Crystallography Open Database

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Searching year of publication is 2021

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1557244 CIFC90 H126 Mn3 N12 O27P 1 21/m 112.323; 32.145; 12.931
90; 93.58; 90
5112Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557245 CIFC84 H84 Cl18 Mn3 N12 O12P 1 21/m 112.313; 31.877; 12.954
90; 92.93; 90
5078Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557246 CIFC105 H103.5 Mn3 N12 O12P -112.276; 12.869; 31.586
93.98; 97.43; 92.02
4931Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557247 CIFC111 H138 Mn3 N12 O21P -112.457; 13.242; 33.037
86.69; 86.08; 85.22
5411Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557248 CIFC97 H126 Mn3 N12 O18P -112.364; 12.947; 30.366
99.4; 97.35; 91.57
4750.4Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557249 CIFC93 H120 Mn3 N12 O21P 1 21/m 112.274; 32.826; 12.93
90; 95.51; 90
5186Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557250 CIFC97.5 H111 Mn3 N12 O19.5P 1 21/m 112.307; 31.637; 13.006
90; 92.1; 90
5061Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557251 CIFC111 H106 Cl2 Mn3 N12 O16 Rh2P 1 21/c 112.339; 33.798; 25.762
90; 96.1; 90
10683Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557599 CIFC9 H10 N4 O3 Zn2P b a 210.51; 12.234; 4.666
90; 90; 90
599.95Huang, Zhehao; Ge, Meng; Carraro, Francesco; Doonan, Christian; Falcaro, Paolo; Zou, Xiaodong
Can 3D electron diffraction provide accurate atomic structures of metal-organic frameworks?
Faraday discussions, 2021, 225, 118-132
1557771 CIFC94 H100 Cl12 N12 O3 Pd6P 1 21 114.2257; 50.2552; 19.5481
90; 91.9145; 90
13967.4Tashiro, Shohei; Umeki, Tsutomu; Kubota, Ryou; Shionoya, Mitsuhiko
Face-selective adsorption of a prochiral compound on the chiral pore-surface of a metal-macrocycle framework (MMF) directed towards stereoselective reactions.
Faraday discussions, 2021, 225, 197-209
1557772 CIFC95.93 H98.19 Cl12 N15 O2.74 Pd6P 1 21/c 119.5269; 51.758; 14.2813
90; 91.0232; 90
14431Tashiro, Shohei; Umeki, Tsutomu; Kubota, Ryou; Shionoya, Mitsuhiko
Face-selective adsorption of a prochiral compound on the chiral pore-surface of a metal-macrocycle framework (MMF) directed towards stereoselective reactions.
Faraday discussions, 2021, 225, 197-209
1557773 CIFC86.9 H86.8 Cl12 N12 O10.13 Pd6P 1 21 114.1814; 52.5455; 19.8435
90; 91.1321; 90
14783.9Tashiro, Shohei; Umeki, Tsutomu; Kubota, Ryou; Shionoya, Mitsuhiko
Face-selective adsorption of a prochiral compound on the chiral pore-surface of a metal-macrocycle framework (MMF) directed towards stereoselective reactions.
Faraday discussions, 2021, 225, 197-209
1557774 CIFC98.4 H97.66 Cl12.55 N14.25 O2.95 Pd6P 1 21 114.338; 52.953; 19.7623
90; 90.789; 90
15002.9Tashiro, Shohei; Umeki, Tsutomu; Kubota, Ryou; Shionoya, Mitsuhiko
Face-selective adsorption of a prochiral compound on the chiral pore-surface of a metal-macrocycle framework (MMF) directed towards stereoselective reactions.
Faraday discussions, 2021, 225, 197-209
1557791 CIFC20 H16 Cl2 N4 O PtP 1 21/c 15.3046; 21.6781; 15.9776
90; 94.542; 90
1831.55Kobayashi, Atsushi; Imada, Shin-Ichiro; Wang, Dongjin; Nagao, Yuki; Yoshida, Masaki; Kato, Masako
Cooperative phenomenon of vapochromism and proton conduction of luminescent Pt(ii) complexes for the visualisation of proton conductivity.
