Crystallography Open Database

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1558048 CIFC43 H121 Er3 N12 O43 Yb3R -3 :H16.7567; 16.7567; 25.0576
90; 90; 120
6093.2Gálico, Diogo A; Ovens, Jeffrey S.; Murugesu, Muralee
NIR-to-NIR emission on a water-soluble {Er<sub>6</sub>} and {Er<sub>3</sub>Yb<sub>3</sub>} nanosized molecular wheel.
Nanoscale, 2020, 12, 11435-11439
1558049 CIFC40 H86 Cl4 N12 O39 Yb6P -112.1098; 12.8247; 24.7696
97.196; 102.549; 98.363
3665.67Gálico, Diogo A; Ovens, Jeffrey S.; Murugesu, Muralee
NIR-to-NIR emission on a water-soluble {Er<sub>6</sub>} and {Er<sub>3</sub>Yb<sub>3</sub>} nanosized molecular wheel.
Nanoscale, 2020, 12, 11435-11439
1558050 CIFC15 H12 N4P 1 21/c 118.3346; 15.7546; 18.3241
90; 90.531; 90
5292.8Horiuchi, Sachio; Ishibashi, Shoji; Haruki, Rie; Kumai, Reiji; Inada, Satoshi; Aoyagi, Shigenobu
Metaelectric multiphase transitions in a highly polarizable molecular crystal.
Chemical science, 2020, 11, 6183-6192
1558051 CIFC15 H12 N4P 4318.3126; 18.3126; 15.7252
90; 90; 90
5273.5Horiuchi, Sachio; Ishibashi, Shoji; Haruki, Rie; Kumai, Reiji; Inada, Satoshi; Aoyagi, Shigenobu
Metaelectric multiphase transitions in a highly polarizable molecular crystal.
Chemical science, 2020, 11, 6183-6192
1558052 CIFC15 H12 N4P 4118.2293; 18.2293; 15.6088
90; 90; 90
5186.9Horiuchi, Sachio; Ishibashi, Shoji; Haruki, Rie; Kumai, Reiji; Inada, Satoshi; Aoyagi, Shigenobu
Metaelectric multiphase transitions in a highly polarizable molecular crystal.
Chemical science, 2020, 11, 6183-6192
1558053 CIFC31 H28 N8 OC 1 2/c 122.088; 5.586; 24.017
90; 115.257; 90
2680Horiuchi, Sachio; Ishibashi, Shoji; Haruki, Rie; Kumai, Reiji; Inada, Satoshi; Aoyagi, Shigenobu
Metaelectric multiphase transitions in a highly polarizable molecular crystal.
Chemical science, 2020, 11, 6183-6192
1558054 CIFC15 H12 N4P 1 21/c 118.3296; 15.7595; 18.3254
90; 90.612; 90
5293.3Horiuchi, Sachio; Ishibashi, Shoji; Haruki, Rie; Kumai, Reiji; Inada, Satoshi; Aoyagi, Shigenobu
Metaelectric multiphase transitions in a highly polarizable molecular crystal.
Chemical science, 2020, 11, 6183-6192
1558055 CIFC16 H12 N4P 1 21/n 17.963; 8.349; 9.742
90; 111.776; 90
601.5Deville, Claire; Folkjær, Mads; Reinholdt, Peter; Hvid, Mathias S.; Lamagni, Paolo; Borup, Kasper; Sun, Zhaozong; Lauritsen, Jeppe Vang; McKee, Vickie; Jensen, Kirsten M Ø; Lock, Nina
Cubes on a string: a series of linear coordination polymers with cubane-like nodes and dicarboxylate linkers.
Nanoscale, 2020, 12, 11601-11611
1558056 CIFC82 H65 Co4 N16 O12I 1 2 115.6211; 21.1135; 32.721
90; 93.605; 90
10770.6Deville, Claire; Folkjær, Mads; Reinholdt, Peter; Hvid, Mathias S.; Lamagni, Paolo; Borup, Kasper; Sun, Zhaozong; Lauritsen, Jeppe Vang; McKee, Vickie; Jensen, Kirsten M Ø; Lock, Nina
Cubes on a string: a series of linear coordination polymers with cubane-like nodes and dicarboxylate linkers.
Nanoscale, 2020, 12, 11601-11611
1558057 CIFC80 H64 Co4 N16 O14P 42 21 219.5696; 19.5696; 26.6481
90; 90; 90
10205.4Deville, Claire; Folkjær, Mads; Reinholdt, Peter; Hvid, Mathias S.; Lamagni, Paolo; Borup, Kasper; Sun, Zhaozong; Lauritsen, Jeppe Vang; McKee, Vickie; Jensen, Kirsten M Ø; Lock, Nina
Cubes on a string: a series of linear coordination polymers with cubane-like nodes and dicarboxylate linkers.
Nanoscale, 2020, 12, 11601-11611
1558058 CIFC38 H60 Al N3P 1 21/n 110.236; 32.92; 10.7797
90; 105.178; 90
3505.7Drescher, Regina; Lin, Shujuan; Hofmann, Alexander; Lenczyk, Carsten; Kachel, Stephanie; Krummenacher, Ivo; Lin, Zhenyang; Braunschweig, Holger
Ring expansion of alumoles with organic azides: selective formation of six-membered aluminum-nitrogen heterocycles.
Chemical science, 2020, 11, 5559-5564
1558059 CIFC32 H58 Al2P 1 21/n 18.755; 15.965; 11.067
90; 96.64; 90
1536.5Drescher, Regina; Lin, Shujuan; Hofmann, Alexander; Lenczyk, Carsten; Kachel, Stephanie; Krummenacher, Ivo; Lin, Zhenyang; Braunschweig, Holger
Ring expansion of alumoles with organic azides: selective formation of six-membered aluminum-nitrogen heterocycles.
Chemical science, 2020, 11, 5559-5564
1558060 CIFC36 H59 Al N2P 1 21/n 112.957; 16.692; 15.618
90; 96.13; 90
3359Drescher, Regina; Lin, Shujuan; Hofmann, Alexander; Lenczyk, Carsten; Kachel, Stephanie; Krummenacher, Ivo; Lin, Zhenyang; Braunschweig, Holger
Ring expansion of alumoles with organic azides: selective formation of six-membered aluminum-nitrogen heterocycles.
Chemical science, 2020, 11, 5559-5564
1558061 CIFC29 H49 AlP 1 21/n 19.335; 16.672; 17.185
90; 93.88; 90
2668Drescher, Regina; Lin, Shujuan; Hofmann, Alexander; Lenczyk, Carsten; Kachel, Stephanie; Krummenacher, Ivo; Lin, Zhenyang; Braunschweig, Holger
Ring expansion of alumoles with organic azides: selective formation of six-membered aluminum-nitrogen heterocycles.
Chemical science, 2020, 11, 5559-5564
1558062 CIFC32 H58 Al N SiP -19.601; 12.75; 13.314
97.397; 93.793; 94.404
1606.7Drescher, Regina; Lin, Shujuan; Hofmann, Alexander; Lenczyk, Carsten; Kachel, Stephanie; Krummenacher, Ivo; Lin, Zhenyang; Braunschweig, Holger
Ring expansion of alumoles with organic azides: selective formation of six-membered aluminum-nitrogen heterocycles.
Chemical science, 2020, 11, 5559-5564
1558063 CIFC47 H62 Al N3P 1 21/c 119.5714; 14.2192; 14.836
90; 96.397; 90
4103Drescher, Regina; Lin, Shujuan; Hofmann, Alexander; Lenczyk, Carsten; Kachel, Stephanie; Krummenacher, Ivo; Lin, Zhenyang; Braunschweig, Holger
Ring expansion of alumoles with organic azides: selective formation of six-membered aluminum-nitrogen heterocycles.
Chemical science, 2020, 11, 5559-5564
1558064 CIFC22 H28 I2 Ir N3 O2P 1 21/n 19.29339; 13.27724; 20.1881
90; 91.3644; 90
2490.31Zhang, Wen-Ying; Banerjee, Samya; Hughes, George M.; Bridgewater, Hannah E.; Song, Ji-Inn; Breeze, Ben G.; Clarkson, Guy J.; Coverdale, James P. C.; Sanchez-Cano, Carlos; Ponte, Fortuna; Sicilia, Emilia; Sadler, Peter J.
Ligand-centred redox activation of inert organoiridium anticancer catalysts
Chemical Science, 2020, 11, 5466-5480
1558065 CIFC26 H25.5 F3 I Ir N3 O P0.5P 1 2/c 123.165; 7.44609; 15.706
90; 107.268; 90
2587.01Zhang, Wen-Ying; Banerjee, Samya; Hughes, George M.; Bridgewater, Hannah E.; Song, Ji-Inn; Breeze, Ben G.; Clarkson, Guy J.; Coverdale, James P. C.; Sanchez-Cano, Carlos; Ponte, Fortuna; Sicilia, Emilia; Sadler, Peter J.
Ligand-centred redox activation of inert organoiridium anticancer catalysts
Chemical Science, 2020, 11, 5466-5480
1558066 CIFC22 H27 Br F6 I Ir N3 O2 PP 1 21/n 19.61097; 20.10144; 14.45419
90; 103.426; 90
2716.15Zhang, Wen-Ying; Banerjee, Samya; Hughes, George M.; Bridgewater, Hannah E.; Song, Ji-Inn; Breeze, Ben G.; Clarkson, Guy J.; Coverdale, James P. C.; Sanchez-Cano, Carlos; Ponte, Fortuna; Sicilia, Emilia; Sadler, Peter J.
Ligand-centred redox activation of inert organoiridium anticancer catalysts
Chemical Science, 2020, 11, 5466-5480
1558067 CIFC23 H27 F9 I Ir N3 O2 PP 1 21/n 19.8587; 20.2807; 15.0835
90; 105.245; 90
2909.69Zhang, Wen-Ying; Banerjee, Samya; Hughes, George M.; Bridgewater, Hannah E.; Song, Ji-Inn; Breeze, Ben G.; Clarkson, Guy J.; Coverdale, James P. C.; Sanchez-Cano, Carlos; Ponte, Fortuna; Sicilia, Emilia; Sadler, Peter J.
