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首页> 外文期刊>Inorganica Chimica Acta >Effect of ligand exchange on the one-electron oxidation process of alkoxo or phenoxo bridged binuclear copper(II) complexes
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Effect of ligand exchange on the one-electron oxidation process of alkoxo or phenoxo bridged binuclear copper(II) complexes

机译:配体交换对烷氧基氧杂交桥桥的单电子氧化过程的影响桥桥(II)复合物

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摘要

In the present paper, we report on the influence of methanol/methoxide on the structure and the mono-electronic oxidation process of two different dicopper(II,II) complexes: a binuclear μ-alkoxo μ-acetato dicopper(II,II) complex obtained with a tetraamide-containing ligand (1) or a new unsymmetric μ-phenoxo, μ-hydroxo dicopper(II,II) complex based on a ligand bearing one bis(2-pyridylmethyl)aminomethyl arm (BPA) and one thiosemicarbazone (2). Structural data obtained from X-ray diffraction analysis showed that, in the case of complex2, bridging hydroxide was replaced by a methoxide bound in a bridging mode (2-OMe). Concerning complex1, redox properties were investigated by electrochemistry and rationalized using theoretical calculations. Our studies indicate that (i) the acetate bridge of1is decoordinated from the copper ions after mono-oxidation (ii) in presence of methoxide, acetate is released and a complex with two pendant exogen ligands (one methoxide and one solvent,1-OMe-DMF) is a plausible structure although bridging methoxide cannot be excluded. In the case of2the anodic potentials are not influenced by the nature of the bridge (hydroxo in2or methoxo in2-OMe). Finally, the computed redox potentials using DFT calculations are in good agreement with the experimental ones and indicates that in the case of the complexes derived from1, oxidation is copper-centered therefore leading to Cu(II)Cu(III) species although oxidation is ligand-centered in the case of2and2-OMe.
机译:在本文中,我们报告了两种不同Dicpopper(II,II)复合物的结构和单电子氧化过程的影响:一点μ-烷氧基μ-丙酮(II,II)复合物用含四酰胺的配体(1)或新的未对称μ-苯氧基,μ-Hymroxo Dicpopper(II,II)复合物,基于配体轴承一个双(2-吡啶甲基)氨基甲基臂(BPA)和一条荆棘鸟(2 )。从X射线衍射分析获得的结构数据显示,在复合物的情况下,通过在桥接模式(2-OME)中结合的甲醇氧化物代替桥氧化氧化物。关于复合物1,通过电化学研究氧化还原性能并使用理论计算合理化。我们的研究表明,(i)在甲醇甲醇存在下的单氧化物(II)后,乙酸盐在甲烷烃存在下与铜离子进行解毒的醋酸桥,乙酸盐释放,与两个悬浮液和一个甲醇剂和一个溶剂,1-OME-的复合物DMF)是一种合理的结构,尽管不能排除甲氧化甲醇醚。在2的情况下,阳极电位不受桥的性质的影响(Hydroxo In2 Or甲氧基In2-OME)。最后,使用DFT计算的计算的氧化还原电位与实验结果吻合良好,并表明在衍生自1的复合物的情况下,氧化是铜中心,因此导致Cu(III)Cu(III)型物种,尽管氧化是配体 - 在2和2-OME的情况下。

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