Faraday discussions, 2021, 225, 184-196
1557792 CIFC21 H18 Cl2 N4 O PtP -18.0185; 10.5928; 13.0124
69.402; 86.254; 72.413
985.2Kobayashi, Atsushi; Imada, Shin-Ichiro; Wang, Dongjin; Nagao, Yuki; Yoshida, Masaki; Kato, Masako
Cooperative phenomenon of vapochromism and proton conduction of luminescent Pt(ii) complexes for the visualisation of proton conductivity.
Faraday discussions, 2021, 225, 184-196
1557793 CIFC40 H34 Cl6.5 N8 O6 Pt2P -113.5911; 14.4864; 14.6981
99.605; 101.408; 117.546
2401.45Kobayashi, Atsushi; Imada, Shin-Ichiro; Wang, Dongjin; Nagao, Yuki; Yoshida, Masaki; Kato, Masako
Cooperative phenomenon of vapochromism and proton conduction of luminescent Pt(ii) complexes for the visualisation of proton conductivity.
Faraday discussions, 2021, 225, 184-196
1558875 CIFC44.2 H35.32 N2.6 O16.6 Zn3C 1 2/c 132.7998; 9.7204; 18.3042
90; 96.453; 90
5798.9Cadman, Laura K.; Mahon, Mary F.; Burrows, Andrew D.
Inclusion of viologen cations leads to switchable metal-organic frameworks.
Faraday discussions, 2021, 225, 414-430
1558876 CIFC49.2 H46.78 N3.4 O18.7 Zn3C 1 2/c 132.6406; 9.63384; 18.4404
90; 102.534; 90
5660.47Cadman, Laura K.; Mahon, Mary F.; Burrows, Andrew D.
Inclusion of viologen cations leads to switchable metal-organic frameworks.
Faraday discussions, 2021, 225, 414-430
1558877 CIFC212 H260 N20 O76 Zn8P c a 2136.4926; 14.6058; 45.4204
90; 90; 90
24209.2Cadman, Laura K.; Mahon, Mary F.; Burrows, Andrew D.
Inclusion of viologen cations leads to switchable metal-organic frameworks.
Faraday discussions, 2021, 225, 414-430
1558878 CIFC36 H34 N4 O14 Zn2P 1 21/n 19.6981; 16.1078; 11.5458
90; 90.923; 90
1803.39Cadman, Laura K.; Mahon, Mary F.; Burrows, Andrew D.
Inclusion of viologen cations leads to switchable metal-organic frameworks.
Faraday discussions, 2021, 225, 414-430
1559556 CIFC68 H156 O28 Si14 Zr2P -113.346; 17.309; 23.753
86.026; 89.28; 76.624
5325.4Garg, Shipra; Unruh, Daniel K.; Krempner, Clemens
Zirconium and hafnium polyhedral oligosilsesquioxane complexes ‒ green homogeneous catalysts in the formation of bio-derived ethers via a MPV/etherification reaction cascade
Catalysis Science & Technology, 2021, 11, 211-218
1559557 CIFC96 H184 O28 Si14 Zr2P b c a20.0054; 24.0516; 27.5739
90; 90; 90
13267.5Garg, Shipra; Unruh, Daniel K.; Krempner, Clemens
Zirconium and hafnium polyhedral oligosilsesquioxane complexes ‒ green homogeneous catalysts in the formation of bio-derived ethers via a MPV/etherification reaction cascade
Catalysis Science & Technology, 2021, 11, 211-218
1559558 CIFC68 H156 Hf2 O28 Si14P b c a18.563; 22.017; 26.445
90; 90; 90
10808Garg, Shipra; Unruh, Daniel K.; Krempner, Clemens
Zirconium and hafnium polyhedral oligosilsesquioxane complexes ‒ green homogeneous catalysts in the formation of bio-derived ethers via a MPV/etherification reaction cascade
Catalysis Science & Technology, 2021, 11, 211-218
1559559 CIFC96 H184 Hf2 O28 Si14P b c a20.061; 24.064; 27.568
90; 90; 90
13308Garg, Shipra; Unruh, Daniel K.; Krempner, Clemens
Zirconium and hafnium polyhedral oligosilsesquioxane complexes ‒ green homogeneous catalysts in the formation of bio-derived ethers via a MPV/etherification reaction cascade
Catalysis Science & Technology, 2021, 11, 211-218