Ligand-centred redox activation of inert organoiridium anticancer catalysts
Chemical Science, 2020, 11, 5466-5480
1558068 CIFC26 H26 I2 Ir N3P 1 21/c 19.1942; 8.2158; 33.7933
90; 95.783; 90
2539.68Zhang, Wen-Ying; Banerjee, Samya; Hughes, George M.; Bridgewater, Hannah E.; Song, Ji-Inn; Breeze, Ben G.; Clarkson, Guy J.; Coverdale, James P. C.; Sanchez-Cano, Carlos; Ponte, Fortuna; Sicilia, Emilia; Sadler, Peter J.
Ligand-centred redox activation of inert organoiridium anticancer catalysts
Chemical Science, 2020, 11, 5466-5480
1558069 CIFC21 H24 I2 Ir N3C 1 2/c 131.7681; 8.7023; 16.6407
90; 94.935; 90
4583.36Zhang, Wen-Ying; Banerjee, Samya; Hughes, George M.; Bridgewater, Hannah E.; Song, Ji-Inn; Breeze, Ben G.; Clarkson, Guy J.; Coverdale, James P. C.; Sanchez-Cano, Carlos; Ponte, Fortuna; Sicilia, Emilia; Sadler, Peter J.
Ligand-centred redox activation of inert organoiridium anticancer catalysts
Chemical Science, 2020, 11, 5466-5480
1558070 CIFC22 H27.5 Cl1.5 Ir N3 O2P 1 21/n 18.93939; 18.6768; 13.452
90; 94.066; 90
2240.28Zhang, Wen-Ying; Banerjee, Samya; Hughes, George M.; Bridgewater, Hannah E.; Song, Ji-Inn; Breeze, Ben G.; Clarkson, Guy J.; Coverdale, James P. C.; Sanchez-Cano, Carlos; Ponte, Fortuna; Sicilia, Emilia; Sadler, Peter J.
Ligand-centred redox activation of inert organoiridium anticancer catalysts
Chemical Science, 2020, 11, 5466-5480
1558071 CIFC26 H26 Cl F6 Ir N3 O PP -18.71914; 9.9018; 15.7288
89.3248; 78.0376; 88.7062
1328.09Zhang, Wen-Ying; Banerjee, Samya; Hughes, George M.; Bridgewater, Hannah E.; Song, Ji-Inn; Breeze, Ben G.; Clarkson, Guy J.; Coverdale, James P. C.; Sanchez-Cano, Carlos; Ponte, Fortuna; Sicilia, Emilia; Sadler, Peter J.
Ligand-centred redox activation of inert organoiridium anticancer catalysts
Chemical Science, 2020, 11, 5466-5480
1558072 CIFC15 H19 N2 O4 ReP 1 21/c 114.6069; 8.871; 12.0927
90; 90.801; 90
1566.79Li, Jing; Lutz, Martin; Klein Gebbink, Robertus J. M.
N,N,O-Coordinated tricarbonylrhenium precatalysts for the aerobic deoxydehydration of diols and polyols
Catalysis Science & Technology, 2020, 10, 3782-3788
1558073 CIFC23 H35 N2 O4 ReC 1 2/c 123.927; 9.4928; 22.1646
90; 106.575; 90
4825.1Li, Jing; Lutz, Martin; Klein Gebbink, Robertus J. M.
N,N,O-Coordinated tricarbonylrhenium precatalysts for the aerobic deoxydehydration of diols and polyols
Catalysis Science & Technology, 2020, 10, 3782-3788
1558074 CIFC15 H18 N3 O6 ReP b c a8.90063; 11.9803; 31.8099
90; 90; 90
3391.96Li, Jing; Lutz, Martin; Klein Gebbink, Robertus J. M.
N,N,O-Coordinated tricarbonylrhenium precatalysts for the aerobic deoxydehydration of diols and polyols
Catalysis Science & Technology, 2020, 10, 3782-3788
1558075 CIFC21 H21 Fe N O3P 21 21 217.9439; 8.6162; 25.8718
90; 90; 90
1770.83Larin, Egor M.; Loup, Joachim; Polishchuk, Iuliia; Ross, Rachel J.; Whyte, Andrew; Lautens, Mark
Enantio- and diastereoselective conjugate borylation/Mannich cyclization
Chemical Science, 2020, 11, 5716-5723
1558076 CIFC34 H72 B4 Dy2 O2P -110.0067; 14.2962; 16.3689
99.987; 105.704; 107.788
2061He, Mian; Guo, Fu-Sheng; Tang, Jinkui; Mansikkamäki, Akseli; Layfield, Richard A.
Fulvalene as a platform for the synthesis of a dimetallic dysprosocenium single-molecule magnet.
Chemical science, 2020, 11, 5745-5752
1558077 CIFC46 H78 B2 Dy2P 1 21/n 113.3199; 18.1439; 19.6411
90; 107.366; 90
4530.39He, Mian; Guo, Fu-Sheng; Tang, Jinkui; Mansikkamäki, Akseli; Layfield, Richard A.
Fulvalene as a platform for the synthesis of a dimetallic dysprosocenium single-molecule magnet.
Chemical science, 2020, 11, 5745-5752
1558078 CIFC70 H74 B2 Dy2 F20P 1 21/n 118.1029; 20.9327; 19.4229
90; 111.812; 90
6833.2He, Mian; Guo, Fu-Sheng; Tang, Jinkui; Mansikkamäki, Akseli; Layfield, Richard A.
Fulvalene as a platform for the synthesis of a dimetallic dysprosocenium single-molecule magnet.
Chemical science, 2020, 11, 5745-5752
1558079 CIFC56 H128 Ce K N16 P4P -113.16; 13.956; 23.75
74.835; 81.559; 65.275
3820.6Rice, Natalie T.; Popov, Ivan A.; Russo, Dominic R.; Gompa, Thaige P.; Ramanathan, Arun; Bacsa, John; Batista, Enrique R.; Yang, Ping; La Pierre, Henry S.
Comparison of tetravalent cerium and terbium ions in a conserved, homoleptic imidophosphorane ligand field.
Chemical science, 2020, 11, 6149-6159
1558080 CIFC56 H128 Ce N16 P4I -413.3726; 13.3726; 21.0511
90; 90; 90
3764.5Rice, Natalie T.; Popov, Ivan A.; Russo, Dominic R.; Gompa, Thaige P.; Ramanathan, Arun; Bacsa, John; Batista, Enrique R.; Yang, Ping; La Pierre, Henry S.
Comparison of tetravalent cerium and terbium ions in a conserved, homoleptic imidophosphorane ligand field.
Chemical science, 2020, 11, 6149-6159
1558081 CIFC50 H46 Ag2 B2 F8 N10 O4P 1 21/c 111.76962; 15.5527; 14.3675
90; 100.026; 90
2589.8Wang, Shi; Bai, Dongya; Wang, Yanbo; Fu, Jiya; Zhu, Junyan; Fang, Xiaomin
Hierarchical self-assembly of helical coordination polymers and formation of a lamellar structure via the cooperativity of two-step Ag(i) coordination and π-π interactions.
Nanoscale, 2020, 12, 10972-10976
1558082 CIFC38 H50 Co N P2 SP 1 21/n 114.5788; 14.6329; 16.7346
90; 96.683; 90
3545.7Foley, Bryan J.; Palit, Chandra Mouli; Bhuvanesh, Nattamai; Zhou, Jia; Ozerov, Oleg V.
Concerted aryl-sulfur reductive elimination from PNP pincer-supported Co(iii) and subsequent Co(i)/Co(iii) comproportionation.
Chemical science, 2020, 11, 6075-6084
1558083 CIFC33 H47 Co N P2P 1 21/c 115.273; 10.83; 18.993
90; 98.062; 90
3110.5Foley, Bryan J.; Palit, Chandra Mouli; Bhuvanesh, Nattamai; Zhou, Jia; Ozerov, Oleg V.
Concerted aryl-sulfur reductive elimination from PNP pincer-supported Co(iii) and subsequent Co(i)/Co(iii) comproportionation.
Chemical science, 2020, 11, 6075-6084
1558084 CIFC34 H48 Co N O2 P2C 1 2/c 133.34; 13.858; 14.143
90; 99.023; 90
6454Foley, Bryan J.; Palit, Chandra Mouli; Bhuvanesh, Nattamai; Zhou, Jia; Ozerov, Oleg V.
Concerted aryl-sulfur reductive elimination from PNP pincer-supported Co(iii) and subsequent Co(i)/Co(iii) comproportionation.
Chemical science, 2020, 11, 6075-6084
1558085 CIFC45 H48 Cl2 Co2 N4 O12C 1 2/c 118.88; 7.915; 30.41
90; 98.22; 90
4498Chen, Xin-Ran; Zhang, Shuo-Qing; Meyer, Tjark H.; Yang, Chun-Hui; Zhang, Qin-Hao; Liu, Ji-Ren; Xu, Hua-Jian; Cao, Fa-He; Ackermann, Lutz; Hong, Xin
Carboxylate breaks the arene C‒H bond via a hydrogen-atom-transfer mechanism in electrochemical cobalt catalysis
Chemical Science, 2020, 11, 5790-5796
1558086 CIFC124 H150 Au13 P3 Pd S7P -117.1801; 17.7175; 22.9577
95.508; 90.634; 106.355
6669Fu, Xuemei; Lin, Xinzhang; Ren, Xiuqing; Wu, Ren'an; Liu, Chao; Huang, Jiahui
The synthesis and structure of the [PdAu<sub>13</sub>(PPh<sub>3</sub>)<sub>3</sub>(SR)<sub>7</sub>]<sup>+</sup> nanocluster.
