Crystallography Open Database

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1547752 CIFC43 H54 F6 Fe N O8 PP -110.3758; 11.2462; 19.467
87.299; 80.198; 88.715
2235.7Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547753 CIFC43 H54 F6 Fe N O8 PP -110.3528; 11.195; 19.3916
87.3094; 80.1334; 88.7511
2211.58Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547754 CIFC43 H54 F6 Fe N O8 PP -110.3815; 11.262; 19.473
87.298; 80.314; 88.684
2241.5Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547755 CIFC43 H54 F6 Fe N O8 PP -110.3843; 11.2809; 19.3678
87.3201; 81.11; 88.5831
2238.8Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547756 CIFC43 H54 F6 Fe N O8 PP -110.391; 11.288; 19.483
87.29; 80.485; 88.65
2251Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547757 CIFC43 H54 F6 Fe N O8 PP -110.3641; 11.2179; 19.3874
87.325; 80.4216; 88.7095
2219.95Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547758 CIFC43 H54 F6 Fe N O8 PP -110.3728; 11.2401; 19.3827
87.3342; 80.6721; 88.6789
2227.3Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547759 CIFCu0.25 Te0.1667P m -3 n7.51; 7.51; 7.51
90; 90; 90
423.565Tom Willhammar; Kadir Sentosun; Stefanos Mourdikoudis; Bart Goris; Mert Kurttepeli; Marnik Bercx; Dirk Lamoen; Bart Partoens; Isabel Pastoriza-Santos; Jorge Perez-Juste; Luis M. Liz-Marzan; Sara Bals; Gustaaf Van Tendeloo
Structure and vacancy distribution in copper telluride nanoparticles influence plasmonic activity in the near-infrared
Nature Communications, 2017, 8, 14925
1547886 CIFC92 H173 Cu4 N9 O49 S6P 4/m n c18.6841; 18.6841; 34.6796
90; 90; 90
12106.5Florian Moreau; Ivan da Silva; Nada H. Al Smail; Timothy L. Easun; Mathew Savage; Harry G. W. Godfrey; Stewart F. Parker; Pascal Manuel; Sihai Yang; Martin Schroder
Unravelling exceptional acetylene and carbon dioxide adsorption within a tetra-amide functionalized metal-organic framework
Nature Communications, 2017, 8, 14085
1547887 CIFC24 H11 Cu2 N2 O10P 4/m n c18.7721; 18.7721; 34.7704
90; 90; 90
12252.8Florian Moreau; Ivan da Silva; Nada H. Al Smail; Timothy L. Easun; Mathew Savage; Harry G. W. Godfrey; Stewart F. Parker; Pascal Manuel; Sihai Yang; Martin Schroder
Unravelling exceptional acetylene and carbon dioxide adsorption within a tetra-amide functionalized metal-organic framework
Nature Communications, 2017, 8, 14085
1547888 CIFB4 Cl La O8C 1 c 16.5268; 11.251; 9.814
90; 105.271; 90
695.2Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547889 CIFB12 Cl2 Nd2 O29P 1 21/n 18.1867; 14.5421; 9.8317
90; 90.281; 90
1170.47Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547890 CIFB7 O17 SmC 1 2/m 18.7754; 27.454; 6.8312
90; 127.524; 90
1305.3Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547891 CIFB7 Eu O16P -16.8148; 7.1444; 12.7191
96.093; 98.513; 101.75
593.64Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547892 CIFB24 Lu4 O49R -3 :H17.0783; 17.0783; 20.3077
90; 90; 120
5129.6Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547893 CIFC41 H72.5 N7 O13.25P 111.0081; 11.0439; 20.174
81.37; 78.531; 80.367
2352.4Sudipta Mondal; Maxim Varenik; Daniel Nir Bloch; Yoav Atsmon-Raz; Guy Jacoby; Lihi Adler-Abramovich; Linda J.W. Shimon; Roy Beck; Yifat Miller; Oren Regev; Ehud Gazit
A minimal length rigid helical peptide motif allows rational design of modular surfactants
Nature Communications, 2017, 8, 14018
1547894 CIFC208 H168 Cu24 O144 S8I 4/m28.535; 28.535; 39.508
90; 90; 90
32169Jiyoung Lee; Ja Hun Kwak; Wonyoung Choe
Evolution of form in metal–organic frameworks
Nature Communications, 2017, 8, 14070
1547895 CIFC228 H192 Cu24 N12 O132F m -3 m39.878; 39.878; 39.878
90; 90; 90
63416Jiyoung Lee; Ja Hun Kwak; Wonyoung Choe
Evolution of form in metal–organic frameworks
Nature Communications, 2017, 8, 14070
1547896 CIFC228 H192 Cu24 N12 O132F m -3 m39.954; 39.954; 39.954
90; 90; 90
63779Jiyoung Lee; Ja Hun Kwak; Wonyoung Choe
Evolution of form in metal–organic frameworks
Nature Communications, 2017, 8, 14070
1547947 CIFC51 H91 Cl21 Fe N14 O6P -113.1207; 15.5348; 22.321
72.773; 77.36; 70.252
4054.1Stefania Tomyn; Sergii I. Shylin; Dmytro Bykov; Vadim Ksenofontov; Elzbieta Gumienna-Kontecka; Volodymyr Bon; Igor O. Fritsky
Indefinitely stable iron(IV) cage complexes formed in water by air oxidation
Nature Communications, 2017, 8, 14099
1547948 CIFC60 H78.56 As2 Fe N12 O19.28P b c a21.088; 21.0711; 29.6134
