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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Electronic structure of chalcogenols: photoelectron spectroscopic and theoretical studies of tris(trimethylsilyl)silyl chalcogenols
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Electronic structure of chalcogenols: photoelectron spectroscopic and theoretical studies of tris(trimethylsilyl)silyl chalcogenols

机译:硫属元素醇的电子结构:三(三甲基甲硅烷基)甲硅烷基硫属元素醇的光电子能谱和理论研究

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The photoelectron spectra (He I and He II) have been reported for the homologous series of tris(trimethylsilyl)silyl chalcogenols (Me3Si)(3)SiEH (E = O, S, Se or Te) and assigned on the basis of predictions from density functional theory (DFT) calculations. The DFT calculations indicated that the chalcogenol HOMO is a pi-type orbital located essentially on the silicon atoms for the lighter chalcogenols, whilst it is located entirely on the chalcogen for selenol and tellurol. DFT was used to predict the H-E-Si bond angle in the idealised species HESi(SiH3)(3). The trends seen, on descending the group, are broadly similar to those obtained for H2E, but are complicated by mixing of silicon orbitals with those of E. The results of these studies are used to rationalise the observed behaviour of some transition metal chalcogenolate complexes, in particular the facile Te-Si bond cleavage reactions which produce terminal tellurides for the early d-block metals. [References: 46]
机译:已经报道了三(三甲基甲硅烷基)甲硅烷基硫属元素醇(Me3Si)(3)SiEH(E = O,S,Se或Te)的同源系列的光电子光谱(He I和He II),并且根据来自密度泛函理论(DFT)计算。 DFT计算表明,硫属元素醇HOMO是一个pi型轨道,对于较轻的硫属元素醇而言,它基本上位于硅原子上,而硒代醇和碲则完全位于硫属元素上。 DFT用于预测理想化物种HESi(SiH3)(3)中的H-E-Si键角。下降的趋势与从H2E获得的趋势大致相似,但由于将硅轨道与E混合而变得复杂。这些研究的结果用于合理化一些过渡金属硫属元素酸盐配合物的观察行为,尤其是容易产生的Te-Si键断裂反应,可为早期d嵌段金属生成末端碲化物。 [参考:46]

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