Nanoscale, 2020, 12, 11825-11829
1558087 CIFC5 H8 N2 O2P 21 21 217.1989; 7.2267; 13.0042
90; 90; 90
676.53Wang, Yunzhong; Tang, Saixing; Wen, Yating; Zheng, Shuyuan; Yang, Bing; Yuan, Wang Zhang
Nonconventional luminophores with unprecedented efficiencies and color-tunable afterglows
Materials Horizons, 2020, 7, 2105-2112
1558088 CIFC3 H4 N2 O2C 1 2/c 19.3446; 12.244; 7.3458
90; 105.194; 90
811.1Wang, Yunzhong; Tang, Saixing; Wen, Yating; Zheng, Shuyuan; Yang, Bing; Yuan, Wang Zhang
Nonconventional luminophores with unprecedented efficiencies and color-tunable afterglows
Materials Horizons, 2020, 7, 2105-2112
1558089 CIFC8 H10 N4 O4P 1 21/c 15.8982; 12.4995; 14.3372
90; 114.292; 90
963.42Wang, Yunzhong; Tang, Saixing; Wen, Yating; Zheng, Shuyuan; Yang, Bing; Yuan, Wang Zhang
Nonconventional luminophores with unprecedented efficiencies and color-tunable afterglows
Materials Horizons, 2020, 7, 2105-2112
1558090 CIFC7 H8 N4 O4P 1 21/n 19.597; 17.769; 11.34
90; 114.24; 90
1763.3Wang, Yunzhong; Tang, Saixing; Wen, Yating; Zheng, Shuyuan; Yang, Bing; Yuan, Wang Zhang
Nonconventional luminophores with unprecedented efficiencies and color-tunable afterglows
Materials Horizons, 2020, 7, 2105-2112
1558091 CIF
HKL
Paper
C5 H9 Cl N2P 21 21 216.3076; 9.549; 11.3951
90; 90; 90
686.34Anderson, Grace; Mirjafari, Arsalan; Zeller, Matthias; Hillesheim, Patrick C.
2,3-Dimethyl-1<i>H</i>-imidazol-3-ium chloride
IUCrData, 2020, 5, x200660
1558092 CIFC33 H28 F6 N2 S2P 1 21 110.6734; 13.492; 10.8926
90; 106.158; 90
1506.63Yu, Zhang-Long; Cheng, Yong-Feng; Jiang, Na-Chuan; Wang, Jian; Fan, Li-Wen; Yuan, Yue; Li, Zhong-Liang; Gu, Qiang-Shuai; Liu, Xin-Yuan
Desymmetrization of unactivated bis-alkenes via chiral Brønsted acid-catalysed hydroamination
Chemical Science, 2020, 11, 5987-5993
1558093 CIFC45 H44 N2 O4P 1 21/c 127.3782; 16.4038; 8.0743
90; 96.106; 90
3605.6Samanta, Samaresh; Ray, Subir Kumar; Deolka, Shubham; Saha, Sudipta; K R, Pradeep; Bhowal, Rohit; Ghosh, Nirmalya; Chaudhuri, Debangshu
Safeguarding long-lived excitons from excimer traps in H-aggregated dye-assemblies.
Chemical science, 2020, 11, 5710-5715
1558094 CIFC92 H76 N6 O8P -111.2545; 18.0672; 20.425
114.844; 101.984; 90.435
3665.6Xu, Jianbin; Liang, Lusheng; Mai, Chi-Lun; Zhang, Zilong; Zhou, Qin; Xiong, Qiu; Zhang, Zhuangzhuang; Deng, Longhui; Gao, Peng
Lewis-base containing spiro type hole transporting materials for high-performance perovskite solar cells with efficiency approaching 20.
Nanoscale, 2020, 12, 13157-13164
1558095 CIFC24 H54 Ag6 O46 S6 Si W12P n a 2127.1669; 18.3273; 13.8912
90; 90; 90
6916.4Hu, Ting; Hu, Chunli; Li, Yuhang; Meng, Lingyi; Xie, Yiming; Liao, Mingyue; Zhong, Guiming; Lu, Can-Zhong
Synthesis and characterization of a nanocluster-based silver(i) tert-butylethynide compound with a large second-harmonic generation response.
Nanoscale, 2020, 12, 11847-11857
1558097 CIFC45 H31 N5 SP -17.8139; 9.9797; 21.6351
87.227; 84.36; 86.871
1674.87Luo, Qing; Li, Lin; Ma, Huili; Lv, Chunyan; Jiang, Xueyan; Gu, Xinggui; An, Zhongfu; Zou, Bo; Zhang, Cheng; Zhang, Yujian
Deep-red fluorescence from isolated dimers: a highly bright excimer and imaging in vivo
Chemical Science, 2020, 11, 6020-6025
1558098 CIFC76 H144 Co2 K2 N4 O15 P8P -113.7131; 15.2042; 25.3794
74.859; 78.818; 65.926
4640.57Piesch, Martin; Seidl, Michael; Scheer, Manfred
Transformations of the cyclo-P4 ligand in [Cp′′′Co(η4-P4)]
Chemical Science, 2020, 11, 6745-6751
1558099 CIFC43 H82 Co Li N2 O7 P4P b c a17.8715; 22.5218; 24.946
90; 90; 90
10040.7Piesch, Martin; Seidl, Michael; Scheer, Manfred
Transformations of the cyclo-P4 ligand in [Cp′′′Co(η4-P4)]
Chemical Science, 2020, 11, 6745-6751
1558100 CIFC53.5 H99 Co2 Li O3.25 P8P 1 21/c 131.947; 15.571; 12.6636
90; 91.67; 90
6296.8Piesch, Martin; Seidl, Michael; Scheer, Manfred
Transformations of the cyclo-P4 ligand in [Cp′′′Co(η4-P4)]
Chemical Science, 2020, 11, 6745-6751
1558101 CIFC25 H50 Co Na O5 P4P -18.8103; 10.6602; 17.7138
78.926; 89.741; 85.158
1626.75Piesch, Martin; Seidl, Michael; Scheer, Manfred
Transformations of the cyclo-P4 ligand in [Cp′′′Co(η4-P4)]
Chemical Science, 2020, 11, 6745-6751
1558102 CIFC80 H156 Co2 Li2 O17.5 P8 Si2P -114.474; 18.2968; 19.7326
87.037; 77.66; 86.306
5090.5Piesch, Martin; Seidl, Michael; Scheer, Manfred
Transformations of the cyclo-P4 ligand in [Cp′′′Co(η4-P4)]
Chemical Science, 2020, 11, 6745-6751
1558103 CIFC53 H106 Co2 Li O6 P8 SiP -114.2675; 15.0423; 18.2337
102.047; 94.044; 114.602
3424.69Piesch, Martin; Seidl, Michael; Scheer, Manfred
Transformations of the cyclo-P4 ligand in [Cp′′′Co(η4-P4)]
Chemical Science, 2020, 11, 6745-6751
1558104 CIFC29 H38 O5P 21 21 2110.047; 11.0487; 24.242
90; 90; 90
2691Li, Xin; He, Songtao; Song, Qiuling
Enantio- and diastereoselective diarylmethylation of 1,3-dicarbonyl compounds
Chemical Science, 2020, 11, 5969-5973
1558105 CIFC33 H37 N O7P 21 21 2110.4833; 14.435; 21.245
90; 90; 90
3214.9Li, Xin; He, Songtao; Song, Qiuling
Enantio- and diastereoselective diarylmethylation of 1,3-dicarbonyl compounds
Chemical Science, 2020, 11, 5969-5973
1558106 CIFC31 H39 O4 SC 1 2 123.808; 10.36; 11.8065
90; 95.046; 90
2900.8Li, Xin; He, Songtao; Song, Qiuling
Enantio- and diastereoselective diarylmethylation of 1,3-dicarbonyl compounds
Chemical Science, 2020, 11, 5969-5973
1558113 CIFC6 H20.8 Gd2 N2 O19.4 P6P -19.756; 10.186; 12.84
98.371; 106.552; 90.234
1208.7Mendes, Ricardo F.; Barbosa, Paula; Domingues, Eddy M.; Silva, Patrícia; Figueiredo, Filipe; Almeida Paz, Filipe A.
Enhanced proton conductivity in a layered coordination polymer.
Chemical science, 2020, 11, 6305-6311
1558114 CIFC35 H59 N2 P Si2 UC 1 c 120.0922; 11.4805; 18.359
90; 120.155; 90
3661.7Ward, Robert J.; Rungthanaphatsophon, Pokpong; Rosal, Iker del; Kelley, Steven P.; Maron, Laurent; Walensky, Justin R.
Divergent uranium- versus phosphorus-based reduction of Me3SiN3 with steric modification of phosphido ligands
Chemical Science, 2020, 11, 5830-5835
1558115 CIFC35 H58 N2 P Si2 UP -19.8231; 11.2078; 19.039
82.061; 76.9; 65.055
1849Ward, Robert J.; Rungthanaphatsophon, Pokpong; Rosal, Iker del; Kelley, Steven P.; Maron, Laurent; Walensky, Justin R.
Divergent uranium- versus phosphorus-based reduction of Me3SiN3 with steric modification of phosphido ligands
Chemical Science, 2020, 11, 5830-5835
1558116 CIFC33 H56 N P Si2 UP -110.6409; 16.5027; 20.4856
85.363; 89.696; 85.317
3573.6Ward, Robert J.; Rungthanaphatsophon, Pokpong; Rosal, Iker del; Kelley, Steven P.; Maron, Laurent; Walensky, Justin R.
Divergent uranium- versus phosphorus-based reduction of Me3SiN3 with steric modification of phosphido ligands
Chemical Science, 2020, 11, 5830-5835
1558117 CIFC73 H70 Cl2 Fe2 N8 O12 S12P -111.3618; 12.1577; 18.2103
98.637; 99.864; 113.651
2202.3Qiu, Ya-Ru; Cui, Long; Cai, Pei-Yu; Yu, Fei; Kurmoo, Mohamedally; Leong, Chanel F.; D'Alessandro, Deanna M; Zuo, Jing-Lin
Enhanced dielectricity coupled to spin-crossover in a one-dimensional polymer iron(ii) incorporating tetrathiafulvalene.
