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Fine tuning of the oxidation locus, and electron transfer, in nickel complexes of pro-radical ligands

机译:自由基配体的镍络合物中氧化位点和电子转移的微调

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摘要

A large number of complexes of the first-row transition metals with non-innocent ligands has been characterized in the last few years. The localization of the oxidation site in such complexes can lead to discrepancies when electrons can be removed either from the metal center (leading to an M(n+1)+ closed-shell ligand) or from the ligand (leading to an Mn+ open-shell ligand). The influence of the ligand field on the oxidation site in square-planar nickel complexes of redox-active ligands is explored herein. The tetradentate ligands employed herein incorporate two di-tert-butylphe-nolate (pro-phenoxyl) moieties and one orthophenylenediamine spacer. The links between the spacer and both phenolates are either two imines ([Ni(L-1)]), two amidates ([Ni(L-3)](2-)), or one amidate and one imine ([Ni(L-2)](-)). The structure of each nickel((II)) complex is presented. In the non-coordinating solvent CH2Cl2, the one- electron-oxidized forms are ligand-radical species with a contribution from a singly occupied d orbital of the nickel. In the presence of an exogenous ligand, such as pyridine, a Ni-III closed-shell ligand form is favored: axial ligation, which stabilizes the trivalent nickel in its octahedral geometry, induces an electron transfer from the metal((II)) center to the radical ligand. The affinity of pyridine for the phenoxylnickel((II)) species is correlated to the N-donor ability of the linkers.
机译:在最近几年中,已经表征了许多第一行过渡金属与非纯配体的配合物。当电子可以从金属中心(导致M(n + 1)+闭壳配体)或从配体(导致Mn +开环-)去除时,此类络合物中氧化位点的定位会导致差异。壳配体)。本文探讨了配体场对氧化还原活性配体的方形镍复合物中氧化位点的影响。本文所用的四齿配体并入了两个二叔丁基萘甲酸酯(苯氧基原)部分和一个邻苯二胺间隔基。间隔基和两种酚盐之间的连接是两个亚胺([Ni(L-1)]),两个酰胺化物([Ni(L-3)](2-))或一个酰胺化物和一个亚胺([Ni( L-2)](-))。介绍了每种镍((II))配合物的结构。在非配位溶剂CH 2 Cl 2中,单电子氧化形式是配体自由基物质,其起因于镍的单个占据的d轨道。在存在外源配体(例如吡啶)的情况下,建议使用Ni-III闭壳配体形式:轴向连接可将三价镍稳定在其八面体几何形状中,诱导电子从金属((II))中心转移自由基配体。吡啶对苯氧基镍((II))物种的亲和力与接头的N供体能力相关。

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