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A Mononuclear and a Mixed-Valence Chain Polymer Arising from Copper(II) Halide Chemistry and the Use of 2,2′-Pyridil
Reactions of 2,2′-pyridil (pyCOCOpy) with CuCl(2) · 2H(2)O and CuBr(2) in EtOH yielded the mononuclear complex [Cu(pyCOOEt)(2)Cl(2)] · H(2)O (1) and the one-dimensional, mixed-valence complex [Cu(2) (I)Cu(II)(pyCOOEt)(2)Br(4)](n) (2), respectively. Both complexes crystallize in the triclinic space g...
Autores principales: | , , , , |
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Formato: | Texto |
Lenguaje: | English |
Publicado: |
Hindawi Publishing Corporation
2007
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1939912/ https://www.ncbi.nlm.nih.gov/pubmed/18253464 http://dx.doi.org/10.1155/2007/28508 |
Sumario: | Reactions of 2,2′-pyridil (pyCOCOpy) with CuCl(2) · 2H(2)O and CuBr(2) in EtOH yielded the mononuclear complex [Cu(pyCOOEt)(2)Cl(2)] · H(2)O (1) and the one-dimensional, mixed-valence complex [Cu(2) (I)Cu(II)(pyCOOEt)(2)Br(4)](n) (2), respectively. Both complexes crystallize in the triclinic space group P [Formula: see text]. The lattice constants are a = 8.382(2), b = 9.778(2), c = 7.814(2), α = 101.17(1), β = 114.55(1), γ = 94.14(1)° for 1 and a = 8.738(1), b = 9.375(2), c = 7.966(1), α = 79.09(1), β = 64.25(1), γ = 81.78(1)° for 2. 2,2′-pyridil undergoes a metal-assisted alcoholysis and oxidation leading to decomposition and yielding the ethyl picolinate (pyCOOEt) ligand. The autoredox process associated with the reduction of copper(II) to copper(I) in the case of complex 2 is discussed in terms of the increased redox activity of the copper(II) bromide system relative to the copper(II) chloride system. |
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