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The structure of mer-bis[di(3-aminopropyl)amine]cobalt(III) perchlorate, and an energy minimization analysis of the [Co(dpt)2]3+ system

TW Hambley, GH Searle and MR Snow
35(7) pp.1285 - 1295


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Energy‐Minimized Structures and Calculated and Experimental Isomer distributions in the hexaamine‐cobalt(III) system [Co(L)2]3+ with the chiral facially‐coordinating triamine (l = butane‐1,2,4‐triamine)
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Base Hydrolysis of Pentaaminecobalt(III) Complexes: The [CoX(dien) (dapo)]n+ system. Part 2. Structure and reactivity of the pentacoordinate intermediate
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Helvetica Chimica Acta. 1992 75(4). p.1147
Conformational searching of transition metal compounds
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Journal of Computational Chemistry. 1999 20(14). p.1549
Preparation and Structure of {Bis(3-aminopropyl)amine}(r-1, c-3, c-5-cyclohexanetriamine)cobalt(III) Complex
Ishii Minoru, Umehara Michiko, Nakahara Masayoshi
Bulletin of the Chemical Society of Japan. 1987 60(5). p.1939
DFT Study of the Systematic Variations in Metal−Ligand Bond Lengths of Coordination Complexes:  the Crucial Role of the Condensed Phase
Hocking Rosalie K., Deeth Robert J., Hambley Trevor W.
Inorganic Chemistry. 2007 46(20). p.8238
Cluster and Molecular Mechanical Analysis of the Conformations of All Six-Membered Cobalt(III) Diamine Rings in the Cambridge Structure Database
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Inorganic Chemistry. 1996 35(10). p.2872
Strains and stresses in coordination compounds
Comba Peter
Coordination Chemistry Reviews. 1999 182(1). p.343
Crystal, molecular, electronic and vibrational structures of di-μ-thiocyanato-bis-[di-(3-aminopropyl)amine]-dicopper(II) diperchlorate
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The relation between ligand structures, coordination stereochemistry, and electronic and thermodynamic properties
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Energy‐Minimized Structures and Calculated and Experimental Isomer Distributions in the Hexaaminecobalt(III) system [Co(trap)2]3+ (trap = 1,2,3‐propanetriamine)
Comba Peter, Hambley Trevor W., Zipper Luc
Helvetica Chimica Acta. 1988 71(8). p.1875
Stereoselective Coordination to Chiral Matrices. Cobalt(III). Chemistry of Simple Facially Coordinating Chiral Triamines
Comba Peter, Hörmann Aldo, Martin Lisandra L., Zipper Luc
Helvetica Chimica Acta. 1990 73(4). p.874
Crystal Structure of (+)490CDmer-Bis{bis(3-aminopropyl)aminecobalt(III)} Hexacyanocobaltate(III) Dihydrate, (+)490CDmer-[Co(dpt)2][Co(CN)6]·2H2O
Ishii Minoru, Umehara Michiko, Harada Kazumasa, Nakahara Masayoshi
Bulletin of the Chemical Society of Japan. 1987 60(7). p.2683
Inorganic Electrochemistry Theory, Practice and Application (2011)
Statistical and Molecular Mechanics Analysis of the Effects of Changing Donor Type on Bond Length in the Two Series [CoIIINnO6-n] and [NiIINnO6-n] (n = 0−6):  A New Route to Bond-Stretch Parameters
Hocking Rosalie K., Hambley Trevor W.
Inorganic Chemistry. 2002 41(10). p.2660
Elektronentransferbarrieren als Funktion der Ligandenstruktur in CoN63+/CoN62+‐Paaren Beziehungen zwischen der Struktur und der Redoxreaktivität
Ventur D., Wieghardt K., Nuber B., Weiss J.
Zeitschrift für anorganische und allgemeine Chemie. 1987 551(8). p.33
Critical Evaluation of Metal Complex Molecular Mechanics. Part 1. Cobalt(III) Hexaamines
Bygott Alexia M. T., Sargeson Alan M.
Inorganic Chemistry. 1998 37(19). p.4795
The Synthesis and X-Ray Crystal Structures of Bis(diethylenetriamine)rhodium(III), Bis(diethylenetriamine)iridium(III), and Bis[bis(3-aminopropyl)amine]rhodium(III) Complexes
Harada Kazumasa
Bulletin of the Chemical Society of Japan. 1993 66(10). p.2889

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