Crystallography Open Database

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1551414 CIFC46 H38 N6 O10 Pd2P -110.5489; 10.6184; 19.274
76.628; 84.772; 81.899
2075.6Van T. Tran; John A. Gurak Jr; Kin S. Yang; Keary M. Engle
Activation of diverse carbon-heteroatom and carbon-carbon bonds via palladium(ii)-catalysed beta-X elimination
Nature Chemistry, 2018, 10, 1126-1133
1551447 CIF
HKL
C20 H10 Br4C 1 2/c 121.255; 5.7151; 18.8051
90; 124.093; 90
1891.7Niko Pavlicek; Przemyslaw Gawel; Daniel R. Kohn; Zsolt Majzik; Yaoyao Xiong; Gerhard Meyer; Harry L. Anderson; Leo Gross
Polyyne formation via skeletal rearrangement induced by atomic manipulation
Nature Chemistry, 2018, 10, 853-858
1551448 CIF
HKL
C24 H10 Br4P 1 2/c 112.0069; 3.9729; 22.0798
90; 100.208; 90
1036.58Niko Pavlicek; Przemyslaw Gawel; Daniel R. Kohn; Zsolt Majzik; Yaoyao Xiong; Gerhard Meyer; Harry L. Anderson; Leo Gross
Polyyne formation via skeletal rearrangement induced by atomic manipulation
Nature Chemistry, 2018, 10, 853-858
1551449 CIF
HKL
C28 H10 Br4P 1 21/n 110.6051; 4.9313; 23.4977
90; 98.092; 90
1216.62Niko Pavlicek; Przemyslaw Gawel; Daniel R. Kohn; Zsolt Majzik; Yaoyao Xiong; Gerhard Meyer; Harry L. Anderson; Leo Gross
Polyyne formation via skeletal rearrangement induced by atomic manipulation
Nature Chemistry, 2018, 10, 853-858
1551498 CIFC8 H16 Cl2 Cr N4I m m m6.90351; 6.97713; 10.82548
90; 90; 90
521.428Kasper S. Pedersen; Panagiota Perlepe; Michael L. Aubrey; Daniel N. Woodruff; Sebastian E. Reyes-Lillo; Anders Reinholdt; Laura Voigt; Zheshen Li; Kasper Borup; Mathieu Rouzieres; Dumitru Samohvalov; Fabrice Wilhelm; Andrei Rogalev; Jeffrey B. Neaton; Jeffrey R. Long; Rodolphe Clerac
Formation of the layered conductive magnet CrCl2(pyrazine)2 through redox-active coordination chemistry
Nature Chemistry, 2018, 10, 1056-1061
1551499 CIFC20 H20.5 Cl3 Cr N4 O4.25P 1 21/n 113.4559; 15.142; 23.1601
90; 93.2; 90
4711.5Kasper S. Pedersen; Panagiota Perlepe; Michael L. Aubrey; Daniel N. Woodruff; Sebastian E. Reyes-Lillo; Anders Reinholdt; Laura Voigt; Zheshen Li; Kasper Borup; Mathieu Rouzieres; Dumitru Samohvalov; Fabrice Wilhelm; Andrei Rogalev; Jeffrey B. Neaton; Jeffrey R. Long; Rodolphe Clerac
Formation of the layered conductive magnet CrCl2(pyrazine)2 through redox-active coordination chemistry
Nature Chemistry, 2018, 10, 1056-1061
1551500 CIFC384 H306 F30 Fe6 N36 O24 P5R -3 :H47.726; 47.726; 39.415
90; 90; 120
77750Liang Zhang; Alexander J. Stephens; Alina L. Nussbaumer; Jean-Francois Lemonnier; Pia Jurcek; Inigo J. Vitorica-Yrezabal; David A. Leigh
Stereoselective synthesis of a composite knot with nine crossings
Nature Chemistry, 2018, 10, 1083-1088
1551834 CIFC35 H32 Cl6 N2 O2 Os SP 21 21 217.95564; 16.3879; 26.8668
90; 90; 90
3502.79James P. C. Coverdale; Isolda Romero-Canelon; Carlos Sanchez-Cano; Guy J. Clarkson; Abraha Habtemariam; Martin Wills; Peter J. Sadler
Asymmetric transfer hydrogenation by synthetic catalysts in cancer cells
Nature Chemistry, 2018, 10, 347-354
1551835 CIFC35 H32 Cl6 N2 O2 Os SP 21 21 217.95923; 16.394; 26.878
