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Searching journal of publication like 'Inorganic Chemistry' volume of publication is 52

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4331706 CIFC144 H131 Cl4 N12 O60 Y7P 3 2 116.955; 16.955; 14.653
90; 90; 120
3648Wei-Hui Fang; Lin Cheng; Ling Huang; Guo-Yu Yang
A Series of Lanthanide-Based Cluster Organic Frameworks Made of Heptanuclear Trigonal-Prismatic Cluster Units
Inorganic Chemistry, 2013, 52, 6-8
4331708 CIFC144 H131 Cl4 La7 N12 O60P 3 2 116.943; 16.943; 14.707
90; 90; 120
3656Wei-Hui Fang; Lin Cheng; Ling Huang; Guo-Yu Yang
A Series of Lanthanide-Based Cluster Organic Frameworks Made of Heptanuclear Trigonal-Prismatic Cluster Units
Inorganic Chemistry, 2013, 52, 6-8
4331710 CIFC144 H131 Cl4 Gd7 N12 O60P 3 2 117.061; 17.061; 14.757
90; 90; 120
3720Wei-Hui Fang; Lin Cheng; Ling Huang; Guo-Yu Yang
A Series of Lanthanide-Based Cluster Organic Frameworks Made of Heptanuclear Trigonal-Prismatic Cluster Units
Inorganic Chemistry, 2013, 52, 6-8
4331715 CIFC144 H127 Cl4 Dy7 N12 O58P 3 2 116.9779; 16.9779; 14.6965
90; 90; 120
3668.7Wei-Hui Fang; Lin Cheng; Ling Huang; Guo-Yu Yang
A Series of Lanthanide-Based Cluster Organic Frameworks Made of Heptanuclear Trigonal-Prismatic Cluster Units
Inorganic Chemistry, 2013, 52, 6-8
4331717 CIFC144 H127 Cl4 Er7 N12 O58P 3 2 116.9317; 16.9317; 14.6966
90; 90; 120
3648.8Wei-Hui Fang; Lin Cheng; Ling Huang; Guo-Yu Yang
A Series of Lanthanide-Based Cluster Organic Frameworks Made of Heptanuclear Trigonal-Prismatic Cluster Units
Inorganic Chemistry, 2013, 52, 6-8
4331719 CIFC144 H131 Cl4 N12 O60 Yb7P 3 2 116.923; 16.923; 14.646
90; 90; 120
3632Wei-Hui Fang; Lin Cheng; Ling Huang; Guo-Yu Yang
A Series of Lanthanide-Based Cluster Organic Frameworks Made of Heptanuclear Trigonal-Prismatic Cluster Units
Inorganic Chemistry, 2013, 52, 6-8
4331721 CIFK14.73 O182 P20 U22P 1 21/n 121.237; 30.031; 35.292
90; 96.174; 90
22378Jie Qiu; Kevin Nguyen; Laurent Jouffret; Jennifer E. S. Szymanowski; Peter C. Burns
Time-Resolved Assembly of Chiral Uranyl Peroxo Cage Clusters Containing Belts of Polyhedra
Inorganic Chemistry, 2013, 52, 337-345
4331722 CIFK12 O112 P12 U14C 1 2/c 137.79; 19.7033; 34.751
90; 101.701; 90
25337Jie Qiu; Kevin Nguyen; Laurent Jouffret; Jennifer E. S. Szymanowski; Peter C. Burns
Time-Resolved Assembly of Chiral Uranyl Peroxo Cage Clusters Containing Belts of Polyhedra
Inorganic Chemistry, 2013, 52, 337-345
4331724 CIFK10.06 Na4.01 O190 P20 U22P 1 21/n 121.601; 30.034; 35.349
90; 96.311; 90
22794Jie Qiu; Kevin Nguyen; Laurent Jouffret; Jennifer E. S. Szymanowski; Peter C. Burns
Time-Resolved Assembly of Chiral Uranyl Peroxo Cage Clusters Containing Belts of Polyhedra