1559560 CIFC86 H109 N9 Na2 O11 V2P -113.4214; 14.2596; 25.2549
85.709; 78.946; 69.251
4435.9Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559561 CIFC104 H120 N8 O8 V2P -112.0966; 12.3373; 17.8971
90.8728; 107.997; 99.2458
2501.28Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559562 CIFC80 H90 Cl2 N2 O8 V2P 1 21/n 119.7039; 20.0862; 20.6921
90; 113.114; 90
7532Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559563 CIFC178 H213 N11 O20 V4P -114.0354; 17.3396; 20.1906
71.168; 84.459; 66.456
4260.59Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559564 CIFC86 H114 N6 O16 V4P -112.4983; 13.6976; 14.1554
68.166; 79.128; 75.546
2165.92Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559565 CIFC82 H90 F6 N2 O8 V2P 1 21/c 120.0005; 19.9315; 22.023
90; 116.08; 90
7885.4Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559566 CIFC355 H421 Cl2 N21 O32 V8P -119.7899; 20.6775; 22.7696
69.271; 76.567; 78.627
8407.9Xing, Tian; Prior, Timothy J.; Elsegood, Mark R. J.; Semikolenova, Nina V.; Soshnikov, Igor E.; Bryliakov, Konstantin; Chen, Kai; Redshaw, Carl
Vanadium complexes derived from oxacalix[6]arenes: structural studies and use in the ring opening homo-/co-polymerization of ε-caprolactone/δ-valerolactone and ethylene polymerization
Catalysis Science & Technology, 2021, 11, 624-636
1559567 CIFC49 H38 Cl2 Co F5 N3P -111.8773; 12.8721; 14.5308
97.115; 92.063; 98.641
2176.04Zhang, Qiuyue; Li, Zilong; Han, Mingyang; Xiang, Junfeng; Solan, Gregory A.; Ma, Yanping; Liang, Tongling; Sun, Wen-Hua
Fluorinated cobalt catalysts and their use in forming narrowly dispersed polyethylene waxes of high linearity and incorporating vinyl functionality
Catalysis Science & Technology, 2021, 11, 656-670
1559568 CIFC260 H220 Cl10 Co5 F25 N15P -120.2887; 22.5854; 30.0093
94.052; 105.348; 102.898
12802.4Zhang, Qiuyue; Li, Zilong; Han, Mingyang; Xiang, Junfeng; Solan, Gregory A.; Ma, Yanping; Liang, Tongling; Sun, Wen-Hua
Fluorinated cobalt catalysts and their use in forming narrowly dispersed polyethylene waxes of high linearity and incorporating vinyl functionality
Catalysis Science & Technology, 2021, 11, 656-670
1559569 CIFC75 H60 B Cl2 F24 N3 PdP -112.4888; 16.9952; 19.3546
69.171; 75.05; 81.715
3703.33Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559570 CIFC41 H45 Br2 Cl N2 PdP 1 21/n 112.8172; 18.0795; 16.7528
90; 96.977; 90
3853.36Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559571 CIFC44 H53 Cl3 N2 O2 PdP 1 21/n 111.7251; 18.4561; 19.821
90; 101.805; 90
4198.5Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559572 CIFC41 H45 Cl3 N2 PdP -111.0716; 16.373; 21.6279
89.42; 76.403; 88.652
3809.6Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559573 CIFC78 H67 B F24 I2 N3 PdP -113.006; 16.863; 19.2164
98.154; 96.07; 99.498
4078.6Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559574 CIFC77.25 H66.5 B Cl0.5 F24 N3 O2 PdP -114.4315; 16.2211; 18.6665
109.704; 107.844; 95.369
3820.3Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559575 CIFC41 H45 Cl I2 N2 PdP 1 21/c 110.0308; 19.7307; 20.2309
90; 101.055; 90
3929.69Zheng, Handou; Zhong, Liu; Du, Cheng; Du, Wenbo; Cheung, Chi Shing; Ruan, Jingjing; Gao, Haiyang