90; 90; 90
3507.14James P. C. Coverdale; Isolda Romero-Canelon; Carlos Sanchez-Cano; Guy J. Clarkson; Abraha Habtemariam; Martin Wills; Peter J. Sadler
Asymmetric transfer hydrogenation by synthetic catalysts in cancer cells
Nature Chemistry, 2018, 10, 347-354
1551887 CIFC72 H74 Br4 N4 O11C 1 2/c 131.466; 18.3593; 29.875
90; 126.405; 90
13890.4Kelong Zhu; Giorgio Baggi; Stephen J. Loeb
Ring-through-ring molecular shuttling in a saturated [3]rotaxane
Nature Chemistry, 2018, 10, 625-630
1551888 CIFC248 H248 B2 F8 N4 O16P -113.1755; 18.6165; 21.6086
86.0293; 84.4233; 85.0168
5245.3Kelong Zhu; Giorgio Baggi; Stephen J. Loeb
Ring-through-ring molecular shuttling in a saturated [3]rotaxane
Nature Chemistry, 2018, 10, 625-630
1551903 CIFC14 H8 Cl2 Fe N4C 1 2/c 18.368; 8.3711; 21.6926
90; 93.54; 90
1516.65J. Lopez-Cabrelles; S. Manas-Valero; I. J. Vitorica-Yrezabal; P. J. Bereciartua; J. A. Rodriguez-Velamazan; J. C. Waerenborgh; B. J. C. Vieira; D. Davidovikj; P. G. Steeneken; H. S. J. van der Zant; G. Minguez Espallargas; E. Coronado
Isoreticular two-dimensional magnetic coordination polymers prepared through pre-synthetic ligand functionalization
Nature Chemistry, 2018, 10, 1001-1007
1551904 CIFC14 H10 Fe N4C 1 2/c 18.3356; 8.3352; 18.758
90; 96.965; 90
1293.7J. Lopez-Cabrelles; S. Manas-Valero; I. J. Vitorica-Yrezabal; P. J. Bereciartua; J. A. Rodriguez-Velamazan; J. C. Waerenborgh; B. J. C. Vieira; D. Davidovikj; P. G. Steeneken; H. S. J. van der Zant; G. Minguez Espallargas; E. Coronado
Isoreticular two-dimensional magnetic coordination polymers prepared through pre-synthetic ligand functionalization
Nature Chemistry, 2018, 10, 1001-1007
1551905 CIFC16 H12 Fe N4C 1 2/c 18.2809; 8.2718; 21.798
90; 92.418; 90
1491.8J. Lopez-Cabrelles; S. Manas-Valero; I. J. Vitorica-Yrezabal; P. J. Bereciartua; J. A. Rodriguez-Velamazan; J. C. Waerenborgh; B. J. C. Vieira; D. Davidovikj; P. G. Steeneken; H. S. J. van der Zant; G. Minguez Espallargas; E. Coronado
Isoreticular two-dimensional magnetic coordination polymers prepared through pre-synthetic ligand functionalization
Nature Chemistry, 2018, 10, 1001-1007
1551906 CIFC14 H8 Br2 Fe N4C 1 2 18.2958; 8.2991; 22.299
90; 92.44; 90
1533.8J. Lopez-Cabrelles; S. Manas-Valero; I. J. Vitorica-Yrezabal; P. J. Bereciartua; J. A. Rodriguez-Velamazan; J. C. Waerenborgh; B. J. C. Vieira; D. Davidovikj; P. G. Steeneken; H. S. J. van der Zant; G. Minguez Espallargas; E. Coronado
Isoreticular two-dimensional magnetic coordination polymers prepared through pre-synthetic ligand functionalization
Nature Chemistry, 2018, 10, 1001-1007
1551907 CIFC14 H8 Fe N6C 1 2/c 18.2188; 8.217; 21.481
90; 97.66; 90
1437.7J. Lopez-Cabrelles; S. Manas-Valero; I. J. Vitorica-Yrezabal; P. J. Bereciartua; J. A. Rodriguez-Velamazan; J. C. Waerenborgh; B. J. C. Vieira; D. Davidovikj; P. G. Steeneken; H. S. J. van der Zant; G. Minguez Espallargas; E. Coronado
Isoreticular two-dimensional magnetic coordination polymers prepared through pre-synthetic ligand functionalization
Nature Chemistry, 2018, 10, 1001-1007
