Crystallography Open Database

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Searching journal of publication like 'Chemical Communications' volume of publication is 48

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7108677 CIFC38 H68 Cl2 Ge N2 O P2P 1 21/n 112.4821; 19.3868; 19.0651
90; 103.496; 90
4486.1Matthias Driess; Yun Xiong; Shenglai Yao; Andreas Berkefeld; Shigeyoshi Inoue
Germyliumylidene [ClGe:]+and Germathionium [ClGe=S]+ Supported by 1,8-bis(Tributylphosphazenyl)naphthalene
Chem.Commun., 2012, 48, 12198
7108678 CIFC38 H68 Cl2 Ge N2 O P2 SP 1 21/c 111.5878; 17.8076; 21.8753
90; 105.55; 90
4348.8Matthias Driess; Yun Xiong; Shenglai Yao; Andreas Berkefeld; Shigeyoshi Inoue
Germyliumylidene [ClGe:]+and Germathionium [ClGe=S]+ Supported by 1,8-bis(Tributylphosphazenyl)naphthalene
Chem.Commun., 2012, 48, 12198
7108679 CIFCu H42 N10 O61 W18I 2 m m13.5226; 17.5596; 17.9569
90; 90; 90
4263.9Xin Xu; Huan-Li Dong; Rui-Li Sang; Li Xu
Unprecedented Dawson isomerism induced by a central [WO5] and four 45^o^-rotated belt square pyramids
Chem.Commun., 2012, 48, 12177
7108680 CIFC34 H20 Cl2 S4F d d 260.299; 19.5214; 9.5973
90; 90; 90
11297.2Kamaljit Singh; Tarunpreet Singh Virk; Jing Zhang; Wei Xu; Daoben Zhu
Neutral tetrathia[22]annulene[2.1.2.1] based field-effect transistors: improved on/off ratio defies ring puckering
Chem.Commun., 2012, 48, 12174
7108681 CIFC34 H38 Fe N2 O2P -111.086; 11.68; 13.261
59.84; 75.33; 84.57
1435Daisuke Noda; Yusuke Sunada; Takuji Hatakeyama; Masaharu Nakamura; Hideo Nagashima
Iron promoted conjugate addition: implication of the six-centered mechanism based on the isolation of the iron-enolate intermediate
Chem.Commun., 2012, 48, 12231
7108682 CIFC56 H66 Fe N2 O4P 1 21/c 111.523; 31.766; 14.061
90; 105.738; 90
4953.9Daisuke Noda; Yusuke Sunada; Takuji Hatakeyama; Masaharu Nakamura; Hideo Nagashima
Iron promoted conjugate addition: implication of the six-centered mechanism based on the isolation of the iron-enolate intermediate
Chem.Commun., 2012, 48, 12231
7108683 CIFC60 H46 Cl2 N4 NiP -112.6484; 12.7069; 15.9544
89.157; 77.167; 88.118
2498.8Eustina Batisai; Matteo Lusi; Tia Jacobs; Leonard J. Barbour
A mechanochemically synthesised solid solution enables engineering of the sorption properties of a Werner clathrate
Chem.Commun., 2012, 48, 12171
7108684 CIFC76 H76 Cl2 N4 NiC 1 2/c 19.557; 23.899; 27.482
90; 97.806; 90
6218.8Eustina Batisai; Matteo Lusi; Tia Jacobs; Leonard J. Barbour
A mechanochemically synthesised solid solution enables engineering of the sorption properties of a Werner clathrate
Chem.Commun., 2012, 48, 12171
7108685 CIFC76 H52 Cl2 N4 NiC 1 2/c 19.6749; 23.1727; 28.2174
90; 95.526; 90
6296.8Eustina Batisai; Matteo Lusi; Tia Jacobs; Leonard J. Barbour
A mechanochemically synthesised solid solution enables engineering of the sorption properties of a Werner clathrate
Chem.Commun., 2012, 48, 12171
7108686 CIFC76 H76 Cl2 Co N4C 1 2/c 19.555; 24.019; 27.58
90; 98.02; 90
6268Eustina Batisai; Matteo Lusi; Tia Jacobs; Leonard J. Barbour
A mechanochemically synthesised solid solution enables engineering of the sorption properties of a Werner clathrate
Chem.Commun., 2012, 48, 12171