Combining hydrogen bonding interactions with steric and electronic modifications for thermally robust α-diimine palladium catalysts toward ethylene (co)polymerization
Catalysis Science & Technology, 2021, 11, 124-135
1559614 CIFC67.55 H47.1 Cl3.09 N6 S4P -113.8855; 17.9904; 19.186
77.172; 78.221; 69.1
4324.4Rotter, Julian M.; Guntermann, Roman; Auth, Michael; Mähringer, Andre; Sperlich, Andreas; Dyakonov, Vladimir; Medina, Dana D.; Bein, Thomas
Highly conducting Wurster-type twisted covalent organic frameworks
Chemical Science, 2021
1559658 CIFC41 H28 N4P 1 21 117.049; 14.1638; 25.7784
90; 103.896; 90
6042.76Ni, Fan; Huang, Chih-Wei; Tang, Yukun; Chen, Zhanxiang; Wu, Yaxun; Xia, Shengpeng; Cao, Xiaosong; Hsu, Jung-Hsien; Lee, Wei-Kai; Zheng, Kailu; Huang, Zhongyan; Wu, Chung-Chih; Yang, Chuluo
Integrating molecular rigidity and chirality into thermally activated delayed fluorescence emitters for highly efficient sky-blue and orange circularly polarized electroluminescence
Materials Horizons, 2021, 8, 547-555
1559676 CIFC20 H22 Cd N4 O12P 31 2 113.7702; 13.7702; 13.2048
90; 90; 120
2168.42Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559677 CIFC20 H22 Cd N4 O12P 31 2 113.9775; 13.9775; 13.0994
90; 90; 120
2216.4Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559678 CIFC20 H22 Cd N4 O12P 32 2 114.8922; 14.8922; 12.7663
90; 90; 120
2452Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559679 CIFC16 H6 Cd N2 O12P 31 2 114.9689; 14.9689; 12.6934
90; 90; 120
2463.14Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559680 CIFC20 H22 Cd N4 O12P 32 2 115.0465; 15.0465; 12.6619
90; 90; 120
2482.56Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559681 CIFC20 H22 Cd N4 O12P 31 2 114.0982; 14.0982; 13.0538
90; 90; 120
2247Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559682 CIFC20 H22 Cd N4 O12P 31 2 113.6191; 13.6191; 13.2288
90; 90; 120
2124.9Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559683 CIFC20 H22 Cd N4 O12P 31 2 114.366; 14.366; 12.8607
90; 90; 120
2298.6Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559684 CIFC20 H22 Cd N4 O12P 31 2 114.218; 14.218; 13.0014
90; 90; 120
2276.1Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559685 CIFC16 H6 Cd N2 O12P 31 2 114.515; 14.515; 12.8247
90; 90; 120
2340Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559686 CIFC20 H22 Cd N4 O12P 31 2 113.9484; 13.9484; 13.1157
90; 90; 120
2209.89Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559687 CIFC16 H6 Cd N2 O12P 31 2 114.8744; 14.8744; 12.7248
90; 90; 120
2438.2Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559688 CIFC16 H6 Cd N2 O12P 31 2 114.921; 14.921; 12.7118
90; 90; 120
2450.94Watkins, Daniel; Roseveare, Thomas M.; Warren, Mark R.; Thompson, Stephen P.; Fletcher, Ashleigh J.; Brammer, Lee
Multi-stimulus linear negative expansion of a breathing M(O<sub>2</sub>CR)<sub>4</sub>-node MOF.
Faraday discussions, 2021, 225, 133-151
1559737 CIFC20 H60 Fe4 N8 O30 S6P 1 21/c 111.767; 18.7367; 12.0965
90; 117.762; 90
2359.98Hu, Lei; Wang, Qiushi; Zhu, Xiandong; Meng, Tao; Huang, Binbin; Yang, Jindong; Lin, Xiaoming; Tong, Yexiang
Novel Fe<sub>4</sub>-based metal-organic cluster-derived iron oxides/S,N dual-doped carbon hybrids for high-performance lithium storage.
