Crystallography Open Database

Result: there are 53 entries in the selection

Switch to the old layout of the page

Download all results as: list of COD numbers | list of CIF URLs | data in CSV format | archive of CIF files (ZIP)

Searching journal of publication like 'Nature Chemistry' volume of publication is 5

Left arrow Left arrow First | Left arrow Previous 50 | of 2 | Next 50 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

COD ID Blue up arrow Links Formula Up arrow Space group Up arrow Cell parameters Cell volume Up arrow Bibliography
1516318 CIFC25 H16 N4 O4I -4 3 d18.0373; 18.0373; 18.0373
90; 90; 90
5868.3Beaudoin, Daniel; Maris, Thierry; Wuest, James D.
Constructing monocrystalline covalent organic networks by polymerization
Nature Chemistry, 2013, 5, 830-834
1516319 CIFC25 H16 N4 O4P -4 b 213.1545; 13.1545; 7.9818
90; 90; 90
1381.2Beaudoin, Daniel; Maris, Thierry; Wuest, James D.
Constructing monocrystalline covalent organic networks by polymerization
Nature Chemistry, 2013, 5, 830-834
1516320 CIFC24 H16 N4 O4 SiP -4 b 213.421; 13.421; 8.528
90; 90; 90
1536.1Beaudoin, Daniel; Maris, Thierry; Wuest, James D.
Constructing monocrystalline covalent organic networks by polymerization
Nature Chemistry, 2013, 5, 830-834
1516321 CIFC34 H28 N4 O4P 42/n :215.7703; 15.7703; 7.0717
90; 90; 90
1758.75Beaudoin, Daniel; Maris, Thierry; Wuest, James D.
Constructing monocrystalline covalent organic networks by polymerization
Nature Chemistry, 2013, 5, 830-834
1547481 CIFC68 H55 Ca F9 Mn3 N6 O20 S3P 1 21/c 113.5027; 19.1805; 27.433
90; 91.337; 90
7102.9Tsui, Emily Y.; Tran, Rosalie; Yano, Junko; Agapie, Theodor
Redox-inactive metals modulate the reduction potential in heterometallic manganese-oxido clusters
Nature Chemistry, 2013, 5, 293-299
1547482 CIFC64 H45 Ca F9 Mn3 N6 O21 S3P -114.7053; 14.7735; 18.5085
69.988; 72.802; 69.91
3475.2Tsui, Emily Y.; Tran, Rosalie; Yano, Junko; Agapie, Theodor
Redox-inactive metals modulate the reduction potential in heterometallic manganese-oxido clusters
Nature Chemistry, 2013, 5, 293-299
1547483 CIFC76 H65 Ca F6 Mn3 N6 O19 S2P 1 21/c 111.679; 27.0308; 25.7452
90; 93.682; 90
8110.8Tsui, Emily Y.; Tran, Rosalie; Yano, Junko; Agapie, Theodor
Redox-inactive metals modulate the reduction potential in heterometallic manganese-oxido clusters
Nature Chemistry, 2013, 5, 293-299
1547484 CIFC75 H57 Cl2 F9 Mn3 N6 O20 S3 SrP 1 21/n 116.0744; 26.0588; 20.2364
90; 105.055; 90
8185.7Tsui, Emily Y.; Tran, Rosalie; Yano, Junko; Agapie, Theodor
Redox-inactive metals modulate the reduction potential in heterometallic manganese-oxido clusters
Nature Chemistry, 2013, 5, 293-299
1547485 CIFC76 H65 F6 Mn3 N6 O19 S2 SrP 1 21/c 111.7071; 27.1019; 25.4494
90; 93.564; 90
8059.1Tsui, Emily Y.; Tran, Rosalie; Yano, Junko; Agapie, Theodor
Redox-inactive metals modulate the reduction potential in heterometallic manganese-oxido clusters