90; 90; 90
13158.6Stefania Tomyn; Sergii I. Shylin; Dmytro Bykov; Vadim Ksenofontov; Elzbieta Gumienna-Kontecka; Volodymyr Bon; Igor O. Fritsky
Indefinitely stable iron(IV) cage complexes formed in water by air oxidation
Nature Communications, 2017, 8, 14099
1547949 CIFC15 H32 Ca Fe N12 O13P -19.4448; 12.0118; 12.3759
87.085; 73.158; 84.015
1336.17Stefania Tomyn; Sergii I. Shylin; Dmytro Bykov; Vadim Ksenofontov; Elzbieta Gumienna-Kontecka; Volodymyr Bon; Igor O. Fritsky
Indefinitely stable iron(IV) cage complexes formed in water by air oxidation
Nature Communications, 2017, 8, 14099
1547950 CIFC8 H6 Br4 N4 ReP 21 21 219.4226; 10.7168; 13.2648
90; 90; 90
1339.48Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547951 CIFC8 H6 Br4 N4 ReP 21 21 219.2129; 10.5779; 13.0532
90; 90; 90
1272.08Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547952 CIFC8 H6 Br4 N4 ReP 21 21 219.1029; 10.5419; 12.9562
90; 90; 90
1243.3Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547953 CIFC8 H6 Br4 N4 ReP 21 21 219.0638; 10.4978; 12.9039
90; 90; 90
1227.81Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547954 CIFC8 H6 Br4 N4 ReP 1 21 18.9159; 12.7935; 10.4016
90; 91.208; 90
1186.2Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547955 CIFC8 H6 Br4 N4 ReP 1 21 18.873; 12.778; 10.3459
90; 92.25; 90
1172.11Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547956 CIFC8 H6 Br4 N4 ReP 21 21 219.6089; 10.8491; 13.4542
90; 90; 90
1402.57Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547957 CIFC8 H6 Br4 N4 ReP 21 21 219.6184; 10.8488; 13.4471
90; 90; 90
1403.18Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547958 CIFC6 H9 Cl4 N3 ReP n m a10.3829; 13.4805; 9.7632
90; 90; 90
1366.5Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547959 CIFC6 H9 Cl4 N3 ReP n m a10.2971; 13.4016; 9.6238
90; 90; 90
1328.06Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547960 CIFC6 H9 Cl4 N3 ReP n m a10.118; 13.259; 9.3321
90; 90; 90
1251.9Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547961 CIFC6 H9 Cl4 N3 ReP n m a10.0281; 13.122; 9.1585
90; 90; 90
1205.2Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547962 CIFC6 H9 Cl4 N3 ReP n m a9.9548; 12.959; 9.0069
90; 90; 90
1161.9Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547963 CIFC6 H9 Cl4 N3 ReP n m a9.835; 12.816; 8.746
90; 90; 90
1102.4Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547964 CIFC6 H9 Cl4 N3 ReP n m a10.4093; 13.5203; 9.8134
90; 90; 90
1381.11Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547965 CIFC6 H9 Cl4 N3 ReP n m a10.261; 13.4766; 9.5069
90; 90; 90
1314.65Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547966 CIFC8 H6 Br4 N4 ReP 21 21 219.4883; 10.7299; 13.3288
90; 90; 90
1356.99Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547967 CIFC26 H27 Mg3 N O22P 63/m m c16.2122; 16.2122; 16.0642
90; 90; 120
3656.57Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547968 CIFC44 H36 Mg3 N10 O13P 63/m m c16.997; 16.997; 14.9864
90; 90; 120
3749.5Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547969 CIFC42 H25 Mn3 N6 O13P 63/m m c17.4162; 17.4162; 14.9154
90; 90; 120
3918.1Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547970 CIFC42 H28 Co3 N9 O13P 63/m m c17.0539; 17.0539; 14.9837
90; 90; 120
3774Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547971 CIFC42 H28 N9 O13 Zn3P 63/m m c17.0539; 17.0539; 14.9837
90; 90; 120
3774Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547972 CIFC24 H19 Mg2 O22 VP 63/m m c15.9423; 15.9423; 16.0411
90; 90; 120
3530.75Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547973 CIFC42 H25 Mg2 N6 O19 VP 63/m m c16.6165; 16.6165; 15.3366
90; 90; 120
3667.2Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547974 CIFC42 H22 Mg2 N9 O19 VP 63/m m c16.9065; 16.9065; 14.7154
90; 90; 120
3642.6Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547975 CIFC54 H31 Mg2 N6 O13 VP 63/m m c16.8599; 16.8599; 14.882
90; 90; 120
3663.5Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547976 CIFC54 H31 Mg2 N6 O13 VP 63/m m c16.7913; 16.7913; 20.6558
90; 90; 120
5043.61Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547977 CIFC44 H33 Mg3 N7 O19P 63/m m c16.9671; 16.9671; 15.3079
90; 90; 120
3816.5Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645

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