Nanoscale, 2021, 13, 716-723
1559739 CIFC96.25 H87.5 Cl0 F0.25 N8.75 O8.75 P0.25P c a 2118.079; 30.1771; 14.9963
90; 90; 90
8181.6Wang, Xiaoxuan; Qi, Chunxuan; Fu, Zhiyuan; Zhang, Haoke; Wang, Jianguo; Feng, Hai-Tao; Wang, Kai; Zou, Bo; Lam, Jacky W. Y.; Tang, Ben Zhong
A synergy between the push‒pull electronic effect and twisted conformation for high-contrast mechanochromic AIEgens
Materials Horizons, 2021, 8, 630-638
1559740 CIFC38 H40 F12 N2 O4 P2P n n a15.95929; 28.8471; 8.98775
90; 90; 90
4137.77Wang, Xiaoxuan; Qi, Chunxuan; Fu, Zhiyuan; Zhang, Haoke; Wang, Jianguo; Feng, Hai-Tao; Wang, Kai; Zou, Bo; Lam, Jacky W. Y.; Tang, Ben Zhong
A synergy between the push‒pull electronic effect and twisted conformation for high-contrast mechanochromic AIEgens
Materials Horizons, 2021, 8, 630-638
1559741 CIFC38 H32 F12 N2 P2C 1 2/c 137.188; 9.2614; 10.1379
90; 94.648; 90
3480.1Wang, Xiaoxuan; Qi, Chunxuan; Fu, Zhiyuan; Zhang, Haoke; Wang, Jianguo; Feng, Hai-Tao; Wang, Kai; Zou, Bo; Lam, Jacky W. Y.; Tang, Ben Zhong
A synergy between the push‒pull electronic effect and twisted conformation for high-contrast mechanochromic AIEgens
Materials Horizons, 2021, 8, 630-638
1559799 CIFC36 H50 Ca N6 O P Si2P -19.9377; 13.2229; 17.1785
71.337; 73.927; 77.882
2036.7Liu, Na; Liu, Doudou; Liu, Bo; Zhang, Hao; Cui, Dongmei
Stereoselective polymerization of rac-lactide catalyzed by zwitterionic calcium complexes
Polymer Chemistry, 2021, 12, 1518-1525
1559800 CIFC47 H55 Ca N6 O3 P Si2P -111.2638; 12.9788; 17.8234
93.419; 100.831; 95.152
2541Liu, Na; Liu, Doudou; Liu, Bo; Zhang, Hao; Cui, Dongmei
Stereoselective polymerization of rac-lactide catalyzed by zwitterionic calcium complexes
Polymer Chemistry, 2021, 12, 1518-1525
1559801 CIFAl0.17 Ca0.18 F0.08 Fe5.4 H1.92 Mg1.25 O23.92 Si8C 1 2/m 19.54396; 18.2455; 5.3266
90; 101.883; 90
907.67Giacobbe, Carlotta; Di Giuseppe, Dario; Zoboli, Alessandro; Lassinantti Gualtieri, Magdalena; Bonasoni, Paola; Moliterni, Anna; Corriero, Nicola; Altomare, Angela; Wright, Jonathan; Gualtieri, Alessandro F.
Crystal structure determination of a lifelong biopersistent asbestos fibre using single-crystal synchrotron X-ray micro-diffraction
IUCrJ, 2021, 8, 76-86
1559802 CIFAl0.22 Ca0.17 Fe5.3 H2 Mg1.31 O24 Si8C 1 2/m 19.5343; 18.221; 5.3202
90; 101.846; 90
904.57Giacobbe, Carlotta; Di Giuseppe, Dario; Zoboli, Alessandro; Lassinantti Gualtieri, Magdalena; Bonasoni, Paola; Moliterni, Anna; Corriero, Nicola; Altomare, Angela; Wright, Jonathan; Gualtieri, Alessandro F.