Inorganic Chemistry, 2013, 52, 337-345
4331727 CIFC61 H35 B Cu F20 N3 P2P 1 21/c 19.2522; 35.88; 16.941
90; 105.4; 90
5422Michihiro Nishikawa; Kuniharu Nomoto; Shoko Kume; Hiroshi Nishihara
Solvated-Ion-Pairing-Sensitive Molecular Bistability Based on Copper(I)-Coordinated Pyrimidine Ring Rotation
Inorganic Chemistry, 2013, 52, 369-380
4331729 CIFC79 H58 B Cu F20 N3 O P2P -112.822; 15.851; 19.419
78.53; 84.282; 67.436
3570.7Michihiro Nishikawa; Kuniharu Nomoto; Shoko Kume; Hiroshi Nishihara
Solvated-Ion-Pairing-Sensitive Molecular Bistability Based on Copper(I)-Coordinated Pyrimidine Ring Rotation
Inorganic Chemistry, 2013, 52, 369-380
4331731 CIFC37.5 H36.5 B Cu F4 N3 O0.5 P2P -112.179; 15.881; 19.374
99.093; 95.012; 107.07
3501Michihiro Nishikawa; Kuniharu Nomoto; Shoko Kume; Hiroshi Nishihara
Solvated-Ion-Pairing-Sensitive Molecular Bistability Based on Copper(I)-Coordinated Pyrimidine Ring Rotation
Inorganic Chemistry, 2013, 52, 369-380
4331733 CIFC13 H18 N4 O S2P b c n17.893; 9.44; 18.631
90; 90; 90
3147Taka-aki Okamura; Yasuhito Ushijima; Yui Omi; Kiyotaka Onitsuka
Systematic Investigation of Relationship between Strength of NH...S Hydrogen Bond and Reactivity of Molybdoenzyme Models
Inorganic Chemistry, 2013, 52, 381-394
4331734 CIFC14 H21 N O S2P 1 21/c 116.1; 9.371; 10.051
90; 95.505; 90
1509.4Taka-aki Okamura; Yasuhito Ushijima; Yui Omi; Kiyotaka Onitsuka
Systematic Investigation of Relationship between Strength of NH...S Hydrogen Bond and Reactivity of Molybdoenzyme Models
Inorganic Chemistry, 2013, 52, 381-394
4331736 CIFC17 H27 N O S2C 1 2/c 120.503; 11.373; 16.802
90; 108.502; 90
3715.4Taka-aki Okamura; Yasuhito Ushijima; Yui Omi; Kiyotaka Onitsuka
Systematic Investigation of Relationship between Strength of NH...S Hydrogen Bond and Reactivity of Molybdoenzyme Models
Inorganic Chemistry, 2013, 52, 381-394
4331737 CIFC32 H33 N O S2P 1 21/n 17.7754; 15.348; 45.162
90; 92.095; 90
5385.9Taka-aki Okamura; Yasuhito Ushijima; Yui Omi; Kiyotaka Onitsuka
Systematic Investigation of Relationship between Strength of NH...S Hydrogen Bond and Reactivity of Molybdoenzyme Models
Inorganic Chemistry, 2013, 52, 381-394
4331739 CIFC76 H50 Cl2 Fe O15 S48C 1 2/c 144.603; 10.6036; 25.964
90; 123.738; 90
10212Luca Pilia; Elisa Sessini; Flavia Artizzu; Masahiro Yamashita; Angela Serpe; Kazuya Kubo; Hiroshi Ito; Hisaaki Tanaka; Shin-ichi Kuroda; Jun-ichi Yamada; Paola Deplano; Carlos J. Gómez-García; Maria Laura Mercuri
New BDH-TTP/[MIII(C5O5)3]3- (M = Fe, Ga) Isostructural Molecular Metals
Inorganic Chemistry, 2013, 52, 423-430
4331741 CIFC76 H50 Cl2 Ga O15 S48C 1 2/c 144.006; 10.5748; 26.171
90; 123.807; 90
