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Structural and electronic properties of small platinum metallorganic complexes

机译:小型铂金属有机配合物的结构和电子性质

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A theoretical first-principles study of Pt n (ligand) m (n = 1–3) metallorganic complexes is performed, by varying the number of metal atoms and the nature and number of organic coordinate ligands (specifically, vinylic and arylic ligands). For each system, the nature of the bonding, the structure and the energetics of the metal/organic-species interaction are analyzed to derive information on the growth of coated metal clusters in solution. It is found that two régimes can be distinguished: a “coordinatively saturated” régime, in which the ratio among the number of ligands and the number of metal atoms is high and a ligand/organic π-interaction mode is preferred, and a “coordinatively unsaturated” régime, in which the ligand/metal ratio is low and a ligand/organic σ-interaction mode is preferred. Reactive channels, such as oxidative insertion of Pt into C–H bonds with the corresponding formation of platinum hydride species, can be opened in the latter régime.
机译:通过改变金属原子的数量以及有机配位体的性质和数量,对Pt n (配体)m (n = 1-3)金属有机配合物进行了理论上的第一性研究(特别是乙烯基和芳基配体)。对于每个系统,分析了金属/有机物相互作用的键合性质,结构和能量,以得出有关溶液中包覆金属簇生长的信息。发现可以区分两个区域:“配位饱和”区域,其中配体数和金属原子数之比高,并且优选配体/有机π-相互作用模式,而“配位/有机π-相互作用模式”是优选的。配体/金属比低且配体/有机σ相互作用模式较好。在后一种体系中,可以打开反应性通道,例如将Pt氧化插入C–H键并相应形成氢化铂物质。

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