Crystal structure determination of a lifelong biopersistent asbestos fibre using single-crystal synchrotron X-ray micro-diffraction
IUCrJ, 2021, 8, 76-86
1559807 CIFAs3 Fe H16 O17P 1 21/n 115.4357; 20.01; 4.7994
90; 91.728; 90
1481.71Steciuk, Gwladys; Majzlan, Juraj; Plášil, Jakub
Hydrogen disorder in kaatialaite Fe[AsO~2~(OH)~2~]5H~2~O from Jáchymov, Czech Republic: determination from low-temperature 3D electron diffraction
IUCrJ, 2021, 8, 116-123
1559811 CIFC17 H19 F6 N2 O PP 1 21/c 125.6008; 7.0486; 21.7397
90; 114.951; 90
3556.8Whitaker, Daniel J.; Huang, Zehuan; Longbottom, Brooke W.; Sala, Renata L.; Wu, Guanglu; Scherman, Oren A.
Supramolecular hydrogels prepared from fluorescent alkyl pyridinium acrylamide monomers and CB[8]
Polymer Chemistry, 2021, 12, 519-525
1559833 CIFB4 K3 O12 Tm3P 1 21/c 110.49; 17.3785; 13.7941
90; 110.495; 90
2355.5Chen, Pengyun; Murshed, M. Mangir; Gesing, Thorsten M.
Synthesis and crystal structures of novel alkali rare-earth orthoborates K3RE3(BO3)4 (RE = Pr, Nd, Sm‒Lu)
Journal of Materials Science, 2021, 56, 3639-3652
1559834 CIFB4 Er3 K3 O12P 1 21/c 110.5189; 17.4322; 13.8305
90; 110.521; 90
2375.14Chen, Pengyun; Murshed, M. Mangir; Gesing, Thorsten M.
Synthesis and crystal structures of novel alkali rare-earth orthoborates K3RE3(BO3)4 (RE = Pr, Nd, Sm‒Lu)
Journal of Materials Science, 2021, 56, 3639-3652
1559835 CIFB4 K3 O12 Pr3P -110.8167; 9.0776; 14.1014
90.051; 110.257; 89.901
1299Chen, Pengyun; Murshed, M. Mangir; Gesing, Thorsten M.
Synthesis and crystal structures of novel alkali rare-earth orthoborates K3RE3(BO3)4 (RE = Pr, Nd, Sm‒Lu)
Journal of Materials Science, 2021, 56, 3639-3652
1559863 CIFC32 H30 N2 S4 Si2P -110.1836; 16.2598; 23.1451
86.414; 81.109; 77.472
3694.6Tian, Yu; Wang, Chenglong; Wang, Guangxia; Xu, Li; Wang, Hua
Ag-Induced metallogel based on cyclooctatetrathiophene: structural characterization and stimuli-responsive properties.
Soft matter, 2021, 17, 341-345
1559864 CIFC32 H30 N2 S4 Si2R -3 :H38.5368; 38.5368; 13.3783
90; 90; 120
17206.1Tian, Yu; Wang, Chenglong; Wang, Guangxia; Xu, Li; Wang, Hua
Ag-Induced metallogel based on cyclooctatetrathiophene: structural characterization and stimuli-responsive properties.
Soft matter, 2021, 17, 341-345
1559888 CIFC7 H4 D6 O6P n a 2112.1157; 6.1134; 9.97
90; 90; 90
738.46Joffrin, Amélie M.; Saunders, Alex M.; Barneda, David; Flemington, Vikki; Thompson, Amber L.; Sanganee, Hitesh J.; Conway, Stuart J.
Development of isotope-enriched phosphatidylinositol-4- and 5-phosphate cellular mass spectrometry probes
Chemical Science, 2021, 12, 2549-2557
1559889 CIFC14 H18 O8P 1 21 110.4164; 6.6513; 11.2592
90; 96.9535; 90
774.33Joffrin, Amélie M.; Saunders, Alex M.; Barneda, David; Flemington, Vikki; Thompson, Amber L.; Sanganee, Hitesh J.; Conway, Stuart J.
Development of isotope-enriched phosphatidylinositol-4- and 5-phosphate cellular mass spectrometry probes
Chemical Science, 2021, 12, 2549-2557
1559893 CIFC12 H14 Br2 OP 1 21/c 115.797; 10.6695; 7.533
90; 91.679; 90
1269.11Roemer, Max; Gonçales, Vinicius R.; Keaveney, Sinead T.; Pernik, Indrek; Lian, Jiaxin; Downes, James; Gooding, J. Justin; Messerle, Barbara A.
