Mengbin; Wu, Yating; Guo, Qing-Hui; Li, Errui; Li, Hao; Huang, Feihe
Cagearenes: synthesis, characterization, and application for programmed vapor release
Chemical Science, 2022
1566926 CIFC40 H58 Li2 O10 S2P 1 21/n 111.2936; 21.8827; 17.1083
90; 94.544; 90
4214.8Plajer, Alex Johannes; Pröhm, Patrick; Rupf, Susanne M.
Lithium achieves sequence selective ring-opening terpolymerisation (ROTERP) of ternary monomer mixtures
Chemical Science, 2022
1566927 CIFC12 H13 Na O3 SP -15.9833; 9.3642; 11.7461
90.127; 101.89; 97.726
637.85Plajer, Alex Johannes; Pröhm, Patrick; Rupf, Susanne M.
Lithium achieves sequence selective ring-opening terpolymerisation (ROTERP) of ternary monomer mixtures
Chemical Science, 2022
1566928 CIFC96 H104 K8 O24 S8P 1 2/n 115.1783; 6.6961; 30.176
90; 104.412; 90
2970.4Plajer, Alex Johannes; Pröhm, Patrick; Rupf, Susanne M.
Lithium achieves sequence selective ring-opening terpolymerisation (ROTERP) of ternary monomer mixtures
Chemical Science, 2022
1566929 CIFC8 H8 Cr N4 Ni O5P 1 21 16.6931; 8.4975; 9.8328
90; 102.711; 90
545.53Tang, Hsu-Yen; Lee, Gene-Hsiang; Ng, Kwai-Kong; Yang, Chen-I
A Three-Dimensional Coordination Framework with a Ferromagnetic Coupled Ni(II)-CrO4 Layer: Synthesis, Structure, and Magnetic Studies
Polymers, 2022, 14, 1735
1566930 CIFC54 H54 N2 O4P 1 21 19.6464; 23.7748; 10.1622
90; 112.225; 90
2157.46Wei, Wan-Xu; Kong, Xiangtao; Jiao, Rui-Qiang; Li, Xue-Song; Wang, Cui-Tian; Li, Yuke; Liang, Yong-Min
Regioselective Synthesis of Spirocyclic Pyrrolines via a Palladium-Catalyzed Narasaka-Heck/C-H Activation/[4+2] Annulation Cascade Reaction
Chemical Science, 2022

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