首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Ligand Field Theory and Angular Overlap Model Based Analysis of the Electronic Structure of Homovalent Iron-Sulfur Dimers
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Ligand Field Theory and Angular Overlap Model Based Analysis of the Electronic Structure of Homovalent Iron-Sulfur Dimers

机译:基于配体场理论和基于角度的铁硫二聚体电子结构分析

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摘要

The electronic structure of multinuclear transition metal complexes is a highly challenging problem for quantum chemical methods. The problems to be solved for a successful analysis include the following: (1) many unpaired electrons leading to "highly entangled" wave functions that cannot be calculated by standard electronic structure methods, (2) drastic differences between the one-particle and many-particle spectra and a high density of low-lying states, and (3) the interpretation of such highly complex wave functions in chemical terms. In this work, we continue our research on oligonuclear clusters by presenting an in-depth analysis of the electronic structure of a prototypical iron-sulfur (Fe2S2) dimer. Accurate wave functions are obtained from a variety of advanced wave function based methods. The wave function results are interpreted in terms of an effective Hamiltonian that in turn is parametrized in terms of the angular overlap model (AOM) that provides the chemical insights that we are striving for. A hierarchical analysis allows us to interpret the local electronic structure in terms of the thiolate, sulfide ligands, and metal-metal interaction strengths. The many-particle spectrum is analyzed in terms of configurations involving ligand and metal centers. Finally, we are able to derive simple yet effective interpretations of ligand interaction strengths, the metal-metal interaction strength, and the low-lying many-particle spectrum of the Fe2S2 dimer.
机译:多核过渡金属配合物的电子结构是量子化学方法的高度挑战性问题。成功分析的问题包括以下内容:(1)许多未配对的电子,导致“高度缠绕”波函数不能通标准电子结构方法计算,(2)单粒子和许多之间的剧烈差异粒子光谱和高密度的低洼状态,(3)在化学术语中解释这种高度复杂的波函数。在这项工作中,我们通过提出原型铁 - 硫(Fe2S2)二聚体的电子结构的深入分析,继续研究寡核簇。精确的波函数是从各种高级波函数的方法获得的。波函数结果在有效的Hamiltonian方面解释,即在角度重叠模型(AOM)方面,提供了我们正在努力的化学洞察的参数化。分层分析允许我们根据硫醇酸盐,硫化物配体和金属 - 金属相互作用强度来解释局部电子结构。根据涉及配体和金属中心的构造来分析多种粒子谱。最后,我们能够推导出对配体相互作用强度,金属 - 金属相互作用强度和Fe2S2二聚体的低位粒子光谱的简单且有效的解释。

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