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不对称性对苯氧基和羟基桥联双铜配合物氧化还原性质的影响:光谱电化学与理论研究

Influence of Asymmetry on the Redox Properties of Phenoxo- and Hydroxo-Bridged Dicopper Complexes: Spectroelectrochemical and Theoretical Studies.

作者信息

Gennarini Federica, David Rolf, López Isidoro, Le Mest Yves, Réglier Marius, Belle Catherine, Thibon-Pourret Aurore, Jamet Hélène, Le Poul Nicolas

机构信息

Université de Bretagne Occidentale, CNRS UMR 6521 , Laboratoire CEMCA, 6 Avenue Le Gorgeu, CS 93837, 29238 Brest Cedex 3, France.

Université Grenoble Alpes - Grenoble1, CNRS-UGA UMR 5250 , Laboratoire DCM/Cire, CS 40700, 38058 Grenoble Cedex 9, France.

出版信息

Inorg Chem. 2017 Jul 17;56(14):7707-7719. doi: 10.1021/acs.inorgchem.7b00338. Epub 2017 Jun 30.

Abstract

The redox properties and electronic structures of a series of phenoxo- and hydroxo-bridged dicopper(II) complexes have been explored. Complexes (1a-c) are based on symmetrical ligands with bis(2-methylpyridyl)aminomethyl as complexing arms bearing different substituting R groups (CH, OCH, or CF) in the para position of the phenol moiety. Complex 2a is based on a symmetrical ligand with bis(2-ethylpyridyl)aminomethyl arms and R = CH, while complex 3a involves an unsymmetrical ligand with two different complexing arms (namely bis(2-ethylpyridyl)aminomethyl and bis(2-methylpyridyl)aminomethyl). Investigations have been done by electrochemical and spectroelectrochemical means and correlated to theoretical calculations as this series of complexes offers a unique opportunity of an in-depth comparative analysis. The voltammetric studies have shown that the redox behavior of the dicopper complexes is not influenced by the nature of the solvent. However, the increase of the spacer chain length and the unsymmetrical design induce significant modifications of the voltammetric responses for both oxidation and reduction processes. DFT calculations of the redox potentials using a computational reference redox couple calculated at the same level of theory to reduce systematic errors confirm these results. Ligand contributions to the electronic structure of the different species have been analyzed in detail. The good agreement between experimental and theoretical results has validated the developed calculation method, which would be used in the following to design new dinuclear copper complexes. These studies demonstrate that subtle modification of the ligand topology can significantly affect the redox and spectroscopic properties. In particular, the unsymmetrical design allows the formation of a transient mixed-valent Cu(II)-Cu(III) phenoxo complex detected upon spectroelectrochemical experiments at room temperature, which evolves toward a dicopper (II,II) phenoxyl complex. The latter displays an intense π → π* transition band at 393 nm in the UV-vis spectrum compared to the less intense ligand to metal charge transfer band at 518 nm observed for the mixed-valent Cu(II)-Cu(III) phenoxo complex.

摘要

对一系列苯氧基和羟基桥连的二铜(II)配合物的氧化还原性质和电子结构进行了研究。配合物(1a - c)基于对称配体,其以双(2 - 甲基吡啶基)氨基甲基作为络合臂,在酚部分的对位带有不同的取代R基团(CH、OCH或CF)。配合物2a基于具有双(2 - 乙基吡啶基)氨基甲基臂且R = CH的对称配体,而配合物3a涉及具有两个不同络合臂(即双(2 - 乙基吡啶基)氨基甲基和双(2 - 甲基吡啶基)氨基甲基)的不对称配体。通过电化学和光谱电化学方法进行了研究,并与理论计算相关联,因为这一系列配合物提供了进行深入比较分析的独特机会。伏安研究表明,二铜配合物的氧化还原行为不受溶剂性质的影响。然而,间隔链长度的增加和不对称设计会导致氧化和还原过程的伏安响应发生显著变化。使用在相同理论水平计算的计算参考氧化还原对进行氧化还原电位的密度泛函理论(DFT)计算以减少系统误差,证实了这些结果。已详细分析了配体对不同物种电子结构的贡献。实验和理论结果之间的良好一致性验证了所开发的计算方法,该方法将在后续用于设计新的双核铜配合物。这些研究表明,配体拓扑结构的细微修饰可显著影响氧化还原和光谱性质。特别是,不对称设计允许在室温下的光谱电化学实验中检测到瞬态混合价Cu(II) - Cu(III)苯氧基配合物,其会演变成二铜(II,II)苯氧基配合物。与混合价Cu(II) - Cu(III)苯氧基配合物在518 nm处观察到的强度较低的配体到金属电荷转移带相比,后者在紫外 - 可见光谱中在393 nm处显示出强烈的π → π*跃迁带。

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