10120Luca Pilia; Elisa Sessini; Flavia Artizzu; Masahiro Yamashita; Angela Serpe; Kazuya Kubo; Hiroshi Ito; Hisaaki Tanaka; Shin-ichi Kuroda; Jun-ichi Yamada; Paola Deplano; Carlos J. Gómez-García; Maria Laura Mercuri
New BDH-TTP/[MIII(C5O5)3]3- (M = Fe, Ga) Isostructural Molecular Metals
Inorganic Chemistry, 2013, 52, 423-430
4331743 CIFC18 H12 Cu3 N15P -19.022; 10.445; 12.295
71.225; 75.08; 70.25
1018Tian Wen; De-Xiang Zhang; Jian Zhang
Two-Dimensional Copper(I) Coordination Polymer Materials as Photocatalysts for the Degradation of Organic Dyes
Inorganic Chemistry, 2013, 52, 12-14
4331745 CIFC6 H4 Cu N5P -15.8132; 7.9619; 8.2074
67.801; 74.775; 83.256
339.3Tian Wen; De-Xiang Zhang; Jian Zhang
Two-Dimensional Copper(I) Coordination Polymer Materials as Photocatalysts for the Degradation of Organic Dyes
Inorganic Chemistry, 2013, 52, 12-14
4331746 CIFC7 H6 O8 S UP b c n20.8194; 7.8416; 13.0646
90; 90; 90
2132.89Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331748 CIFC18 H16 N2 O16 S2 U2P 1 21/c 17.8894; 12.0629; 13.3182
90; 94.573; 90
1263.45Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331750 CIFC34 H36 N4 O17 S2 UC 1 2/c 124.4982; 9.9823; 18.6719
90; 122.155; 90
3865.8Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331751 CIFC48 H36 N4 O24 S4 U2P 1 21/c 110.7449; 23.4648; 10.1872
90; 95.448; 90
2556.87Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331757 CIFC41 H40 N4 O24 S3 U2P 1 21/n 110.743; 32.178; 14.3508
90; 100.324; 90
4880.6Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331760 CIFC29 H41 N2 O21.5 S3 U2P -114.8569; 16.3899; 20.0779
88.442; 70.273; 66.815
4198.7Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331762 CIFC22 H32 N2 O18 S2 U3P -17.0444; 10.6214; 11.5329
83.349; 87.808; 80.027
844Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331764 CIFC40 H54 N4 O38 S4 U5P 1 21/n 113.3465; 28.5557; 16.3283
90; 97.2807; 90
6172.84Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331766 CIFC68 H52 Cu2 N8 O26 S4 U2P -111.1314; 12.7398; 13.4514
89.413; 88.893; 64.583
1722.6Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331768 CIFC48 H48 Cu2 N4 O32 S4 U2P 1 21/n 111.2043; 15.0029; 17.9274
90; 96.5021; 90
2994.16Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331770 CIFC36 H30 Cu2 N4 O28 S4 U2P -19.0904; 11.3426; 13.3583
73.018; 78.884; 67.506
1211.95Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331772 CIFC22 H24 N4 Ni O17 S2 UC 1 2/c 131.8326; 10.7066; 18.2942
90; 96.9464; 90
6189.24Pierre Thuéry
Sulfonate Complexes of Actinide Ions: Structural Diversity in Uranyl Complexes with 2-Sulfobenzoate
Inorganic Chemistry, 2013, 52, 435-447
4331774 CIFC36 H30 Fe0.5 N3 O6 P2C 1 2/c 116.6357; 20.3175; 20.8288
