Crystallography Open Database

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4504565 CIFC15 H26 I3 N3P -18.8864; 10.103; 13.598
79.331; 78.375; 64.249
1070.4Said, Farouq F.; Bazinet, Patrick; Ong, Tiow-Gan; Yap, Glenn P. A.; Richeson, Darrin S.
Hydrogen Bonding Motifs ofN,N‘,N‘ ‘-Trisubstituted Guanidinium Cations with Spherical and Rodlike Monoanions: Syntheses and Structures of I-, I3-, and SCN-Salts
Crystal Growth & Design, 2006, 6, 258
4504566 CIFC15 H14 O2P n a 217.9; 5.429; 26.8
90; 90; 90
1149.4Glaser, Rainer; Knotts, Nathan; Wu, Zhengyu; Barnes, Charles L.
Dipole Parallel-Alignment in the Crystal Structure of a Polar Biphenyl: 4'-Acetyl-4-Methoxybiphenyl (AMB).
Crystal growth & design, 2006, 6, 235-240
4504567 CIFC32 H38 O10P b c a7.309; 15.18; 27.115
90; 90; 90
3008.4Vande Velde, Christophe M. L.; Geise, Herman J.; Blockhuys, Frank
The Precarious Equilibrium between Different Types of Weak Hydrogen Bonds in Methoxy-Substituted Distyrylbenzenes: The Hybrid Network inE,E-1,4-Bis[2-(2,4,6-trimethoxyphenyl)ethenyl]-2,3,5,6-tetramethoxybenzene
Crystal Growth & Design, 2006, 6, 241
4504568 CIFC78 H108 O18 Sn6P -112.79; 12.802; 14.324
110.687; 111.86; 97.688
1939Chandrasekhar, Vadapalli; Gopal, Kandasamy; Nagendran, Selvarajan; Steiner, Alexander; Zacchini, Stefano
Influence of Aromatic Substituents on the Supramolecular Architectures of Monoorganooxotin Drums
Crystal Growth & Design, 2006, 6, 267
4504569 CIFC74 H100 Cl4 O18 Sn6P 1 21/c 116.11; 11.2664; 22.842
90; 99.925; 90
4083.8Chandrasekhar, Vadapalli; Gopal, Kandasamy; Nagendran, Selvarajan; Steiner, Alexander; Zacchini, Stefano
Influence of Aromatic Substituents on the Supramolecular Architectures of Monoorganooxotin Drums
Crystal Growth & Design, 2006, 6, 267
4504570 CIFC74 H102 N10 O18 Sn6P -110.839; 14.138; 14.616
93; 105.18; 100.58
2112.9Chandrasekhar, Vadapalli; Gopal, Kandasamy; Nagendran, Selvarajan; Steiner, Alexander; Zacchini, Stefano
Influence of Aromatic Substituents on the Supramolecular Architectures of Monoorganooxotin Drums
Crystal Growth & Design, 2006, 6, 267
4504571 CIFC67 H91 Cl3 N6 O18 Sn6I 41/a :232.336; 32.336; 15.235
90; 90; 90
15930Chandrasekhar, Vadapalli; Gopal, Kandasamy; Nagendran, Selvarajan; Steiner, Alexander; Zacchini, Stefano
Influence of Aromatic Substituents on the Supramolecular Architectures of Monoorganooxotin Drums
Crystal Growth & Design, 2006, 6, 267
4504572 CIFC12 H22 Cd3 N0 O20P 1 21/n 112.55; 10.257; 18.015
90; 109.09; 90
2191.5Zhang, Guoqi; Yang, Guoqiang; Ma, Jin Shi
Versatile Framework Solids Constructed from Divalent Transition Metals and Citric Acid: Syntheses, Crystal Structures, and Thermal Behaviors
Crystal Growth & Design, 2006, 6, 375
4504573 CIFC12 H14 Cd3 O16P 1 21/c 16.0984; 15.2922; 9.786
90; 102.774; 90
890.03Zhang, Guoqi; Yang, Guoqiang; Ma, Jin Shi
Versatile Framework Solids Constructed from Divalent Transition Metals and Citric Acid: Syntheses, Crystal Structures, and Thermal Behaviors
Crystal Growth & Design, 2006, 6, 375
4504574 CIFC12 H14 O16 Zn3P 1 21/c 16.1705; 14.546; 9.5595
90; 102.63; 90
837.3Zhang, Guoqi; Yang, Guoqiang; Ma, Jin Shi