7108687 CIFC73.34 H56 Cl2 Co N4C 1 2/c 19.7131; 23.566; 28.167
90; 96.357; 90
6408Eustina Batisai; Matteo Lusi; Tia Jacobs; Leonard J. Barbour
A mechanochemically synthesised solid solution enables engineering of the sorption properties of a Werner clathrate
Chem.Commun., 2012, 48, 12171
7108688 CIFC76 H76 Cl2 Co N4C 1 2/c 123.48; 11.315; 23.479
90; 91.59; 90
6235.4Eustina Batisai; Matteo Lusi; Tia Jacobs; Leonard J. Barbour
A mechanochemically synthesised solid solution enables engineering of the sorption properties of a Werner clathrate
Chem.Commun., 2012, 48, 12171
7108689 CIFC44 H36 Cl2 Co N4C 1 2/c 19.273; 23.801; 21.313
90; 98.13; 90
4656.6Eustina Batisai; Matteo Lusi; Tia Jacobs; Leonard J. Barbour
A mechanochemically synthesised solid solution enables engineering of the sorption properties of a Werner clathrate
Chem.Commun., 2012, 48, 12171
7108690 CIFC44.82 H38.45 Cl2 N4 Ni O0.82P 21 21 2112.3778; 16.212; 19.398
90; 90; 90
3892.6Eustina Batisai; Matteo Lusi; Tia Jacobs; Leonard J. Barbour
A mechanochemically synthesised solid solution enables engineering of the sorption properties of a Werner clathrate
Chem.Commun., 2012, 48, 12171
7108691 CIFC24 H18 Br N O2 SP 1 21/c 15.141; 14.936; 31.333
90; 91.688; 90
2405Tian-Lin Liu; Heng-Xia Zhang; Yan Zheng; Qingwei Yao; Jun-An Ma
Catalytic enantioselective addition of terminal 1,3-diynes to N-sulfonyl aldimines: access to chiral diynylated carbinamines
Chem.Commun., 2012, 48, 12234
7108692 CIFC24 H48 Gd2 Mn3 O42F d -3 c :226.1065; 26.1065; 26.1065
90; 90; 90
17792.9Fu-Sheng Guo; Yan-Cong Chen; Jun-Liang Liu; Ji-Dong Leng; Zhao-Sha Meng; Peter Vrabel; Martin Orendac; Ming-Liang Tong
A large cryogenic magnetocaloric effect exhibited at low field by a 3D ferromagnetically coupled Mn(II)-Gd(III) framework material
Chem.Commun., 2012, 48, 12219
7112514 CIFC26 H20 Br N3 OP -19.9984; 10.6788; 12.6094
68.7577; 86.7228; 66.0269
1140.17Shao, Jiaan; Yu, Wanwan; Shao, Zhanying; Yu, Yongping
A "one-pot" multicomponent approach to polysubstituted 4-aminopyridines.
Chemical communications (Cambridge, England), 2012, 48, 2785-2787
7112515 CIFC25 H21 Br N4 OP 1 21/c 114.3833; 11.4881; 14.3173
90; 107.727; 90
2253.4Shao, Jiaan; Yu, Wanwan; Shao, Zhanying; Yu, Yongping
A "one-pot" multicomponent approach to polysubstituted 4-aminopyridines.
Chemical communications (Cambridge, England), 2012, 48, 2785-2787
7112516 CIFC2 H5 N O2P 317.0111; 7.0111; 5.4843
90; 90; 120
233.47Ishikawa, Kazuhiko; Tanaka, Masahito; Suzuki, Toshiya; Sekine, Akiko; Kawasaki, Tsuneomi; Soai, Kenso; Shiro, Motoo; Lahav, Meir; Asahi, Toru
Absolute chirality of the γ-polymorph of glycine: correlation of the absolute structure with the optical rotation.
Chemical communications (Cambridge, England), 2012, 48, 6031
7112517 CIFC2 H5 N O2P 327.01706; 7.01706; 5.48499
90; 90; 120
233.893Ishikawa, Kazuhiko; Tanaka, Masahito; Suzuki, Toshiya; Sekine, Akiko; Kawasaki, Tsuneomi; Soai, Kenso; Shiro, Motoo; Lahav, Meir; Asahi, Toru
Absolute chirality of the γ-polymorph of glycine: correlation of the absolute structure with the optical rotation.
Chemical communications (Cambridge, England), 2012, 48, 6031

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