首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Revisiting the Electronic Structure of FeS Monomers Using ab Initio Ligand Field Theory and the Angular Overlap Model
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Revisiting the Electronic Structure of FeS Monomers Using ab Initio Ligand Field Theory and the Angular Overlap Model

机译:使用AB Initio配体场理论和角度重叠模型重新审视FES单体的电子结构

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Iron-sulfur (FeS) proteins are universally found in nature with actives sites ranging in complexity from simple monomers to multinuclear sites from two up to eight iron atoms. These sites include mononuclear (rubredoxins), dinuclear (ferredoxins and Rieske proteins), trinuclear (e.g., hydrogenases), and tetranuclear (various ferredoxins and high-potential iron sulfur proteins). The electronic structure of the higher-nuclearity clusters is inherently extremely complex. Hence, it is reasonable to take a bottom-up approach in which clusters of increasing nuclearity are analyzed in terms of the properties of their lower nuclearity constituents. In the present study, the first step is taken by an in-depth analysis of mononuclear FeS systems. Two different FeS molecules with phenylthiolate and methylthiolate as ligands are studied in their oxidized and reduced forms using modern wave function-based ab initio methods. The ab initio electronic spectra and wave function are presented and analyzed in detail. The very intricate electronic structure geometry relationship in these systems is analyzed using ab initio ligand field theory (AILFT) in conjunction with the angular overlap model (AOM) parametrization scheme. The simple AOM model is used to explain the effect of geometric variations on the electronic structure. Through a comparison of the ab initio computed UV-vis absorption spectra and the available experimental spectra, the low energy part of the many-particle spectrum is carefully analyzed. We show ab initio calculated magnetic circular dichroism spectra and present a comparison with the experimental spectrum. Finally, AILFT parameters and the ab initio spectra are compared with those obtained experimentally to understand the effect of the increased covalency of the thiolate ligands on the electronic structure of FeS monomers.
机译:铁硫(FES)蛋白质普遍存在自然界中,活性物质位点在复杂性的复杂性,从两种最多八个铁原子中的多核位点。这些位点包括单核(Rubredoxins),二维毒素(Ferredoxins和Rieske蛋白),三核(例如,氢酶)和四核(各种氢氧化锡和高潜力铁硫蛋白)。更高核簇的电子结构本质上非常复杂。因此,采用自下而上的方法是合理的,其中在核心成分的性质方面分析了增加核的簇。在本研究中,通过对单核FES系统的深入分析进行第一步。使用现代波函数的AB初始方法在其氧化和减少的形式中研究了与苯硫酸盐和甲硫酸甲酯作为配体的两种不同的FES分子。详细介绍和分析AB Initio电子光谱和波浪功能。使用AB Initio配体场理论(AILFT)结合角度重叠模型(AOM)参数化方案来分析这些系统中非常复杂的电子结构几何关系。简单的AOM模型用于解释电子结构对电子结构的几何变化的影响。通过比较AB Initio计算的UV-Vis吸收光谱和可用的实验光谱,仔细分析了许多粒子谱的低能量部分。我们展示了AB Initio计算的磁圆形二色分子光谱,并与实验频谱进行了比较。最后,将差异参数和AB初始光谱与实验获得的那些进行比较,以了解硫醇酸酯配体的增加对FeS单体的电子结构的效果。

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