Versatile Framework Solids Constructed from Divalent Transition Metals and Citric Acid: Syntheses, Crystal Structures, and Thermal Behaviors
Crystal Growth & Design, 2006, 6, 375
4504575 CIFC6 H8 Cu2 O9P 1 21/c 16.9285; 9.7619; 14.537
90; 91.377; 90
982.9Zhang, Guoqi; Yang, Guoqiang; Ma, Jin Shi
Versatile Framework Solids Constructed from Divalent Transition Metals and Citric Acid: Syntheses, Crystal Structures, and Thermal Behaviors
Crystal Growth & Design, 2006, 6, 375
4504576 CIFC6 H8 Co O8P 21 21 215.916; 10.4229; 13.453
90; 90; 90
829.5Zhang, Guoqi; Yang, Guoqiang; Ma, Jin Shi
Versatile Framework Solids Constructed from Divalent Transition Metals and Citric Acid: Syntheses, Crystal Structures, and Thermal Behaviors
Crystal Growth & Design, 2006, 6, 375
4504577 CIFC27 H28 N2 O7.25P 21 21 2110.634; 11.958; 19.734
90; 90; 90
2509.4Kalisiak, Jarosław; Jurczak, Janusz
Asymmetric Crystallization of an Achiral Lariat-type Macrocyclic Compound
Crystal Growth & Design, 2006, 6, 20
4504578 CIFC24 H44 Ce2 I Mo6 N5 O47P -110.64; 10.691; 14.494
103.37; 99.88; 115.51
1376.9An, Haiyan; Li, Yangguang; Xiao, Dongrong; Wang, Enbo; Sun, Chunyan
Self-Assembly of Extended High-Dimensional Architectures from Anderson-type Polyoxometalate Clusters
Crystal Growth & Design, 2006, 6, 1107
4504579 CIFC24 H44 I La2 Mo6 N5 O47P -110.544; 10.677; 14.528
103.72; 99.96; 115.21
1365.9An, Haiyan; Li, Yangguang; Xiao, Dongrong; Wang, Enbo; Sun, Chunyan
Self-Assembly of Extended High-Dimensional Architectures from Anderson-type Polyoxometalate Clusters
Crystal Growth & Design, 2006, 6, 1107
4504580 CIFAg3 Cr H20 Mo6 O31P -16.2052; 14.185; 15.077
90.68; 90.08; 93.82
1324An, Haiyan; Li, Yangguang; Xiao, Dongrong; Wang, Enbo; Sun, Chunyan
Self-Assembly of Extended High-Dimensional Architectures from Anderson-type Polyoxometalate Clusters
Crystal Growth & Design, 2006, 6, 1107
4504581 CIFC20 H20 Cd F5 N4 Nb OP 1 21/c 114.0965; 16.353; 10.438
90; 95.569; 90
2394.8Guillory, Paulette C. R.; Kirsch, Janet E.; Izumi, Heather K.; Stern, Charlotte L.; Poeppelmeier, Kenneth R.
Evidence for Nonpolar Alignment of [NbOF5]2-Anions in Cd(pyridine)4NbOF5Chains
Crystal Growth & Design, 2006, 6, 382
4504582 CIFC62 H44 Cd2 N12 O4P 1 21/c 113.3524; 12.1332; 16.359
90; 91.376; 90
2649.5Liu, Chun-Sen; Shi, Xue-Song; Li, Jian-Rong; Wang, Jun-Jie; Bu, Xian-He
Cd(II) Coordination Architectures with Mixed Ligands of 3-(2-Pyridyl)pyrazole and Pendant Carboxylate Ligands Bearing Different Aromatic Skeletons: Syntheses, Crystal Structures, and Emission Properties
Crystal Growth & Design, 2006, 6, 656
4504583 CIFC104 H10 F20 N4P 4/n :216.2344; 16.2344; 12.2612
90; 90; 90
3231.51Hosseini, Ali; Hodgson, Michael C.; Tham, Fook S.; Reed, Christopher A.; Boyd, Peter D. W.
Tapes, Sheets, and Prisms. Identification of the Weak C−F Interactions that Steer Fullerene−Porphyrin Cocrystallization
Crystal Growth & Design, 2006, 6, 397
4504584 CIFC136 H60 F40 N8P 1 21/c 17.1644; 24.8612; 16.7746
90; 107.401; 90
2851.08Hosseini, Ali; Hodgson, Michael C.; Tham, Fook S.; Reed, Christopher A.; Boyd, Peter D. W.