Nature Chemistry, 2013, 5, 293-299
1547486 CIFC67.4 H47.11 F9 Mn3 N7.7 O18 S3 ZnP -114.3484; 14.3923; 18.5632
72.643; 73.273; 70.956
3380.7Tsui, Emily Y.; Tran, Rosalie; Yano, Junko; Agapie, Theodor
Redox-inactive metals modulate the reduction potential in heterometallic manganese-oxido clusters
Nature Chemistry, 2013, 5, 293-299
1547487 CIFC126 H90 F12 Mn6 N12 Na2 O31.74 S4P -113.5641; 15.0073; 16.813
102.848; 109.783; 93.581
3104.3Tsui, Emily Y.; Tran, Rosalie; Yano, Junko; Agapie, Theodor
Redox-inactive metals modulate the reduction potential in heterometallic manganese-oxido clusters
Nature Chemistry, 2013, 5, 293-299
1547488 CIFC72 H65 F9 Mn3 N6 O21 S3 YP 1 21/c 114.7253; 25.28; 23.717
90; 102.212; 90
8629Tsui, Emily Y.; Tran, Rosalie; Yano, Junko; Agapie, Theodor
Redox-inactive metals modulate the reduction potential in heterometallic manganese-oxido clusters
Nature Chemistry, 2013, 5, 293-299
1551334 CIFC19 H21 Br O10C 1 2 128.107; 6.679; 13.398
90; 117.776; 90
2225.4Tobias N. Hoheisel; Stephen Schrettl; Roman Marty; Tanya K. Todorova; Clemence Corminboeuf; Andrzej Sienkiewicz; Rosario Scopelliti; W. Bernd Schweizer; Holger Frauenrath
A multistep single-crystal-to-single-crystal bromodiacetylene dimerization
Nature Chemistry, 2013, 5, 327-334
1551335 CIFC19 H21 Br O10C 1 2 128.5038; 6.6628; 13.4137
90; 117.232; 90
2265.1Tobias N. Hoheisel; Stephen Schrettl; Roman Marty; Tanya K. Todorova; Clemence Corminboeuf; Andrzej Sienkiewicz; Rosario Scopelliti; W. Bernd Schweizer; Holger Frauenrath
A multistep single-crystal-to-single-crystal bromodiacetylene dimerization
Nature Chemistry, 2013, 5, 327-334
1551336 CIFC19 H21 Br O10P 21 21 217.2835; 12.3657; 24.4205
90; 90; 90
2199.45Tobias N. Hoheisel; Stephen Schrettl; Roman Marty; Tanya K. Todorova; Clemence Corminboeuf; Andrzej Sienkiewicz; Rosario Scopelliti; W. Bernd Schweizer; Holger Frauenrath
A multistep single-crystal-to-single-crystal bromodiacetylene dimerization
Nature Chemistry, 2013, 5, 327-334
1551390 CIFC65 H65 N5P -113.52; 14.217; 17.557
103.495; 103.098; 102.405
3065.8Semin Lee; Chun-Hsing Chen; Amar H. Flood
A pentagonal cyanostar macrocycle with cyanostilbene CH donors binds anions and forms dialkylphosphate [3]rotaxanes
Nature Chemistry, 2013, 5, 704-710
1551391 CIFC174 H196 N17 O13.5 PP -117.781; 18.62; 31.361
74.262; 76.314; 66.192
9048Semin Lee; Chun-Hsing Chen; Amar H. Flood
A pentagonal cyanostar macrocycle with cyanostilbene CH donors binds anions and forms dialkylphosphate [3]rotaxanes
Nature Chemistry, 2013, 5, 704-710
1551419 CIFC37 H50 N2 O11P 1 21 110.5002; 10.3073; 16.5868
90; 93.853; 90
1791.1Russell R. A. Kitson; Chuan-Hsin Chang; Rui Xiong; Huw E. L. Williams; Adrienne L. Davis; William Lewis; Donna L. Dehn; David Siegel; S. Mark Roe; Chrisostomos Prodromou; David Ross; Christopher J. Moody