Chemical science, 2020, 11, 6229-6235
1558118 CIFC36 H34 Fe N4 O6 S6P -111.36; 12.085; 16.842
91.22; 109.72; 111.47
1998Qiu, Ya-Ru; Cui, Long; Cai, Pei-Yu; Yu, Fei; Kurmoo, Mohamedally; Leong, Chanel F.; D'Alessandro, Deanna M; Zuo, Jing-Lin
Enhanced dielectricity coupled to spin-crossover in a one-dimensional polymer iron(ii) incorporating tetrathiafulvalene.
Chemical science, 2020, 11, 6229-6235
1558119 CIFC28 H31 N3 O6 S6P 1 21/c 14.795; 25.807; 26.902
90; 91.827; 90
3327.3Qiu, Ya-Ru; Cui, Long; Cai, Pei-Yu; Yu, Fei; Kurmoo, Mohamedally; Leong, Chanel F.; D'Alessandro, Deanna M; Zuo, Jing-Lin
Enhanced dielectricity coupled to spin-crossover in a one-dimensional polymer iron(ii) incorporating tetrathiafulvalene.
Chemical science, 2020, 11, 6229-6235
1558120 CIFC25 H31 B F2 N2 OP -17.9871; 15.6608; 19.341
74.494; 87.66; 76.49
2266.1Clark, Ryan; Nawawi, Mohd A.; Dobre, Ana; Pugh, David; Liu, Qingshan; Ivanov, Aleksandar P.; White, Andrew J. P.; Edel, Joshua B.; Kuimova, Marina K.; McIntosh, Alastair J. S.; Welton, Tom
The effect of structural heterogeneity upon the microviscosity of ionic liquids.
Chemical science, 2020, 11, 6121-6133
1558121 CIFC24 H22 F6 N2 O4 S4P -113.7964; 14.4462; 14.8908
103.965; 99.568; 104.025
2713.5Clark, Ryan; Nawawi, Mohd A.; Dobre, Ana; Pugh, David; Liu, Qingshan; Ivanov, Aleksandar P.; White, Andrew J. P.; Edel, Joshua B.; Kuimova, Marina K.; McIntosh, Alastair J. S.; Welton, Tom
The effect of structural heterogeneity upon the microviscosity of ionic liquids.
Chemical science, 2020, 11, 6121-6133
1558122 CIFC22 H23 Cl2 I N2 S2P -17.9187; 12.1261; 13.0689
82.67; 78.619; 79.315
1203.5Clark, Ryan; Nawawi, Mohd A.; Dobre, Ana; Pugh, David; Liu, Qingshan; Ivanov, Aleksandar P.; White, Andrew J. P.; Edel, Joshua B.; Kuimova, Marina K.; McIntosh, Alastair J. S.; Welton, Tom
The effect of structural heterogeneity upon the microviscosity of ionic liquids.
Chemical science, 2020, 11, 6121-6133
1558123 CIFC21 H21 B0.43 F1.72 I0.57 N2 S2C 1 2/c 117.7575; 19.0198; 15.2682
90; 114.649; 90
4686.9Clark, Ryan; Nawawi, Mohd A.; Dobre, Ana; Pugh, David; Liu, Qingshan; Ivanov, Aleksandar P.; White, Andrew J. P.; Edel, Joshua B.; Kuimova, Marina K.; McIntosh, Alastair J. S.; Welton, Tom
The effect of structural heterogeneity upon the microviscosity of ionic liquids.
Chemical science, 2020, 11, 6121-6133
1558124 CIFC22 H21 F3 N2 O3 S3P 1 21/n 113.3057; 12.066; 14.7108
90; 108.185; 90
2243.81Clark, Ryan; Nawawi, Mohd A.; Dobre, Ana; Pugh, David; Liu, Qingshan; Ivanov, Aleksandar P.; White, Andrew J. P.; Edel, Joshua B.; Kuimova, Marina K.; McIntosh, Alastair J. S.; Welton, Tom
The effect of structural heterogeneity upon the microviscosity of ionic liquids.
Chemical science, 2020, 11, 6121-6133
1558125 CIFC23 H21 F6 N3 O4 S4I 1 2/a 114.7979; 21.9313; 18.008
90; 112.854; 90
5385.48Clark, Ryan; Nawawi, Mohd A.; Dobre, Ana; Pugh, David; Liu, Qingshan; Ivanov, Aleksandar P.; White, Andrew J. P.; Edel, Joshua B.; Kuimova, Marina K.; McIntosh, Alastair J. S.; Welton, Tom
The effect of structural heterogeneity upon the microviscosity of ionic liquids.
Chemical science, 2020, 11, 6121-6133
1558126 CIFC21 H21 F6 N2 P S2C 1 2/c 117.6864; 18.688; 15.795
90; 114.792; 90
4739.5Clark, Ryan; Nawawi, Mohd A.; Dobre, Ana; Pugh, David; Liu, Qingshan; Ivanov, Aleksandar P.; White, Andrew J. P.; Edel, Joshua B.; Kuimova, Marina K.; McIntosh, Alastair J. S.; Welton, Tom
The effect of structural heterogeneity upon the microviscosity of ionic liquids.
Chemical science, 2020, 11, 6121-6133
1558127 CIFC33 H37 N OP -110.7051; 10.9218; 12.9779
81.166; 67.584; 72.381
1335.66Shankar, Majji; Rit, Raja K.; Sau, Somratan; Mukherjee, Kallol; Gandon, Vincent; Sahoo, Akhila K.
Double annulation of ortho- and peri-C‒H bonds of fused (hetero)arenes to unusual oxepino-pyridines
Chemical Science, 2020, 11, 10770-10777
1558128 CIFC28.48 H23 Cl N O2P 1 21/n 114.5781; 9.3138; 18.8307
90; 94.961; 90
2547.21Shankar, Majji; Rit, Raja K.; Sau, Somratan; Mukherjee, Kallol; Gandon, Vincent; Sahoo, Akhila K.
Double annulation of ortho- and peri-C‒H bonds of fused (hetero)arenes to unusual oxepino-pyridines
Chemical Science, 2020, 11, 10770-10777
1558129 CIFC41 H45 N OP 1 21/n 115.001; 10.5247; 22.239
90; 94.419; 90
3500.7Shankar, Majji; Rit, Raja K.; Sau, Somratan; Mukherjee, Kallol; Gandon, Vincent; Sahoo, Akhila K.
Double annulation of ortho- and peri-C‒H bonds of fused (hetero)arenes to unusual oxepino-pyridines
Chemical Science, 2020, 11, 10770-10777
1558130 CIFC16 H8 O12 UC 1 2/c 117.7447; 12.5982; 9.2934
90; 114.702; 90
1887.4Halter, Dominik P.; Klein, Ryan A.; Boreen, Michael; Trump, Benjamin A.; Brown, Craig M.; Long, Jeffrey R.
Self-Adjusting Binding Pockets Enhance H2 and CH4 Adsorption in a Uranium-Based Metal‒Organic Framework
Chemical Science, 2020
1558131 CIFC28 H24 Cl N2 O5P 4/n :226.429; 26.429; 7.867
90; 90; 90
5495Duan, Wen-Di; Zhang, Yu-Fang; Hu, Youhong
NaH Promoted One-Pot Tandem Reactions of 3-(1-Alkynyl) Chromones to Form 2-Nitrogen-Substituted Xanthones
ACS Omega, 2020, 5, 13454-13461
1558132 CIFC20 H24 Cl N O4P 1 21/n 122.7581; 7.6989; 23.0256
90; 113.649; 90
3695.56Xu, Beibei; Jiang, Xunjin; Xiong, Jing; Lan, Jun; Tian, Yuan; Zhong, Linhai; Wang, Xinquan; Xu, Ning; Cao, Hanwei; Zhang, Wenqing; Zhang, Hao; Hong, Xiaoting; Zhan, Yan-Yan; Zhang, Yandong; Hu, Tianhui
Structure-Activity Relationship Study Enables the Discovery of a Novel Berberine Analogue as RXRα Activator to Inhibit Colon Cancer.
Journal of medicinal chemistry, 2020
1558133 CIFC20 H26 N0 O5 SP 1 21 16.703; 8.4049; 17.5344
90; 98.188; 90
977.78Zhao, Zhifei; Bagdi, Prasanta Ray; Yang, Shuang; Liu, Jinggong; Cotman, Andrej Emanuel; Xu, Weici; Fang, Xinqiang
Correction to Stereodivergent Access to Enantioenriched Epoxy Alcohols with Three Stereogenic Centers via Ruthenium-Catalyzed Transfer Hydrogenation
Organic Letters, 2020
1558134 CIFC13 H16 O2P 21 21 215.5579; 7.7831; 25.2947
90; 90; 90
1094.19Zhao, Zhifei; Bagdi, Prasanta Ray; Yang, Shuang; Liu, Jinggong; Cotman, Andrej Emanuel; Xu, Weici; Fang, Xinqiang
Correction to Stereodivergent Access to Enantioenriched Epoxy Alcohols with Three Stereogenic Centers via Ruthenium-Catalyzed Transfer Hydrogenation
Organic Letters, 2020
1558135 CIFC18 H32 Cl Cu N7 O4C 1 c 19.682; 18.886; 24.789
90; 99.902; 90
4465Martínez-Camarena, Álvaro; Sánchez-Murcia, Pedro A; Blasco, Salvador; González, Leticia; García-España, Enrique
Unveiling the reaction mechanism of novel copper N-alkylated tetra-azacyclophanes with outstanding superoxide dismutase activity.