Tapes, Sheets, and Prisms. Identification of the Weak C−F Interactions that Steer Fullerene−Porphyrin Cocrystallization
Crystal Growth & Design, 2006, 6, 397
4504585 CIFC152 H56 F20 N4I 41/a :228.7056; 28.7056; 12.3929
90; 90; 90
10211.9Hosseini, Ali; Hodgson, Michael C.; Tham, Fook S.; Reed, Christopher A.; Boyd, Peter D. W.
Tapes, Sheets, and Prisms. Identification of the Weak C−F Interactions that Steer Fullerene−Porphyrin Cocrystallization
Crystal Growth & Design, 2006, 6, 397
4504586 CIFC168 H63 F30 N6P -320.9965; 20.9965; 14.7377
90; 90; 120
5626.7Hosseini, Ali; Hodgson, Michael C.; Tham, Fook S.; Reed, Christopher A.; Boyd, Peter D. W.
Tapes, Sheets, and Prisms. Identification of the Weak C−F Interactions that Steer Fullerene−Porphyrin Cocrystallization
Crystal Growth & Design, 2006, 6, 397
4504587 CIFC2 H5 Cl N4P 1 21/c 17.1584; 8.164; 9.3954
90; 102.97; 90
535.07Laus, G.; Kahlenberg, V.; Többens, D. M.; Jetti, R. K. R.; Griesser, U. J.; Schütz, J.; Kristeva, E.; Wurst, K.; Schottenberger, H.
Lattice Architecture and Hydrogen-Bonding Networks ofN-Aminoazolium andN,N‘-Diaminoazolium Chlorides
Crystal Growth & Design, 2006, 6, 404
4504588 CIFC3 H6 Cl N3P 1 21/n 19.3559; 4.9432; 12.182
90; 97.76; 90
558.23Laus, G.; Kahlenberg, V.; Többens, D. M.; Jetti, R. K. R.; Griesser, U. J.; Schütz, J.; Kristeva, E.; Wurst, K.; Schottenberger, H.
Lattice Architecture and Hydrogen-Bonding Networks ofN-Aminoazolium andN,N‘-Diaminoazolium Chlorides
Crystal Growth & Design, 2006, 6, 404
4504589 CIFC2 H5 Cl N4P 1 21/c 15.099; 7.2298; 15.042
90; 96.52; 90
550.93Laus, G.; Kahlenberg, V.; Többens, D. M.; Jetti, R. K. R.; Griesser, U. J.; Schütz, J.; Kristeva, E.; Wurst, K.; Schottenberger, H.
Lattice Architecture and Hydrogen-Bonding Networks ofN-Aminoazolium andN,N‘-Diaminoazolium Chlorides
Crystal Growth & Design, 2006, 6, 404
4504590 CIFC2 H6 Cl N5P 21 21 215.5395; 13.402; 7.715
90; 90; 90
572.76Laus, G.; Kahlenberg, V.; Többens, D. M.; Jetti, R. K. R.; Griesser, U. J.; Schütz, J.; Kristeva, E.; Wurst, K.; Schottenberger, H.
Lattice Architecture and Hydrogen-Bonding Networks ofN-Aminoazolium andN,N‘-Diaminoazolium Chlorides
Crystal Growth & Design, 2006, 6, 404
4504591 CIFC2 H6 Cl N5P 21 21 215.6109; 6.778; 16.3497
90; 90; 90
621.79Laus, G.; Kahlenberg, V.; Többens, D. M.; Jetti, R. K. R.; Griesser, U. J.; Schütz, J.; Kristeva, E.; Wurst, K.; Schottenberger, H.
Lattice Architecture and Hydrogen-Bonding Networks ofN-Aminoazolium andN,N‘-Diaminoazolium Chlorides
Crystal Growth & Design, 2006, 6, 404
4504592 CIFC3 H7 Cl N4C 1 2/c 14.6613; 16.2967; 7.8232
90; 98.524; 90
587.72Laus, G.; Kahlenberg, V.; Többens, D. M.; Jetti, R. K. R.; Griesser, U. J.; Schütz, J.; Kristeva, E.; Wurst, K.; Schottenberger, H.
Lattice Architecture and Hydrogen-Bonding Networks ofN-Aminoazolium andN,N‘-Diaminoazolium Chlorides
Crystal Growth & Design, 2006, 6, 404
4504593 CIFC2 H5 Cl N4P 1 21 15.0579; 7.0018; 7.647
90; 91.716; 90
270.69Laus, G.; Kahlenberg, V.; Többens, D. M.; Jetti, R. K. R.; Griesser, U. J.; Schütz, J.; Kristeva, E.; Wurst, K.; Schottenberger, H.