Carbon supported hybrid catalysts for controlled product selectivity in the hydrosilylation of alkynes
Catalysis Science & Technology, 2021, 11, 1888-1898
1559894 CIFC18 H22 N6 OP 1 21/c 114.654; 7.0476; 17.0806
90; 91.653; 90
1763.3Roemer, Max; Gonçales, Vinicius R.; Keaveney, Sinead T.; Pernik, Indrek; Lian, Jiaxin; Downes, James; Gooding, J. Justin; Messerle, Barbara A.
Carbon supported hybrid catalysts for controlled product selectivity in the hydrosilylation of alkynes
Catalysis Science & Technology, 2021, 11, 1888-1898
1559895 CIFC23 H32 N6 OP 1 21/n 15.4266; 52.494; 8.032
90; 107.835; 90
2178.1Roemer, Max; Gonçales, Vinicius R.; Keaveney, Sinead T.; Pernik, Indrek; Lian, Jiaxin; Downes, James; Gooding, J. Justin; Messerle, Barbara A.
Carbon supported hybrid catalysts for controlled product selectivity in the hydrosilylation of alkynes
Catalysis Science & Technology, 2021, 11, 1888-1898
1559907 CIFC12 H22 B Fe NP 1 21/c 112.5601; 7.39591; 14.8102
90; 98.207; 90
1361.68Zhai, Xiaofang; Pang, Maofu; Feng, Lei; Jia, Jiong; Tung, Chen-Ho; Wang, Wenguang
Dehydrogenation of iron amido-borane and resaturation of the imino-borane complex
Chemical Science, 2021, 12, 2885-2889
1559908 CIFC68 H60 B2 F24 Fe N O2 PP -112.9415; 14.6375; 19.3031
103.817; 92.601; 92.604
3541.17Zhai, Xiaofang; Pang, Maofu; Feng, Lei; Jia, Jiong; Tung, Chen-Ho; Wang, Wenguang
Dehydrogenation of iron amido-borane and resaturation of the imino-borane complex
Chemical Science, 2021, 12, 2885-2889
1559909 CIFC81 H67 B2 F24 Fe N P2P 1 21/c 113.1206; 16.6063; 36.1078
90; 93.609; 90
7851.73Zhai, Xiaofang; Pang, Maofu; Feng, Lei; Jia, Jiong; Tung, Chen-Ho; Wang, Wenguang
Dehydrogenation of iron amido-borane and resaturation of the imino-borane complex
Chemical Science, 2021, 12, 2885-2889
1559910 CIFC28 H31 B Fe N PP 1 21/c 115.3228; 26.7339; 35.8973
90; 99.93; 90
14484.6Zhai, Xiaofang; Pang, Maofu; Feng, Lei; Jia, Jiong; Tung, Chen-Ho; Wang, Wenguang
Dehydrogenation of iron amido-borane and resaturation of the imino-borane complex
Chemical Science, 2021, 12, 2885-2889
1559911 CIFC28 H33 B Fe N PP 1 21/n 110.668; 10.792; 21.922
90; 92.119; 90
2522.1Zhai, Xiaofang; Pang, Maofu; Feng, Lei; Jia, Jiong; Tung, Chen-Ho; Wang, Wenguang
Dehydrogenation of iron amido-borane and resaturation of the imino-borane complex
Chemical Science, 2021, 12, 2885-2889
1559914 CIFC6 H18 Cl4 N2 PdP -17.2281; 8.1281; 11.7212
70.892; 87.545; 89.101
650.09Zierkiewicz, Wiktor; Michalczyk, Mariusz; Maris, Thierry; Wysokinski, Rafal; Scheiner, Steve
Experimental and Theoretical Evidence of Attractive Interactions between Dianions: [PdCl4]2-...[PdCl4]2-
Chemical Communications, 2021
1559931 CIFO384 Si192 Zn35.75F d -3 m :224.7443; 24.7443; 24.7443
90; 90; 90
15150.4Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559932 CIFO394.64 Si192 Zn38.54F d -3 m :224.7012; 24.7012; 24.7012
90; 90; 90
15071.4Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559933 CIFO384 Si192 Zn37.08F d -3 m :224.7342; 24.7342; 24.7342
90; 90; 90
15131.9Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559934 CIFO384 Si192 Zn36.44F d -3 m :224.7409; 24.7409; 24.7409