Chemical communications (Cambridge, England), 2020, 56, 7511-7514
1558136 CIFC32 H38 Au F6 Fe N2 O5 SbP 1 21/n 112.4358; 18.8623; 15.7372
90; 89.999; 90
3691.4Ponduru, Tharun Teja; Wang, Guocang; Manoj, Sai; Pan, Sudip; Zhao, Lili; Frenking, Gernot; Dias, H. V. Rasika
Synthesis and characterization of heterometallic complexes involving coinage metals and isoelectronic Fe(CO)<sub>5</sub>, [Mn(CO)<sub>5</sub>]<sup>-</sup> and [Fe(CO)<sub>4</sub>CN]<sup>-</sup> ligands.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 8566-8581
1558137 CIFC27 H35 Au F6 Fe N O5 SbP 1 21/n 114.2376; 15.3986; 14.8972
90; 98.783; 90
3227.8Ponduru, Tharun Teja; Wang, Guocang; Manoj, Sai; Pan, Sudip; Zhao, Lili; Frenking, Gernot; Dias, H. V. Rasika
Synthesis and characterization of heterometallic complexes involving coinage metals and isoelectronic Fe(CO)<sub>5</sub>, [Mn(CO)<sub>5</sub>]<sup>-</sup> and [Fe(CO)<sub>4</sub>CN]<sup>-</sup> ligands.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 8566-8581
1558138 CIFC36 H46 Au Mn N2 O6P b c m8.6463; 19.4473; 21.4257
90; 90; 90
3602.7Ponduru, Tharun Teja; Wang, Guocang; Manoj, Sai; Pan, Sudip; Zhao, Lili; Frenking, Gernot; Dias, H. V. Rasika
Synthesis and characterization of heterometallic complexes involving coinage metals and isoelectronic Fe(CO)<sub>5</sub>, [Mn(CO)<sub>5</sub>]<sup>-</sup> and [Fe(CO)<sub>4</sub>CN]<sup>-</sup> ligands.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 8566-8581
1558139 CIFC32 H33 Au Mn O5 PP -110.8061; 11.9033; 13.6638
82.628; 78.028; 64.197
1546.5Ponduru, Tharun Teja; Wang, Guocang; Manoj, Sai; Pan, Sudip; Zhao, Lili; Frenking, Gernot; Dias, H. V. Rasika
Synthesis and characterization of heterometallic complexes involving coinage metals and isoelectronic Fe(CO)<sub>5</sub>, [Mn(CO)<sub>5</sub>]<sup>-</sup> and [Fe(CO)<sub>4</sub>CN]<sup>-</sup> ligands.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 8566-8581
1558140 CIFC36 H46 Ag Mn N2 O6P b c m8.6971; 19.4845; 21.3902
90; 90; 90
3624.8Ponduru, Tharun Teja; Wang, Guocang; Manoj, Sai; Pan, Sudip; Zhao, Lili; Frenking, Gernot; Dias, H. V. Rasika
Synthesis and characterization of heterometallic complexes involving coinage metals and isoelectronic Fe(CO)<sub>5</sub>, [Mn(CO)<sub>5</sub>]<sup>-</sup> and [Fe(CO)<sub>4</sub>CN]<sup>-</sup> ligands.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 8566-8581
1558141 CIFC33 H40 Cl2 Cu Fe N3 O4P 1 21/n 111.1739; 18.4203; 18.3635
90; 106.685; 90
3620.6Ponduru, Tharun Teja; Wang, Guocang; Manoj, Sai; Pan, Sudip; Zhao, Lili; Frenking, Gernot; Dias, H. V. Rasika
Synthesis and characterization of heterometallic complexes involving coinage metals and isoelectronic Fe(CO)<sub>5</sub>, [Mn(CO)<sub>5</sub>]<sup>-</sup> and [Fe(CO)<sub>4</sub>CN]<sup>-</sup> ligands.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 8566-8581
1558142 CIFC53 H75 N2 O2 UP 1 21/c 120.552; 11.9252; 21.1347
90; 112.708; 90
4778.3Boreen, Michael A.; Gould, Colin A.; Booth, Corwin H.; Hohloch, Stephan; Arnold, John
Structure and magnetism of a tetrahedral uranium(iii) β-diketiminate complex.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 7938-7944
1558143 CIFC85 H123 I2 N4 O2 U2P -112.2023; 16.5876; 22.5734
75.346; 80.632; 69.918
4137.1Boreen, Michael A.; Gould, Colin A.; Booth, Corwin H.; Hohloch, Stephan; Arnold, John
Structure and magnetism of a tetrahedral uranium(iii) β-diketiminate complex.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 7938-7944
1558144 CIFC23 H17 Cl N2 O3P 1 21/c 114.9291; 10.5173; 14.418
90; 111.081; 90
2112.31Husain, Ali; Ganesan, Asaithampi; Machacek, Miloslav; Cerveny, Lukas; Kubat, Pavel; Ghazal, Basma; Zimcik, Petr; Makhseed, Saad
Dually directional glycosylated phthalocyanines as extracellular red-emitting fluorescent probes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 9605-9617
1558145 CIFC46 H36 N4 O6P -18.4034; 10.6002; 12.8112
65.879; 83.922; 82.056
1030Husain, Ali; Ganesan, Asaithampi; Machacek, Miloslav; Cerveny, Lukas; Kubat, Pavel; Ghazal, Basma; Zimcik, Petr; Makhseed, Saad
Dually directional glycosylated phthalocyanines as extracellular red-emitting fluorescent probes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 9605-9617
1558146 CIFC23 H18 N2 O3P -110.4756; 11.1851; 11.4936
101.408; 107.744; 117.153
1047.2Husain, Ali; Ganesan, Asaithampi; Machacek, Miloslav; Cerveny, Lukas; Kubat, Pavel; Ghazal, Basma; Zimcik, Petr; Makhseed, Saad
Dually directional glycosylated phthalocyanines as extracellular red-emitting fluorescent probes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 9605-9617
1558147 CIFC8 H7 N3 SP 1 21/c 111.1251; 7.5242; 11.194
90; 115.098; 90
848.55Manna, Amit Kumar; Chowdhury, Shubhamoy; Patra, Goutam K.
Combined experimental and theoretical studies on a phenyl thiadiazole-based novel turn-on fluorescent colorimetric Schiff base chemosensor for the selective and sensitive detection of Al3+
New Journal of Chemistry, 2020, 44, 10819-10832
1558148 CIFC16 H26 O3P 21 21 218.3643; 9.9485; 17.7102
90; 90; 90
1473.71Lydon, Christina A.; Mathivathanan, Logesh; Sanchez, Juanita; Dos Santos, Larissa A. H.; Sauvage, Thomas; Gunasekera, Sarath P.; Paul, Valerie J.; Berry, John P.
Eudesmacarbonate, a Eudesmane-Type Sesquiterpene from a Marine Filamentous Cyanobacterial Mat (Oscillatoriales) in the Florida Keys.
Journal of natural products, 2020
1558149 CIFC28 H24 Co N2 O10 S2C 1 2/c 120.1441; 12.2778; 11.4937
90; 92.993; 90
2838.8Yang, Chun; Cai, Wen-Jing; Yu, Bin-Bin; Qiu, Hong; Li, Meng-Li; Zhu, Lian-Wen; Yan, Zheng; Hou, Lei; Wang, Yao-Yu
Performance enhancement of oxygen evolution reaction through incorporating bimetallic electrocatalysts in two-dimensional metal‒organic frameworks
Catalysis Science & Technology, 2020, 10, 3897-3903
1558150 CIFC28 H24 Co0.79 Fe0.21 N2 O10 S2C 1 2/c 120.1868; 12.2668; 11.4817
90; 92.862; 90
2839.64Yang, Chun; Cai, Wen-Jing; Yu, Bin-Bin; Qiu, Hong; Li, Meng-Li; Zhu, Lian-Wen; Yan, Zheng; Hou, Lei; Wang, Yao-Yu
Performance enhancement of oxygen evolution reaction through incorporating bimetallic electrocatalysts in two-dimensional metal‒organic frameworks
Catalysis Science & Technology, 2020, 10, 3897-3903
1558151 CIFC28 H24 Co0.29 N2 Ni0.71 O10 S2C 1 2/c 120.1616; 12.1398; 11.4274
90; 92.792; 90
2793.63Yang, Chun; Cai, Wen-Jing; Yu, Bin-Bin; Qiu, Hong; Li, Meng-Li; Zhu, Lian-Wen; Yan, Zheng; Hou, Lei; Wang, Yao-Yu
Performance enhancement of oxygen evolution reaction through incorporating bimetallic electrocatalysts in two-dimensional metal‒organic frameworks
Catalysis Science & Technology, 2020, 10, 3897-3903
1558152 CIFC31 H34 O4P -17.8821; 12.0559; 14.7116
86.518; 74.563; 78.674
1321.25Xu, Zhengshuai; Tang, Yitian; Shen, Chaoren; Zhang, Hongru; Gan, Yuxin; Ji, Xiaolei; Tian, Xinxin; Dong, Kaiwu
Nickel-catalyzed regio- and diastereoselective hydroarylative and hydroalkenylative cyclization of 1,6-dienes.
Chemical communications (Cambridge, England), 2020, 56, 7741-7744
1558153 CIFC25 H23 N O5 SP 1 21 15.9143; 12.5172; 14.5829
90; 97.421; 90
1070.54Tao, Mengna; Tu, Youshao; Liu, Yu; Wu, Haihong; Liu, Lu; Zhang, Junliang
Pd/Xiang-Phos-catalyzed enantioselective intermolecular carboheterofunctionalization under mild conditions.
Chemical science, 2020, 11, 6283-6288
1558154 CIFC17 H17 N O3 SP 21 21 218.9043; 10.7948; 31.6319
90; 90; 90
3040.46Tao, Mengna; Tu, Youshao; Liu, Yu; Wu, Haihong; Liu, Lu; Zhang, Junliang
Pd/Xiang-Phos-catalyzed enantioselective intermolecular carboheterofunctionalization under mild conditions.