Lattice Architecture and Hydrogen-Bonding Networks ofN-Aminoazolium andN,N‘-Diaminoazolium Chlorides
Crystal Growth & Design, 2006, 6, 404
4504594 CIFC10 H10 Cl4 N2 PtI 1 2/m 16.6548; 11.695; 8.146
90; 91.32; 90
633.8Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504595 CIFC12 H12 Cl4 N2 PtP -16.811; 7.7102; 7.83
96.32; 110.098; 105.81
361.98Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504596 CIFC12 H14 Cl4 N2 PtP -17.0701; 7.5429; 8.0694
95.4; 112.432; 107.745
367.87Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504597 CIFC10 H22 Cl4 N2 PtP 1 21/n 15.9922; 10.766; 11.601
90; 95.545; 90
744.9Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504598 CIFC4 H12 Cl4 N2 PtC m c a12.0729; 8.6976; 10.151
90; 90; 90
1065.9Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504599 CIFC12 H16 Cl4 N2 O6 PtP -16.9551; 8.5188; 8.9795
86.462; 73.017; 66.472
465.61Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504600 CIFC12 H10 Cl4 N2 O4 PtP -17.1544; 7.5492; 8.2906
90.43; 114.88; 92.75
405.56Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504601 CIFC12 H14 Cl4 N4 O2 PtP -16.8888; 7.7068; 8.2032
88.779; 72.911; 89.466
416.19Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504602 CIFC12 H14 Cl4 N4 O2 PtP -16.9952; 7.3278; 8.6578
71.87; 88.967; 87.604
421.4Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504603 CIFC12 H22 Cl4 N2 O4 PtP 1 21/c 113.2401; 7.4465; 9.8181
90; 104.52; 90
937.07Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504604 CIFC12 H24 Cl4 N2 O4 PtP 1 21/c 113.2172; 7.2479; 9.7083
90; 97.416; 90
922.2Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504605 CIFC6 H12 Cl N O2P 21 21 217.0204; 7.4522; 15.213
90; 90; 90
795.9Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504606 CIFC12 H12 Cl2 N2 O4P 1 21/c 112.936; 7.045; 14.8136
90; 92.112; 90
1349.1Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504607 CIFC12 H12 Cl4 N2 PdP -16.9948; 7.0324; 8.2883
69.202; 74.361; 77.599
363.8Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504608 CIFC10 H22 Cl4 N2 PdP 1 21/n 15.9658; 10.7111; 11.6778
90; 95.736; 90
742.5Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504609 CIFC10 H22 Cl4 N2 PdP 1 21/c 110.265; 7.5468; 9.9279
90; 101.147; 90
754.58Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504610 CIFC10 H22 Cl4 N2 PdP 1 21/c 111.166; 7.3022; 9.531
90; 91.885; 90
776.7Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504611 CIFC4 H16 Cl4 N2 O2 PdP 1 21/c 18.5472; 7.0726; 10.9161
90; 111.502; 90
613.96Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504612 CIFC12 H16 Cl4 N2 O6 PdP -16.9942; 8.5052; 8.9252
85.754; 73.059; 66.135
463.89Adams, Christopher J.; Angeloni, Alessandro; Orpen, A. Guy; Podesta, Thomas J.; Shore, Benjamin
Crystal Synthesis of Organic−Inorganic Hybrid Salts Based on Tetrachloroplatinate and -palladate Salts of Organic Cations: Formation of Linear, Two-, and Three-Dimensional NH···Cl Hydrogen Bond Networks
Crystal Growth & Design, 2006, 6, 411
4504613 CIFC4 H5 Ni O4.33R -3 c :H14.787; 14.787; 31.231
90; 90; 120
5914Chen, Jinxi; Ohba, Masaaki; Zhao, Dongyuan; Kaneko, Wakako; Kitagawa, Susumu
Polynuclear Core-Based Nickel 1,4-Cyclohexanedicarboxylate Coordination Polymers as Temperature-Dependent Hydrothermal Reaction Products
Crystal Growth & Design, 2006, 6, 664
4504614 CIFC4 H5 Ni0.75 O4.5C 1 2/m 120.0967; 9.9992; 6.3722
90; 97.086; 90
1270.72Chen, Jinxi; Ohba, Masaaki; Zhao, Dongyuan; Kaneko, Wakako; Kitagawa, Susumu
Polynuclear Core-Based Nickel 1,4-Cyclohexanedicarboxylate Coordination Polymers as Temperature-Dependent Hydrothermal Reaction Products
Crystal Growth & Design, 2006, 6, 664

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