首页> 外文期刊>European journal of inorganic chemistry >A crystallographic and Mo K-edge XAS study of molybdenum oxo bis-, mono-, and non-dithiolene complexes-first-sphere coordination geometry and noninnocence of ligands
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A crystallographic and Mo K-edge XAS study of molybdenum oxo bis-, mono-, and non-dithiolene complexes-first-sphere coordination geometry and noninnocence of ligands

机译:钼氧双,单和非二硫代噻吩配合物的晶体学和Mo K-edge XAS研究-第一球配位几何和配体的无毒度

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摘要

Ten square-based pyramidal molybdenum complexes with different sulfur donor ligands, that is, a variety of dithiolenes and sulfides, were prepared, which mimic coordination motifs of the molybdenum cofactors of molybdenum-dependent oxidoreductases. The model compounds were investigated by Mo K-edge X-ray absorption spectroscopy (XAS) and (with one exception) their molecular structures were analyzed by X-ray diffraction to derive detailed information on bond lengths and geometries of the first coordination shell of molybdenum. Only small variations in Mo=O and Mo-S bond lengths and their respective coordination angles were observed for all complexes including those containing Mo(CO) _2 or Mo(μ-S)_2Mo motifs. XAS analysis (edge energy) revealed higher relative oxidation levels in the molybdenum ion in compounds with innocent sulfur-based ligands relative to those in dithiolene complexes, which are known to exhibit noninnocence, that is, donation of substantial electron density from ligand to metal. In addition, longer average Mo-S and Mo=O bonds and consequently lower ν(Mo=O) stretching frequencies in the IR spectra were observed for complexes with dithiolene-derived ligands. The results emphasize that the noninnocent character of the dithiolene ligand influences the electronic structure of the model compounds, but does not significantly affect their metal coordination geometry, which is largely determined by the Mo(IV) or (V) ion itself. The latter conclusion also holds for the molybdenum site geometries in the oxidized Mo~(VI) cofactor of DMSO reductase and the reduced Mo~(IV) cofactor of arsenite oxidase. The innocent behavior of the dithiolene molybdopterin ligands observed in the enzymes is likely to be related to cofactor-protein interactions.
机译:制备了十个具有不同硫供体配体的方形金字塔形钼配合物,即各种二硫键烯和硫化物,它们模拟了钼依赖性氧化还原酶的钼辅助因子的配位基序。通过Mo K-edge X射线吸收光谱法(XAS)对模型化合物进行了研究,并且(一个例外)通过X射线衍射对它们的分子结构进行了分析,从而得出了有关钼第一配位壳的键长和几何形状的详细信息。 。对于所有复合物,包括含有Mo(CO)_2或Mo(μS)_2Mo图案的复合物,仅观察到Mo = O和Mo-S键长及其配位角的微小变化。 XAS分析(边缘能量)显示,与无毒的硫基配体相比,无毒的硫基配体的化合物中的钼离子具有相对较高的氧化水平,后者已知无毒,即从配体向金属提供大量电子密度。另外,对于具有二硫代烯烃衍生的配体的复合物,在IR光谱中观察到更长的平均Mo-S键和Mo = O键,因此更低的ν(Mo = O)拉伸频率。结果强调,二硫代烯配体的非清纯特性会影响模型化合物的电子结构,但不会显着影响其金属配位几何形状,这在很大程度上取决于Mo(IV)或(V)离子本身。后一个结论也适用于DMSO还原酶的氧化Mo〜(VI)辅因子和还原的砷氧化单价的Mo〜(IV)辅因子中的钼位点几何形状。在酶中观察到的二硫代钼蝶呤配体的无辜行为可能与辅因子-蛋白质相互作用有关。

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