Chemical science, 2020, 11, 6283-6288
1558155 CIFC98 H129 Cl4 Mn2 N7 O12 ZnP -114.1647; 15.302; 25.9901
88.142; 84.223; 66.438
5137.23Doistau, Benjamin; Benda, Lorien; Cantin, Jean-Louis; Cador, Olivier; Pointillart, Fabrice; Wernsdorfer, Wolfgang; Chamoreau, Lise-Marie; Marvaud, Valérie; Hasenknopf, Bernold; Vives, Guillaume
Dual switchable molecular tweezers incorporating anisotropic Mn<sup>III</sup>-salphen complexes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 8872-8882
1558156 CIFC194 H240 Cl4 Mn4 N17 O27 Zn3P -115.1358; 16.5212; 22.9401
89.629; 72.981; 73.972
5254.7Doistau, Benjamin; Benda, Lorien; Cantin, Jean-Louis; Cador, Olivier; Pointillart, Fabrice; Wernsdorfer, Wolfgang; Chamoreau, Lise-Marie; Marvaud, Valérie; Hasenknopf, Bernold; Vives, Guillaume
Dual switchable molecular tweezers incorporating anisotropic Mn<sup>III</sup>-salphen complexes.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 8872-8882
1558157 CIFC22 H30 N4 O8 ZnP -110.854; 14.735; 17.464
67.045; 79.81; 77.424
2497Wen, Yuehong; Liu, Qiang; Su, Shaodong; Yang, Yuying; Li, Xiaofang; Zhu, Qi-Long; Wu, Xintao
Coordination tailoring of water-labile 3D MOFs to fabricate ultrathin 2D MOF nanosheets.
Nanoscale, 2020, 12, 12767-12772
1558158 CIFC20 H28 O2P 21 21 218.5365; 12.2999; 16.448
90; 90; 90
1727.01Seijo, Lorenzo; Ondet, Pierrick; Olivero, Sandra; Duñach, Elisabet
Heterogeneous catalysis for the tandem cyclisation of unsaturated alcohols
New Journal of Chemistry, 2020, 44, 10479-10483
1558159 CIF
HKL
Paper
C25 H18 Cl F2 N5 SP 1 21/c 116.9376; 13.144; 10.6399
90; 92.891; 90
2365.72Alanazi, Saud A.; Abdel-Wahab, Bakr F.; Hegazy, Amany S.; Kariuki, Benson M.; El-Hiti, Gamal A.
2-[3-(4-Chlorophenyl)-5-(4-fluorophenyl)-4,5-dihydro-1<i>H</i>-pyrazol-1-yl]-5-[(4-fluorophenyl)diazenyl]-4-methylthiazole
IUCrData, 2020, 5, x200700
1558160 CIF
HKL
Paper
C16 H22 N4 O3 SP 1 21/n 110.882; 8.4029; 18.9678
90; 95.44; 90
1726.61Cyr, Noah; Zeller, Matthias; Hillesheim, Patrick C.; Mirjafari, Arsalan
2,3-Dimethyl-1<i>H</i>-imidazol-3-ium benzenesulfonate‒1,2-dimethyl-1<i>H</i>-imidazole co-crystal
IUCrData, 2020, 5, x200689
1558161 CIF
Paper
C12 H22 N2 O3 SP 1 n 110.2564; 6.5369; 10.9683
90; 95.067; 90
732.5Sarr, Bougar; Mbaye, Abdou; Touré, Assane; Diop, Cheikh Abdoul Khadir; Sidibé, Mamadou; Michaud, François
Dipropylammonium 4-aminobenzenesulfonate
IUCrData, 2020, 5, x200659
1558162 CIFC32 H44 O10P 21 21 218.4907; 9.263; 38.6476
90; 90; 90
3039.61Yu, Jin-Hai; Zhang, Hua; Zhou, Bin; Zimbres, Flavia M.; Dalal, Seema; Liu, Qun-Fang; Cassera, Maria B.; Yue, Jian-Min
Limonoids from <i>Cipadessa baccifera</i>.
Journal of natural products, 2020
1558163 CIFC20 H20 O8P 1 21/c 19.271; 9.6883; 19.4904
90; 92.098; 90
1749.46Lum, Kah Yean; Taki, Aya C.; Gasser, Robin B.; Tietjen, Ian; Ekins, Merrick G.; White, Jonathan M.; Addison, Russell S.; Hayes, Sasha; St John, James; Davis, Rohan A.
Comatulins A-E, Taurine-Conjugated Anthraquinones from the Australian Crinoid <i>Comatula rotalaria</i>.
Journal of natural products, 2020, 83, 1971-1979
1558164 CIFC16 H29 Cl F6 N2 O P Ru SbP 1 21/n 111.7394; 14.7656; 14.6955
90; 108.172; 90
2420.26González-Fernández, Rebeca; Álvarez, Daniel; Crochet, Pascale; Cadierno, Victorio; Menéndez, M. Isabel; López, Ramón
Catalytic hydration of cyanamides with phosphinous acid-based ruthenium(ii) and osmium(ii) complexes: scope and mechanistic insights
Catalysis Science & Technology, 2020, 10, 4084-4098
1558165 CIFC17 H31 Cl F6 N2 O P Ru SbP 1 21/n 18.3717; 21.574; 14.8558
90; 105.025; 90
2591.39González-Fernández, Rebeca; Álvarez, Daniel; Crochet, Pascale; Cadierno, Victorio; Menéndez, M. Isabel; López, Ramón
Catalytic hydration of cyanamides with phosphinous acid-based ruthenium(ii) and osmium(ii) complexes: scope and mechanistic insights
Catalysis Science & Technology, 2020, 10, 4084-4098
1558166 CIFC55 H49 Co N4 O3P -3 c 126.2516; 26.2516; 26.8975
90; 90; 120
16052.9Wu, Zhenqiang; Peng, Chi-How; Fu, Xuefeng
Tacticity control approached by visible-light induced organocobalt-mediated radical polymerization: the synthesis of crystalline poly(N,N-dimethylacrylamide) with high isotacticity
Polymer Chemistry, 2020, 11, 4387-4395
1558167 CIFC73 H57 Br2 Cl3 N2 Ni OP 1 21/c 126.3082; 13.2167; 19.661
90; 94.33; 90
6816.8Hu, Xiaoqiang; Wang, Chaoqun; Jian, Zhongbao
Comprehensive studies of the ligand electronic effect on unsymmetrical α-diimine nickel(ii) promoted ethylene (co)polymerizations
Polymer Chemistry, 2020, 11, 4005-4012
1558168 CIFC72 H52 Br2 F4 N2 Ni OP -111.6968; 14.6139; 20.2591
93.384; 95.778; 100.036
3382.3Hu, Xiaoqiang; Wang, Chaoqun; Jian, Zhongbao
Comprehensive studies of the ligand electronic effect on unsymmetrical α-diimine nickel(ii) promoted ethylene (co)polymerizations
Polymer Chemistry, 2020, 11, 4005-4012
1558171 CIFC13 H13 Bi S2P -14.0972; 10.591; 16.59
108.6; 94.491; 90.019
680Mukhopadhyay, Deb Pratim; Schleier, Domenik; Wirsing, Sara; Ramler, Jacqueline; Kaiser, Dustin; Reusch, Engelbert; Hemberger, Patrick; Preitschopf, Tobias; Krummenacher, Ivo; Engels, Bernd; Fischer, Ingo; Lichtenberg, Crispin
Methylbismuth: an Organometallic Bismuthinidene Biradical
Chemical Science, 2020
1558174 CIFC18 H18 N2 O2 SP 1 21/n 16.6095; 17.787; 14.0522
90; 103.1; 90
1609.03Pagire, Santosh K.; Kumagai, Naoya; Shibasaki, Masakatsu
Introduction of a 7-aza-6-MeO-indoline auxiliary in Lewis-acid/photoredox cooperative catalysis: highly enantioselective aminomethylation of α,β-unsaturated amides
Chemical Science, 2020, 11, 5168-5174
1558175 CIFC19 H23 N3 O2P 16.0571; 10.1647; 14.3715
103.628; 98.272; 101.112
827.01Pagire, Santosh K.; Kumagai, Naoya; Shibasaki, Masakatsu
Introduction of a 7-aza-6-MeO-indoline auxiliary in Lewis-acid/photoredox cooperative catalysis: highly enantioselective aminomethylation of α,β-unsaturated amides
Chemical Science, 2020, 11, 5168-5174
1558176 CIFC80 H87 Cu F6 N3 O5 P3P 1 21/c 121.7889; 16.4491; 24.0629
90; 106.505; 90
8269Pagire, Santosh K.; Kumagai, Naoya; Shibasaki, Masakatsu
Introduction of a 7-aza-6-MeO-indoline auxiliary in Lewis-acid/photoredox cooperative catalysis: highly enantioselective aminomethylation of α,β-unsaturated amides
Chemical Science, 2020, 11, 5168-5174
1558177 CIFC96 H74 Cl6P 1 21/n 113.9419; 18.9963; 14.6207
90; 97.9869; 90
3834.65Shudo, Hiroki; Kuwayama, Motonobu; Segawa, Yasutomo; Itami, Kenichiro
Synthesis of Cycloiptycenes from Carbon Nanobelt
Chemical Science, 2020