Synthesis of 19-substituted geldanamycins with altered conformations and their binding to heat shock protein Hsp90
Nature Chemistry, 2013, 5, 307-314
1551486 CIFC30 H32 F4 I2 N6 O4P -16.3339; 15.5864; 17.6362
88.14; 83.243; 78.306
1693Lorenzo Meazza; Jonathan A. Foster; Katharina Fucke; Pierangelo Metrangolo; Giuseppe Resnati; Jonathan W. Steed
Halogen-bonding-triggered supramolecular gel formation
Nature Chemistry, 2013, 5, 42-47
1551487 CIFC22 H20 F4 I2 N6 O2P 1 21/c 14.6214; 9.4623; 28.332
90; 91.188; 90
1238.7Lorenzo Meazza; Jonathan A. Foster; Katharina Fucke; Pierangelo Metrangolo; Giuseppe Resnati; Jonathan W. Steed
Halogen-bonding-triggered supramolecular gel formation
Nature Chemistry, 2013, 5, 42-47
1551489 CIFC84 H34 Cl8P -110.181; 16.443; 18.458
72.977; 83.516; 72.387
2815.1Katsuaki Kawasumi; Qianyan Zhang; Yasutomo Segawa; Lawrence T. Scott; Kenichiro Itami
A grossly warped nanographene and the consequences of multiple odd-membered-ring defects
Nature Chemistry, 2013, 5, 739-744
1551546 CIFC43 H54 N2 O3P -19.414; 9.4615; 23.4843
87.8308; 79.2432; 63.911
1843.3Lixu Yang; Catherine Adam; Gary S. Nichol; Scott L. Cockroft
How much do van der Waals dispersion forces contribute to molecular recognition in solution?
Nature Chemistry, 2013, 5, 1006-1010
1551874 CIFC135.75 H59.5 Gd2 N4 NiP 1 21/c 120.4825; 14.8334; 25.3877
90; 96.261; 90
7667.4Jianyuan Zhang; Faye L. Bowles; Daniel W. Bearden; W. Keith Ray; Tim Fuhrer; Youqing Ye; Caitlyn Dixon; Kim Harich; Richard F. Helm; Marilyn M. Olmstead; Alan L. Balch; Harry C. Dorn
A missing link in the transformation from asymmetric to symmetric metallofullerene cages implies a top-down fullerene formation mechanism
Nature Chemistry, 2013, 5, 880-885
1551875 CIFC29 H46 Ir N5 P2F d d 219.853; 42.232; 14.782
90; 90; 90
12393.7Stefan Michlik; Rhett Kempe
A sustainable catalytic pyrrole synthesis
Nature Chemistry, 2013, 5, 140-144
1551876 CIFC33 H47 Ir N5 P2P 3223.001; 23.001; 17.621
90; 90; 120
8073.4Stefan Michlik; Rhett Kempe
A sustainable catalytic pyrrole synthesis
Nature Chemistry, 2013, 5, 140-144
1551877 CIFC114.75 H141 N12C 2 2 2128.3772; 35.137; 21.3407
90; 90; 90
21279Tamoghna Mitra; Kim E. Jelfs; Marc Schmidtmann; Adham Ahmed; Samantha Y. Chong; Dave J. Adams; Andrew I. Cooper
Molecular shape sorting using molecular organic cages
Nature Chemistry, 2013, 5, 276-281
1551878 CIFC108 H129 N12P 21 21 2120.515; 28.04; 35.607
90; 90; 90
20483Tamoghna Mitra; Kim E. Jelfs; Marc Schmidtmann; Adham Ahmed; Samantha Y. Chong; Dave J. Adams; Andrew I. Cooper
Molecular shape sorting using molecular organic cages
Nature Chemistry, 2013, 5, 276-281
1551879 CIFC88 H104 N12I 1 2 117.5354; 18.0598; 24.493
90; 90.554; 90
7756.2Tamoghna Mitra; Kim E. Jelfs; Marc Schmidtmann; Adham Ahmed; Samantha Y. Chong; Dave J. Adams; Andrew I. Cooper
Molecular shape sorting using molecular organic cages
Nature Chemistry, 2013, 5, 276-281