90; 109.829; 90
6622.6Fu-Te Tsai; Yu-Ching Lee; Ming-Hsi Chiang; Wen-Feng Liaw
Nitrate-to-Nitrite-to-Nitric Oxide Conversion Modulated by Nitrate-Containing {Fe(NO)2}9 Dinitrosyl Iron Complex (DNIC)
Inorganic Chemistry, 2013, 52, 464-473
4331776 CIFC72 H60 Fe N7 O13 P4P 21 21 2117.1157; 19.5781; 19.9696
90; 90; 90
6691.7Fu-Te Tsai; Yu-Ching Lee; Ming-Hsi Chiang; Wen-Feng Liaw
Nitrate-to-Nitrite-to-Nitric Oxide Conversion Modulated by Nitrate-Containing {Fe(NO)2}9 Dinitrosyl Iron Complex (DNIC)
Inorganic Chemistry, 2013, 52, 464-473
4331778 CIFC36 H30 Fe N5 O8 P2P -19.8407; 11.8917; 16.5043
70.701; 79.615; 83.697
1790.4Fu-Te Tsai; Yu-Ching Lee; Ming-Hsi Chiang; Wen-Feng Liaw
Nitrate-to-Nitrite-to-Nitric Oxide Conversion Modulated by Nitrate-Containing {Fe(NO)2}9 Dinitrosyl Iron Complex (DNIC)
Inorganic Chemistry, 2013, 52, 464-473
4331780 CIFC36 H30 Fe N5 O7 P2P -19.7749; 11.7024; 16.6531
70.212; 79.947; 83.221
1761.4Fu-Te Tsai; Yu-Ching Lee; Ming-Hsi Chiang; Wen-Feng Liaw
Nitrate-to-Nitrite-to-Nitric Oxide Conversion Modulated by Nitrate-Containing {Fe(NO)2}9 Dinitrosyl Iron Complex (DNIC)
Inorganic Chemistry, 2013, 52, 464-473
4331781 CIFC72 H60 Fe N7 O11 P4P 21 21 2117.1087; 19.2498; 19.8943
90; 90; 90
6552Fu-Te Tsai; Yu-Ching Lee; Ming-Hsi Chiang; Wen-Feng Liaw
Nitrate-to-Nitrite-to-Nitric Oxide Conversion Modulated by Nitrate-Containing {Fe(NO)2}9 Dinitrosyl Iron Complex (DNIC)
Inorganic Chemistry, 2013, 52, 464-473
4331783 CIFC10 H20 Fe N4 O3 S4P 1 21/c 110.1784; 16.0459; 11.2136
90; 101.659; 90
1793.64Fu-Te Tsai; Yu-Ching Lee; Ming-Hsi Chiang; Wen-Feng Liaw
Nitrate-to-Nitrite-to-Nitric Oxide Conversion Modulated by Nitrate-Containing {Fe(NO)2}9 Dinitrosyl Iron Complex (DNIC)
Inorganic Chemistry, 2013, 52, 464-473
4331784 CIFC130 H210 Mn12 N8 O98 Tb6P -119.6524; 21.3716; 26.7943
95.474; 98.128; 115.139
9932.5Jun-Liang Liu; Wei-Quan Lin; Yan-Cong Chen; Ji-Dong Leng; Fu-Sheng Guo; Ming-Liang Tong
Symmetry-Related [LnIII6MnIII12] Clusters toward Single-Molecule Magnets and Cryogenic Magnetic Refrigerants
Inorganic Chemistry, 2013, 52, 457-463
4331786 CIFC122 H190 Gd6 Mn12 N8 O88F d d d :222.6535; 37.36; 46.159
90; 90; 90
39066Jun-Liang Liu; Wei-Quan Lin; Yan-Cong Chen; Ji-Dong Leng; Fu-Sheng Guo; Ming-Liang Tong
Symmetry-Related [LnIII6MnIII12] Clusters toward Single-Molecule Magnets and Cryogenic Magnetic Refrigerants
Inorganic Chemistry, 2013, 52, 457-463
4331788 CIFC123 H194 Mn12 N8 O89 Tb6F d d d :222.837; 37.3301; 46.178
90; 90; 90
39367Jun-Liang Liu; Wei-Quan Lin; Yan-Cong Chen; Ji-Dong Leng; Fu-Sheng Guo; Ming-Liang Tong
Symmetry-Related [LnIII6MnIII12] Clusters toward Single-Molecule Magnets and Cryogenic Magnetic Refrigerants
