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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Metal-sulfur valence orbital interaction energies in metal-dithiolene complexes: Determination of charge and overlap interaction energies by comparison of core and valence ionization energy shifts
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Metal-sulfur valence orbital interaction energies in metal-dithiolene complexes: Determination of charge and overlap interaction energies by comparison of core and valence ionization energy shifts

机译:金属-二硫杂环戊烯络合物中的金属-硫价轨道相互作用能:通过核和价电离能位移的比较确定电荷和重叠相互作用能

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摘要

The electronic interactions between metals and dithiolenes are important in the biological processes of many metalloenzymes as well as in diverse chemical and material applications. Of special note is the ability of the dithiolene ligand to support metal centers in multiple coordination environments and oxidation states. To better understand the nature of metal-dithiolene electronic interactions, new capabilities in gas-phase core photoelectron spectroscopy for molecules with high sublimation temperatures have been developed and applied to a series of molecules of the type Cp_2M(bdt) (Cp = η~5-cyclopentadienyl, M = Ti, V, Mo, and bdt = benzenedithiolato). Comparison of the gas-phase core and valence ionization energy shifts provides a unique quantitative energy measure of valence orbital overlap interactions between the metal and the sulfur orbitals that is separated from the effects of charge redistribution. The results explain the large amount of sulfur character in the redox-active orbitals and the 'leveling' of oxidation state energies in metal-dithiolene systems. The experimentally determined orbital interaction energies reveal a previously unidentified overlap interaction of the predominantly sulfur HOMO of the bdt ligand with filled π orbitals of the Cp ligands, suggesting that direct dithiolene interactions with other ligands bound to the metal could be significant for other metal-dithiolene systems in chemistry and biology.
机译:在许多金属酶的生物过程以及各种化学和材料应用中,金属和二硫代烯烃之间的电子相互作用非常重要。特别值得注意的是二硫代烯配体在多种配位环境和氧化态下支持金属中心的能力。为了更好地了解金属-二硫代电子相互作用的性质,已开发出具有高升华温度的分子的气相核心光电子光谱新功能,并将其应用于一系列Cp_2M(bdt)类型的分子(Cp =η〜5 -环戊二烯基,M = Ti,V,Mo,bdt =苯二硫代巯基。气相核心和化合价电离能移的比较提供了一种独特的定量能量度量,用于度量金属和硫轨道之间的化合价轨道重叠相互作用,而这种相互作用与电荷再分配的影响是分开的。结果解释了氧化还原活性轨道中大量的硫特征以及金属-二硫代烯烃体系中氧化态能量的“平衡”。实验确定的轨道相互作用能表明,以前未知的bdt配体的硫HOMO与Cp配体的π轨道填充的重叠相互作用,表明与其他与金属键合的配体的直接二硫烯相互作用对其他金属-二硫代烯可能是重要的化学和生物学系统。

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