1551880 CIFC88 H104 N12I 1 2 117.701; 18.026; 24.9002
90; 90.293; 90
7945Tamoghna Mitra; Kim E. Jelfs; Marc Schmidtmann; Adham Ahmed; Samantha Y. Chong; Dave J. Adams; Andrew I. Cooper
Molecular shape sorting using molecular organic cages
Nature Chemistry, 2013, 5, 276-281
1551881 CIFC18 H16.19 Br N2 O1.6P 1 21 17.4574; 5.66; 19.1444
90; 97.282; 90
801.55Ling Li; Chao-Yuan Wang; Rongcai Huang; Mark R. Biscoe
Stereoretentive Pd-catalysed Stille cross-coupling reactions of secondary alkyl azastannatranes and aryl halides
Nature Chemistry, 2013, 5, 607-612
1552029 CIFC65 H57 Cl6 O3 Os P3P 1 21/n 113.8326; 28.3948; 15.8845
90; 109.685; 90
5874.4Congqing Zhu; Shunhua Li; Ming Luo; Xiaoxi Zhou; Yufen Niu; Minglian Lin; Jun Zhu; Zexing Cao; Xin Lu; Tingbin Wen; Zhaoxiong Xie; Paul v. R. Schleyer; Haiping Xia
Stabilization of anti-aromatic and strained five-membered rings with a transition metal
Nature Chemistry, 2013, 5, 698-703
1552030 CIFC65 H58 B2 Cl5 F8 O3 Os P3P -113.8145; 15.1705; 17.3902
80.617; 81.263; 63.058
3192.9Congqing Zhu; Shunhua Li; Ming Luo; Xiaoxi Zhou; Yufen Niu; Minglian Lin; Jun Zhu; Zexing Cao; Xin Lu; Tingbin Wen; Zhaoxiong Xie; Paul v. R. Schleyer; Haiping Xia
Stabilization of anti-aromatic and strained five-membered rings with a transition metal
Nature Chemistry, 2013, 5, 698-703
1552031 CIFC67.5 H60 B Cl5.5 F4 O2 Os P3 SP 1 21/n 113.501; 11.592; 41.963
90; 93.416; 90
6555.7Congqing Zhu; Shunhua Li; Ming Luo; Xiaoxi Zhou; Yufen Niu; Minglian Lin; Jun Zhu; Zexing Cao; Xin Lu; Tingbin Wen; Zhaoxiong Xie; Paul v. R. Schleyer; Haiping Xia
Stabilization of anti-aromatic and strained five-membered rings with a transition metal
Nature Chemistry, 2013, 5, 698-703
1552032 CIFC70 H58 B Cl F4 N O2 Os P3P -111.9255; 16.0492; 16.8145
66.863; 80.698; 80.809
2904Congqing Zhu; Shunhua Li; Ming Luo; Xiaoxi Zhou; Yufen Niu; Minglian Lin; Jun Zhu; Zexing Cao; Xin Lu; Tingbin Wen; Zhaoxiong Xie; Paul v. R. Schleyer; Haiping Xia
Stabilization of anti-aromatic and strained five-membered rings with a transition metal
Nature Chemistry, 2013, 5, 698-703
1552038 CIFC52 H58 B Cl2 Fe2 N O S2P 1 21/n 111.6074; 27.348; 15.1345
90; 97.21; 90
4766.3Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552039 CIFC26 H34 Fe2 S2P -110.788; 15.1458; 16.0306
85.671; 80.231; 70.333
2430.25Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552040 CIFC30 H44 F6 Fe2 N2 O P S2P 1 21/n 110.782; 11.971; 27.44
90; 97.181; 90
3514Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552041 CIFC27 H38 Fe2 N2 S2C m c 2120.976; 8.383; 15.189
90; 90; 90
2671Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552042 CIFC27 H38 F6 Fe2 N2 P S2P 1 21/n 111.8105; 21.889; 12.4062
90; 105.239; 90
3094.5Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552043 CIFC66 H65 B F24 Fe2 N2 O2 S2P -113.0962; 17.5004; 19.4221
113.607; 96.424; 108.902