Inorganic Chemistry, 2013, 52, 457-463
4331790 CIFC140 H234 Gd6 Mn12 N8 O100P -119.5839; 20.1363; 26.3657
81.921; 89.758; 66.47
9422.7Jun-Liang Liu; Wei-Quan Lin; Yan-Cong Chen; Ji-Dong Leng; Fu-Sheng Guo; Ming-Liang Tong
Symmetry-Related [LnIII6MnIII12] Clusters toward Single-Molecule Magnets and Cryogenic Magnetic Refrigerants
Inorganic Chemistry, 2013, 52, 457-463
4331792 CIFAl3 Ba3 P5R -3 c :H14.5886; 14.5886; 28.99
90; 90; 120
5343.3Hua He; Chauntae Tyson; Maia Saito; Svilen Bobev
Synthesis, Crystal and Electronic Structures of the New Zintl phases Ba3Al3Pn5 (Pn= P, As) and Ba3Ga3P5
Inorganic Chemistry, 2013, 52, 499-505
4331794 CIFBa3 Ga3 P5R -3 c :H14.613; 14.613; 28.884
90; 90; 120
5342Hua He; Chauntae Tyson; Maia Saito; Svilen Bobev
Synthesis, Crystal and Electronic Structures of the New Zintl phases Ba3Al3Pn5 (Pn= P, As) and Ba3Ga3P5
Inorganic Chemistry, 2013, 52, 499-505
4331796 CIFAl3 As5 Ba3R -3 c :H14.9727; 14.9727; 29.689
90; 90; 120
5764Hua He; Chauntae Tyson; Maia Saito; Svilen Bobev
Synthesis, Crystal and Electronic Structures of the New Zintl phases Ba3Al3Pn5 (Pn= P, As) and Ba3Ga3P5
Inorganic Chemistry, 2013, 52, 499-505
4331798 CIFC11 H16 Ga I3 N2 O2P 21 21 219.5949; 11.7875; 15.4661
90; 90; 90
1749.21Ahmad El-Hellani; Julien Monot; Régis Guillot; Christophe Bour; Vincent Gandon
Molecular versus Ionic Structures in Adducts of GaX3 with Monodentate Carbon-Based Ligands
Inorganic Chemistry, 2013, 52, 506-514
4331800 CIFC5 H8 Cl3 Ga N2C 1 2/c 114.4493; 10.1648; 14.2848
90; 110.969; 90
1959.12Ahmad El-Hellani; Julien Monot; Régis Guillot; Christophe Bour; Vincent Gandon
Molecular versus Ionic Structures in Adducts of GaX3 with Monodentate Carbon-Based Ligands
Inorganic Chemistry, 2013, 52, 506-514
4331802 CIFC12 H20 Cl6 Ga2 N4P 1 21/m 16.071; 12.924; 13.592
90; 93.27; 90
1064.7Ahmad El-Hellani; Julien Monot; Régis Guillot; Christophe Bour; Vincent Gandon
Molecular versus Ionic Structures in Adducts of GaX3 with Monodentate Carbon-Based Ligands
Inorganic Chemistry, 2013, 52, 506-514
4331803 CIFC24 H36 Cl10 Ga2 N4 O4C 1 c 122.605; 13.272; 12.436
90; 91.346; 90
3730Ahmad El-Hellani; Julien Monot; Régis Guillot; Christophe Bour; Vincent Gandon
Molecular versus Ionic Structures in Adducts of GaX3 with Monodentate Carbon-Based Ligands
Inorganic Chemistry, 2013, 52, 506-514
4331805 CIFC11 H16 Br3 Ga N2 O2P 21 21 219.4112; 11.2663; 15.299
90; 90; 90
1622.14Ahmad El-Hellani; Julien Monot; Régis Guillot; Christophe Bour; Vincent Gandon
Molecular versus Ionic Structures in Adducts of GaX3 with Monodentate Carbon-Based Ligands
Inorganic Chemistry, 2013, 52, 506-514

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