90; 90; 90
15144.2Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559935 CIFO384 Si192 Zn37F d -3 m :224.7367; 24.7367; 24.7367
90; 90; 90
15136.5Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559936 CIFO384 Si192 Zn35.93F d -3 m :224.7334; 24.7334; 24.7334
90; 90; 90
15130.4Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559937 CIFO393.88 Si192 Zn37.67F d -3 m :224.706; 24.706; 24.706
90; 90; 90
15080.2Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559938 CIFO384 Si192 Zn35.51F d -3 m :224.7496; 24.7496; 24.7496
90; 90; 90
15160.2Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559939 CIFO389.23 Si192 Zn36.1F d -3 m :224.731; 24.731; 24.731
90; 90; 90
15126Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559940 CIFO389.95 Si192 Zn35.28F d -3 m :224.7323; 24.7323; 24.7323
90; 90; 90
15128.4Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559941 CIFO384 Si192 Zn36.19F d -3 m :224.7508; 24.7508; 24.7508
90; 90; 90
15162.4Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559942 CIFO393.73 Si192 Zn37.59F d -3 m :224.7029; 24.7029; 24.7029
90; 90; 90
15074.5Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559943 CIFO384 Si192 Zn35.75F d -3 m :224.7557; 24.7557; 24.7557
90; 90; 90
15171.4Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559944 CIFO384 Si192 Zn36.82F d -3 m :224.743; 24.743; 24.743
90; 90; 90
15148.1Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559945 CIFO389.83 Si192 Zn35.41F d -3 m :224.7327; 24.7327; 24.7327
90; 90; 90
15129.2Moon, Dae Jun; Lim, Woo Taik; Peterson, Brian K.; Seff, Karl
Using Crystallography and NMR to Count the Number of Three-Aluminum Six-Rings in Fully Zn2±Exchanged Zeolite Y. These Six-Rings Concentrate at Single Six-Ring Positions
The Journal of Physical Chemistry C, 2021, 125, 583-592
1559946 CIFC30 H14 Cd N4 O8 SP b a m12.8322; 19.9878; 20.044
90; 90; 90
5141.03Ding, Bowen; Chan, Bun; Proschogo, Nicholas; Solomon, Marcello B.; Kepert, Cameron J.; D'Alessandro, Deanna M.
A cofacial metal‒organic framework based photocathode for carbon dioxide reduction
Chemical Science, 2021, 12, 3608-3614
1559947 CIFC30 H14 Cd N4 O8 SP b a m12.9936; 19.8725; 20.0366
90; 90; 90
5173.76Ding, Bowen; Chan, Bun; Proschogo, Nicholas; Solomon, Marcello B.; Kepert, Cameron J.; D'Alessandro, Deanna M.
A cofacial metal‒organic framework based photocathode for carbon dioxide reduction
Chemical Science, 2021, 12, 3608-3614
1559948 CIFC10 H34 I12 N4 Pb3C 1 2/m 18.909; 9.012; 27.896
90; 92.832; 90
2237Li, Dong; Wu, Wentao; Han, Shiguo; Liu, Xitao; Peng, Yu; Li, Xiaoqi; Li, Lina; Hong, Maochun; Luo, Junhua
A reduced-dimensional polar hybrid perovskite for self-powered broad-spectrum photodetection
Chemical Science, 2021, 12, 3050-3054
1559949 CIFC10 H34 I12 N4 Pb3P 1 c 127.3848; 9.0015; 8.8216
90; 95.999; 90
2162.65Li, Dong; Wu, Wentao; Han, Shiguo; Liu, Xitao; Peng, Yu; Li, Xiaoqi; Li, Lina; Hong, Maochun; Luo, Junhua
A reduced-dimensional polar hybrid perovskite for self-powered broad-spectrum photodetection
Chemical Science, 2021, 12, 3050-3054

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