Synthesis, Crystal Structure, and Electroconducting Properties of a 1D Mixed-Valence Cu(I)–Cu(II) Coordination Polymer with a Dicyclohexyl Dithiocarbamate Ligand
Synthesis, Crystal Structure, and Electroconducting Properties of a 1D Mixed-Valence Cu(I)–Cu(II) Coordination Polymer with a Dicyclohexyl Dithiocarbamate Ligand
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DOI:
10.3390/cryst5020215
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发表时间:
2015-04
期刊:
影响因子:
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通讯作者:
K. Nakatani;Kento Himoto;Y. Kono;Y. Nakahashi;Haruho Anma;T. Okubo;M. Maekawa;T. Kuroda–Sowa
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文献类型:
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作者:
K. Nakatani;Kento Himoto;Y. Kono;Y. Nakahashi;Haruho Anma;T. Okubo;M. Maekawa;T. Kuroda–Sowa
A new mixed-valence Cu(I)–Cu(II) 1D coordination polymer, [CuI4CuIIBr4(Cy2dtc)2]n, with an infinite chain structure is synthesized by the reaction of Cu(Cy2dtc)2 (Cy2dtc− = dicyclohexyl dithiocarbamate, C13H22NS2) with CuBr·S(CH3)2. The as-synthesized polymer consists of mononuclear copper(II) units of CuII(Cy2dtc)2 and tetranuclear copper(I) cluster units, CuI4Br4. In the cluster unit, all the CuI ions have distorted trigonal pyramidal coordination geometries, and the CuI–CuI or CuI–CuII distances between the nearest copper ions are shorter than the sum of van der Waals radii for Cu–Cu.