1558178 CIFC74 H84 O19R -3 :H31.0383; 31.0383; 11.8708
90; 90; 120
9903.9Shudo, Hiroki; Kuwayama, Motonobu; Segawa, Yasutomo; Itami, Kenichiro
Synthesis of Cycloiptycenes from Carbon Nanobelt
Chemical Science, 2020
1558179 CIFC201 H174 Cl6C 1 2/c 146.422; 7.7267; 46.356
90; 109.884; 90
15636Shudo, Hiroki; Kuwayama, Motonobu; Segawa, Yasutomo; Itami, Kenichiro
Synthesis of Cycloiptycenes from Carbon Nanobelt
Chemical Science, 2020
1558180 CIFC142.5 H106 O2P -111.0799; 15.4092; 16.833
111.731; 95.979; 99.11
2594.2Shudo, Hiroki; Kuwayama, Motonobu; Segawa, Yasutomo; Itami, Kenichiro
Synthesis of Cycloiptycenes from Carbon Nanobelt
Chemical Science, 2020
1558181 CIFC52 H83 Cl2 Cu N13 O9 SiP -18.9253; 15.5724; 25.2322
98.168; 91.134; 103.075
3376.5Peters, Anna D.; Borsley, Stefan; della Sala, Flavio; Cairns-Gibson, Dominic F.; Leonidou, Marios; Clayden, Jonathan; Whitehead, George F. S.; Vitorica-Yrzebal, Inigo; Takano, Eriko; Burthem, John; Cockroft, Scott Lee; Webb, Simon
Switchable foldamer ion channels with antibacterial activity
Chemical Science, 2020
1558182 CIFC53.81 H87.51 N13 O9.45 SiP -19.207; 15.6088; 23.6308
85.168; 79.223; 76.681
3243.35Peters, Anna D.; Borsley, Stefan; della Sala, Flavio; Cairns-Gibson, Dominic F.; Leonidou, Marios; Clayden, Jonathan; Whitehead, George F. S.; Vitorica-Yrzebal, Inigo; Takano, Eriko; Burthem, John; Cockroft, Scott Lee; Webb, Simon
Switchable foldamer ion channels with antibacterial activity
Chemical Science, 2020
1558183 CIFC53 H84 Cl Cu N13 O12 SiP 21 21 219.1099; 24.1351; 34.1137
90; 90; 90
7500.5Peters, Anna D.; Borsley, Stefan; della Sala, Flavio; Cairns-Gibson, Dominic F.; Leonidou, Marios; Clayden, Jonathan; Whitehead, George F. S.; Vitorica-Yrzebal, Inigo; Takano, Eriko; Burthem, John; Cockroft, Scott Lee; Webb, Simon
Switchable foldamer ion channels with antibacterial activity
Chemical Science, 2020
1558184 CIFC14 H14 O2P 1 21/a 112.7006; 10.0271; 20.1044
90; 106.525; 90
2454.55RESENDE, Pamela C. S.; COURI, Mara R. C.; MIGUEL, Fábio B.; CUIN, Alexandre
Analytical, Spectroscopic and Crystallographic Characterization of 3-[(2<i>E</i>)-3-Phenylprop-2-en-1-ylidene]pentane-2,4-dione
X-ray Structure Analysis Online, 2020, 36, 15-16
1558185 CIFC47 H37 Cl Cu F6 N2 O P3P 1 21/c 110.4786; 18.9864; 22.1096
90; 100.077; 90
4330.87Meyer, Marco; Brunner, Fabian; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Chimera Diimine Ligands in Emissive [Cu(P^P)(N^N)][PF6] Complexes
Inorganics, 2020, 8, 33
1558186 CIFC50 H41 Cl Cu F6 N2 O P3P -111.4363; 14.0871; 14.803
89.133; 68.457; 88.73
2217.62Meyer, Marco; Brunner, Fabian; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Chimera Diimine Ligands in Emissive [Cu(P^P)(N^N)][PF6] Complexes
Inorganics, 2020, 8, 33
1558187 CIFC29 H27 N O SnP 1 21/n 19.3351; 18.4709; 14.3598
90; 93.846; 90
2470.5Bender, Desiree N.; Lough, Alan J.; Wylie, R. Stephen; Gossage, Robert A.; Foucher, Daniel A.
Preparation and DFT Studies of κ2C,N-Hypercoordinated Oxazoline Organotins: Monomer Constructs for Stable Polystannanes
Inorganics, 2020, 8, 35
1558188 CIFC23 H22 Cl N O SnP -19.1303; 9.302; 24.2461
90.942; 91.775; 91.724
2056.99Bender, Desiree N.; Lough, Alan J.; Wylie, R. Stephen; Gossage, Robert A.; Foucher, Daniel A.
Preparation and DFT Studies of κ2C,N-Hypercoordinated Oxazoline Organotins: Monomer Constructs for Stable Polystannanes
Inorganics, 2020, 8, 35
1558189 CIFC17 H17 Br2 N O SnP 1 21/n 110.5295; 10.0336; 17.1396
90; 96.677; 90
1798.5Bender, Desiree N.; Lough, Alan J.; Wylie, R. Stephen; Gossage, Robert A.; Foucher, Daniel A.
Preparation and DFT Studies of κ2C,N-Hypercoordinated Oxazoline Organotins: Monomer Constructs for Stable Polystannanes
Inorganics, 2020, 8, 35
1558190 CIFC18 H19 Br2 N O SnP -18.453; 10.2368; 11.7987
93.059; 101.936; 108.325
940.5Bender, Desiree N.; Lough, Alan J.; Wylie, R. Stephen; Gossage, Robert A.; Foucher, Daniel A.
Preparation and DFT Studies of κ2C,N-Hypercoordinated Oxazoline Organotins: Monomer Constructs for Stable Polystannanes
Inorganics, 2020, 8, 35
1558191 CIFC30 H29 N O SnP 21 21 218.4502; 18.9557; 31.5231
90; 90; 90
5049.4Bender, Desiree N.; Lough, Alan J.; Wylie, R. Stephen; Gossage, Robert A.; Foucher, Daniel A.
Preparation and DFT Studies of κ2C,N-Hypercoordinated Oxazoline Organotins: Monomer Constructs for Stable Polystannanes
Inorganics, 2020, 8, 35
1558192 CIFC133 H101 Cl5 I3 N9 Ni12 O35P -119.422; 22.654; 25.321
115.783; 92.992; 106.118
9443Perlepe, Panagiota S.; Pantelis, Konstantinos N.; Cunha-Silva, Luís; Bekiari, Vlasoula; Escuer, Albert; Stamatatos, Theocharis C.
Rare Nuclearities in Ni(II) Cluster Chemistry: An Unprecedented {Ni12} Nanosized Cage from the Use of N-Naphthalidene-2-Amino-5-Chlorobenzoic Acid
Inorganics, 2020, 8, 32
1558193 CIFCu Ga S4 Zn2I -4 2 m5.3626; 5.3626; 10.5873
90; 90; 90
304.46Bindi, Luca; Jaszczak, John A.
Richardsite, Zn2CuGaS4, A New Gallium-Essential Member of the Stannite Group from the Gem Mines near Merelani, Tanzania
Minerals, 2020, 10, 467
1558194 CIFC23 H18 Br N O6P 1 21/n 19.4765; 9.2067; 24.1253
90; 92.1209; 90
2103.43Ryzhkova, Yuliya E.; Ryzhkov, Fedor V.; Elinson, Michail N.
3-(4-Bromophenyl)-4-{[3-hydroxy-6-(hydroxymethyl)-4-oxo-4H-pyran-2-yl](m-tolyl)methyl}isoxazol-5(2H)-one
Molbank, 2020, 2020, M1135
1558195 CIFC12 H36 Ag Br12 In N4P 1 2/c 18.4965; 7.8419; 26.1413
90; 90.318; 90
1741.73Connor, Bridget A.; Biega, Raisa-Ioana; Leppert, Linn; Karunadasa, Hemamala I.
Dimensional reduction of the small-bandgap double perovskite Cs<sub>2</sub>AgTlBr<sub>6</sub>.
Chemical science, 2020, 11, 7708-7715
1558196 CIFC10 H22 Ag Br8 N6 TlC 1 2/c 111.3098; 12.6075; 18.2063
90; 95.713; 90
2583.11Connor, Bridget A.; Biega, Raisa-Ioana; Leppert, Linn; Karunadasa, Hemamala I.
Dimensional reduction of the small-bandgap double perovskite Cs<sub>2</sub>AgTlBr<sub>6</sub>.
Chemical science, 2020, 11, 7708-7715
1558197 CIFC12 H36 Ag Br12 N4 TlP 1 2/c 18.4673; 7.8406; 26.1647
90; 90.312; 90
1737.01Connor, Bridget A.; Biega, Raisa-Ioana; Leppert, Linn; Karunadasa, Hemamala I.
Dimensional reduction of the small-bandgap double perovskite Cs<sub>2</sub>AgTlBr<sub>6</sub>.
Chemical science, 2020, 11, 7708-7715
1558198 CIFC16 H24 Ag Br7 Cs N2 TlP -17.8617; 7.8687; 23.0185
83.703; 85.727; 89.818
1411.41Connor, Bridget A.; Biega, Raisa-Ioana; Leppert, Linn; Karunadasa, Hemamala I.
Dimensional reduction of the small-bandgap double perovskite Cs<sub>2</sub>AgTlBr<sub>6</sub>.