3705.95Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552044 CIFC51 H59 B Fe2 N2 S2P 1 21/n 112.79; 9.938; 36.438
90; 100.079; 90
4560Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552045 CIFC50 H56 B Fe2 N S2P 1 21/c 112.471; 19.5462; 18.2725
90; 90.138; 90
4454.1Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552046 CIFC51 H58 B Fe2 N S2P 1 21/c 112.5508; 19.5577; 18.2624
90; 90.383; 90
4482.7Yang Li; Ying Li; Baomin Wang; Yi Luo; Dawei Yang; Peng Tong; Jinfeng Zhao; Lun Luo; Yuhan Zhou; Si Chen; Fang Cheng; Jingping Qu
Ammonia formation by a thiolate-bridged diiron amide complex as a nitrogenase mimic
Nature Chemistry, 2013, 5, 320-326
1552050 CIFC22 H31 N2 O3 P RuP 1 21/c 18.246; 16.988; 16.411
90; 101.3; 90
2254.3Ekambaram Balaraman; Eugene Khaskin; Gregory Leitus; David Milstein
Catalytic transformation of alcohols to carboxylic acid salts and H2 using water as the oxygen atom source
Nature Chemistry, 2013, 5, 122-125
1552063 CIFC39 H42 Br N O10P 18.0123; 9.5367; 12.5723
76.698; 83.324; 77.616
910.87Gang Liu; Morgan E. Shirley; Khoi N. Van; Rae Lynn McFarlin; Daniel Romo
Rapid assembly of complex cyclopentanes employing chiral, alpha,beta-unsaturated acylammonium intermediates
Nature Chemistry, 2013, 5, 1049-1057
1552064 CIFC18 H22 Br N O6C 1 2 125.835; 10.3517; 7.2252
90; 102.657; 90
1885.3Gang Liu; Morgan E. Shirley; Khoi N. Van; Rae Lynn McFarlin; Daniel Romo
Rapid assembly of complex cyclopentanes employing chiral, alpha,beta-unsaturated acylammonium intermediates
Nature Chemistry, 2013, 5, 1049-1057
1552065 CIFC12 H16 O6P -16.891; 9.592; 10.273
102.611; 90.215; 106.979
632.1Gang Liu; Morgan E. Shirley; Khoi N. Van; Rae Lynn McFarlin; Daniel Romo
Rapid assembly of complex cyclopentanes employing chiral, alpha,beta-unsaturated acylammonium intermediates
Nature Chemistry, 2013, 5, 1049-1057
1552066 CIFC17 H18 O6P 1 21/c 19.695; 13.257; 12.556
90; 106.298; 90
1548.9Gang Liu; Morgan E. Shirley; Khoi N. Van; Rae Lynn McFarlin; Daniel Romo
Rapid assembly of complex cyclopentanes employing chiral, alpha,beta-unsaturated acylammonium intermediates
Nature Chemistry, 2013, 5, 1049-1057
1552067 CIFC14 H18 O6P 21 21 218.9133; 12.178; 12.9803
90; 90; 90
1408.96Gang Liu; Morgan E. Shirley; Khoi N. Van; Rae Lynn McFarlin; Daniel Romo
Rapid assembly of complex cyclopentanes employing chiral, alpha,beta-unsaturated acylammonium intermediates
Nature Chemistry, 2013, 5, 1049-1057
1552068 CIFC13 H18 O6P 1 21/n 16.8942; 8.0356; 23.889
90; 90.741; 90
1323.3Gang Liu; Morgan E. Shirley; Khoi N. Van; Rae Lynn McFarlin; Daniel Romo
Rapid assembly of complex cyclopentanes employing chiral, alpha,beta-unsaturated acylammonium intermediates
Nature Chemistry, 2013, 5, 1049-1057

Left arrow Left arrow First | Left arrow Previous 50 | of 2 | Next 50 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

Back to the search form
Your own data is not in the COD? Deposit it, thanks!