1551909 CIFC10 H11.33 Cu O6.67P -3 m 118.5676; 18.5676; 6.8056
90; 90; 120
2031.9Lauren N. McHugh; Matthew J. McPherson; Laura J. McCormick; Samuel A. Morris; Paul S. Wheatley; Simon J. Teat; David McKay; Daniel M. Dawson; Charlotte E. F. Sansome; Sharon E. Ashbrook; Corinne A. Stone; Martin W. Smith; Russell E. Morris
Hydrolytic stability in hemilabile metal-organic frameworks
Nature Chemistry, 2018, 10, 1096-1102
1551910 CIFC10 H8 Cu O5P 3 1 m33.028; 33.028; 5.2047
90; 90; 120
4916.9Lauren N. McHugh; Matthew J. McPherson; Laura J. McCormick; Samuel A. Morris; Paul S. Wheatley; Simon J. Teat; David McKay; Daniel M. Dawson; Charlotte E. F. Sansome; Sharon E. Ashbrook; Corinne A. Stone; Martin W. Smith; Russell E. Morris
Hydrolytic stability in hemilabile metal-organic frameworks
Nature Chemistry, 2018, 10, 1096-1102
1551911 CIFC28 H33 F3 Ir N OP b c a15.215; 11.5219; 29.439
90; 90; 90
5160.8Kwangmin Shin; Yoonsu Park; Mu-Hyun Baik; Sukbok Chang
Iridium-catalysed arylation of C-H bonds enabled by oxidatively induced reductive elimination
Nature Chemistry, 2018, 10, 218-224
1551924 CIFC15 H10 F3 N O3 WP 1 21/c 120.0122; 9.8352; 7.4416
90; 90.639; 90
1464.59Tianfei Liu; Meiyuan Guo; Andreas Orthaber; Reiner Lomoth; Marcus Lundberg; Sascha Ott; Leif Hammarstrom
Accelerating proton-coupled electron transfer of metal hydrides in catalyst model reactions
Nature Chemistry, 2018, 10, 881-887
1551925 CIFC15 H13 N O3 WP 1 21/n 111.8215; 6.2202; 19.1297
90; 92.475; 90
1405.33Tianfei Liu; Meiyuan Guo; Andreas Orthaber; Reiner Lomoth; Marcus Lundberg; Sascha Ott; Leif Hammarstrom
Accelerating proton-coupled electron transfer of metal hydrides in catalyst model reactions
Nature Chemistry, 2018, 10, 881-887
1551926 CIFC15 H13 N O4 WP -18.2435; 8.3778; 11.8392
103.606; 98.72; 108.776
729.09Tianfei Liu; Meiyuan Guo; Andreas Orthaber; Reiner Lomoth; Marcus Lundberg; Sascha Ott; Leif Hammarstrom
Accelerating proton-coupled electron transfer of metal hydrides in catalyst model reactions
Nature Chemistry, 2018, 10, 881-887
1552025 CIFC86 H123 K N2 O10 UP 21 319.8738; 19.8738; 19.8738
90; 90; 90
7849.5Dominik P. Halter; Frank W. Heinemann; Laurent Maron; Karsten Meyer
The role of uranium-arene bonding in H2O reduction catalysis
Nature Chemistry, 2018, 10, 259-267
1552026 CIFC67 H86 N3 O3 UP 1 21/n 115.4665; 18.133; 19.847
90; 92.049; 90
5562.6Dominik P. Halter; Frank W. Heinemann; Laurent Maron; Karsten Meyer
The role of uranium-arene bonding in H2O reduction catalysis
Nature Chemistry, 2018, 10, 259-267
1552027 CIFC79 H107 O8 UC 1 2/c 141.761; 15.8422; 24.5005
90; 124.439; 90
13368.2Dominik P. Halter; Frank W. Heinemann; Laurent Maron; Karsten Meyer
The role of uranium-arene bonding in H2O reduction catalysis
Nature Chemistry, 2018, 10, 259-267
1552028 CIFC70 H105 N3 O7 Si UP 1 21/n 111.36; 25.522; 22.856
90; 97.314; 90
6573Dominik P. Halter; Frank W. Heinemann; Laurent Maron; Karsten Meyer
The role of uranium-arene bonding in H2O reduction catalysis
Nature Chemistry, 2018, 10, 259-267

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