Chemical science, 2020, 11, 7708-7715
1558199 CIFC18 H14.61 N2 O2P -18.1603; 9.806; 10.9374
92.13; 108.187; 114.618
741.61Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558200 CIFC18 H14.6 N2 O2P -18.18873; 9.82362; 10.94583
92.3016; 108.097; 114.537
746.66Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558201 CIFC18 H14.58 N2 O2P -18.20354; 9.82973; 10.95062
92.3825; 108.058; 114.49
749.11Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558202 CIFC18 H14.6 N2 O2P -18.23553; 9.85058; 10.96006
92.5489; 107.957; 114.434
754.73Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558203 CIFC18 H14.59 N2 O2P -18.17391; 9.8142; 10.94231
92.2144; 108.147; 114.571
744.1Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558204 CIFC18 H15.03 N2 O2P -18.12328; 9.8351; 10.91847
92.3839; 107.856; 114.498
741.07Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558205 CIFC18 H14.61 N2 O2P -18.21931; 9.84133; 10.95472
92.4662; 108.006; 114.464
751.94Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558206 CIFC18 H15.01 N2 O2P -18.13837; 9.845; 10.92312
92.4784; 107.824; 114.466
743.63Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558207 CIFC18 H15.02 N2 O2P -18.15433; 9.85391; 10.92795
92.5643; 107.788; 114.426
746.298Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558208 CIFC18 H15.02 N2 O2P -18.18944; 9.8706; 10.93717
92.7279; 107.74; 114.348
751.727Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558209 CIFC18 H15.02 N2 O2P -18.17154; 9.86186; 10.93238
92.6441; 107.766; 114.385
748.951Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558210 CIFC18 H15.02 N2 O2P -18.2084; 9.88002; 10.94248
92.814; 107.711; 114.311
754.705Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558211 CIFC18.01 H15.51 N2 O2P -18.09764; 9.8669; 10.89543
92.528; 107.588; 114.469
740.79Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558212 CIFC18 H15.5 N2 O2P -18.11309; 9.8742; 10.89995
92.6153; 107.553; 114.438
743.2Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558213 CIFC18.01 H15.51 N2 O2P -18.14797; 9.89332; 10.90921
92.7875; 107.497; 114.364
748.78Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558214 CIFC18.01 H15.51 N2 O2P -18.13025; 9.88487; 10.90533
92.7008; 107.519; 114.402
746.12Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558215 CIFC18.01 H15.51 N2 O2P -18.16783; 9.90151; 10.91446
92.8705; 107.486; 114.321
751.69Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558216 CIFC16.95 H14 N3.05 O2P -18.07384; 9.7536; 10.90755
92.9033; 107.326; 114.087
733.83Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558217 CIFC16.92 H14 N3.07 O2P -18.1172; 9.7795; 10.9256
93.2084; 107.177; 113.972
741.6Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558218 CIFC16.9 H14 N3.08 O2P -18.1338; 9.791; 10.934
93.322; 107.125; 113.929
744.78Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558219 CIFC16.96 H14 N3.04 O2P -18.10148; 9.7713; 10.9201
93.1101; 107.23; 114.004
738.97Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558220 CIFC16.97 H14 N3.01 O2P -18.0587; 9.7436; 10.9027
92.797; 107.379; 114.108
731.27Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558221 CIFC18.02 H15.52 N2 O2P -18.18898; 9.90985; 10.91962
92.962; 107.478; 114.277
754.69Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558222 CIFC16.53 H14 N3.47 O2P -17.9981; 9.7278; 10.8484
93.16; 106.919; 113.993
723.07Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558223 CIFC16.51 H14 N3.49 O2P -18.01758; 9.732; 10.86038
93.301; 106.87; 113.897
726.41Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558224 CIFC16.94 H14 N3.06 O2P -18.08726; 9.7628; 10.91257
93.0131; 107.272; 114.044
736.33Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558225 CIFC16.48 H14 N3.52 O2P -18.0515; 9.7483; 10.8766
93.548; 106.805; 113.77
732.23Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558226 CIFC16.49 H14 N3.51 O2P -18.0696; 9.7563; 10.8866
93.656; 106.798; 113.712
735.24Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558227 CIFC16.47 H14 N3.52 O2P -18.0903; 9.7624; 10.8911
93.754; 106.789; 113.675
737.88Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558228 CIFC16.51 H14 N3.49 O2P -18.03328; 9.7401; 10.8685
93.4267; 106.846; 113.829
729.18Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558229 CIFC17.6 H15.6 N2.4 O2P -18.0377; 9.8551; 10.8773
92.913; 107.077; 114.297
735.96Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558230 CIFC17.57 H15.57 N2.43 O2P -18.05644; 9.86768; 10.88249
92.9895; 107.093; 114.302
738.62Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558231 CIFC17.03 H15.03 N2.97 O2P -18.06741; 9.8484; 10.893
93.6858; 106.675; 113.951
741.35Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558232 CIFC17.56 H15.56 N2.44 O2P -18.09014; 9.88806; 10.89279
93.1584; 107.044; 114.243
744.09Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558233 CIFC17.54 H15.54 N2.46 O2P -18.10962; 9.89822; 10.89834
93.245; 107.036; 114.206
747.06Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558234 CIFC17.04 H15.04 N2.96 O2P -18.04836; 9.83877; 10.88786
93.5909; 106.703; 113.993
738.39Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558235 CIFC17.55 H15.55 N2.45 O2P -18.07233; 9.87774; 10.88779
93.07; 107.065; 114.273
741.29Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558236 CIFC17.08 H15.08 N2.92 O2P -17.99695; 9.8077; 10.8728
93.323; 106.818; 114.09
729.92Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558237 CIFC17.54 H15.54 N2.46 O2P -18.13099; 9.90773; 10.90319
93.353; 107.021; 114.161
750.13Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558238 CIFC17.09 H15.09 N2.91 O2P -18.03047; 9.82913; 10.88163
93.5015; 106.735; 114.029
735.48Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558239 CIFC17.07 H15.07 N2.93 O2P -18.01388; 9.81882; 10.8766
93.4063; 106.777; 114.063
732.7Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558240 CIFC17.05 H15.05 N2.95 O2P -18.0886; 9.8583; 10.9012
93.7995; 106.674; 113.898
744.61Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558241 CIFC16.46 H14.46 N3.54 O2P -17.98898; 9.77584; 10.85419
93.7189; 106.507; 113.822
727.76Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558242 CIFC17.34 H14 N2.66 O2P -18.17264; 9.78791; 10.94559
92.4657; 107.828; 114.409
744.37Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558243 CIFC17.31 H14 N2.69 O2P -18.1874; 9.79793; 10.95147
92.5603; 107.767; 114.368
747.21Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558244 CIFC17.35 H14 N2.65 O2P -18.15991; 9.7782; 10.9363
92.3422; 107.888; 114.448
741.61Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558245 CIFC17.31 H14 N2.69 O2P -18.20177; 9.80593; 10.9558
92.6345; 107.715; 114.33
749.76Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558246 CIFC16.59 H14.59 N3.41 O2P -17.9687; 9.7664; 10.8474
93.626; 106.527; 113.856
724.72Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558247 CIFC17.35 H14 N2.65 O2P -18.14555; 9.77001; 10.9352
92.273; 107.942; 114.49
739.23Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558248 CIFC17.35 H14 N2.65 O2P -18.13293; 9.7619; 10.9275
92.167; 107.99; 114.537
736.68Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558249 CIFC16.46 H14.46 N3.54 O2P -18.02672; 9.79494; 10.86753
93.9195; 106.46; 113.719
733.83Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558250 CIFC16.45 H14.45 N3.55 O2P -18.00509; 9.78356; 10.8603
93.8151; 106.48; 113.764
730.44Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558251 CIFC16.46 H14.46 N3.54 O2P -18.04776; 9.80445; 10.87711
94.0306; 106.45; 113.656
737.25Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558252 CIFC16.5 H14.5 N3.5 O2P -17.9561; 9.75452; 10.8395
93.5338; 106.566; 113.885
722.05Ding, Xiaodan; Unruh, Daniel K.; Groeneman , Ryan; Hutchins, Kristin M.
Controlling thermal expansion within mixed cocrystals by tuning molecular motion capability
Chemical Science, 2020
1558253 CIFC26 H25 B F2 N6C 1 2/c 128.78; 10.3596; 15.8174
90; 90.308; 90
4715.9Wang, Danfeng; Malmberg, Robert; Pernik, Indrek; Prasad, Shyamal K. K.; Roemer, Max; Venkatesan, Koushik; Schmidt, Timothy W.; Keaveney, Sinead T.; Messerle, Barbara A.
Development of tethered dual catalysts: synergy between photo- and transition metal catalysts for enhanced catalysis.
Chemical science, 2020, 11, 6256-6267
1558254 CIFC60.5 H61 B2 Cl2 F2 Ir N6P 1 21/c 116.4813; 27.568; 12.5577
90; 104.255; 90
5530Wang, Danfeng; Malmberg, Robert; Pernik, Indrek; Prasad, Shyamal K. K.; Roemer, Max; Venkatesan, Koushik; Schmidt, Timothy W.; Keaveney, Sinead T.; Messerle, Barbara A.
Development of tethered dual catalysts: synergy between photo- and transition metal catalysts for enhanced catalysis.
Chemical science, 2020, 11, 6256-6267
1558255 CIFC26 H25 B F2 N6C 1 2/c 126.308; 7.8235; 24.123
90; 112.783; 90
4577.6Wang, Danfeng; Malmberg, Robert; Pernik, Indrek; Prasad, Shyamal K. K.; Roemer, Max; Venkatesan, Koushik; Schmidt, Timothy W.; Keaveney, Sinead T.; Messerle, Barbara A.
Development of tethered dual catalysts: synergy between photo- and transition metal catalysts for enhanced catalysis.
Chemical science, 2020, 11, 6256-6267
1558256 CIFC61.88 H40.12 B2 F26 Ir N6 O2P -118.4114; 18.6821; 22.004
93.733; 105.248; 113.314
6582.5Wang, Danfeng; Malmberg, Robert; Pernik, Indrek; Prasad, Shyamal K. K.; Roemer, Max; Venkatesan, Koushik; Schmidt, Timothy W.; Keaveney, Sinead T.; Messerle, Barbara A.
Development of tethered dual catalysts: synergy between photo- and transition metal catalysts for enhanced catalysis.
Chemical science, 2020, 11, 6256-6267
1558257 CIFC51 H53 Cl2 P3 RuP 1 21/n 112.4966; 21.3798; 17.4791
90; 99.826; 90
4601.5Wang, Zheng; Zhao, Ziwei; Li, Yong; Zhong, Yanxia; Zhang, Qiuyue; Liu, Qingbin; Solan, Gregory; Ma, Yanping; Sun, Wen Hua
Ruthenium-catalyzed Hydrogenation of CO2 as a Route to Methyl Esters for use as Biofuels or fine Chemicals
Chemical Science, 2020
1558258 CIFC52 H55 Cl2 O5 P3 RuP 1 21/c 119.968; 12.863; 19.229
90; 105.75; 90
4753.5Wang, Zheng; Zhao, Ziwei; Li, Yong; Zhong, Yanxia; Zhang, Qiuyue; Liu, Qingbin; Solan, Gregory; Ma, Yanping; Sun, Wen Hua
Ruthenium-catalyzed Hydrogenation of CO2 as a Route to Methyl Esters for use as Biofuels or fine Chemicals
Chemical Science, 2020

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