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硅烯和锗烯的硬软酸碱相互作用。

Hard-soft acid-base interactions of silylenes and germylenes.

作者信息

Oláh Julianna, De Proft Frank, Veszprémi Tamás, Geerlings Paul

机构信息

Vrije Universiteit Brussel (VUB), General Chemistry Department (ALGC), Pleinlaan 2, B-1050, Brussels, Belgium.

出版信息

J Phys Chem A. 2005 Mar 3;109(8):1608-15. doi: 10.1021/jp0468556.

Abstract

A detailed investigation of the electrophilic and nucleophilic character of singlet silylenes and germylenes, divalent compounds of silicon and germanium, respectively, substituted by first- and second-row elements is presented. In a first part, the Lewis acid properties of these compounds were studied through their complexation reaction with the Lewis bases NH3, PH3, and AsH3. The results indicate that this complexation is most favorable with the hardest base NH3, classifying these compounds as hard Lewis acids. This is confirmed by the linear correlation between the interaction energies and the value of the electrostatic potential, used as an approximation to the local hardness, near the empty p orbital of these compounds, indicating a charge-controlled interaction in the complex. Also the electrophilicity index, proposed by Parr et al., computed both at the global and the local level, correlates linearly with the complexation energies of the compounds with NH3. The Lewis base character of these silylenes has been investigated, through their interaction with the acids BH3 and AlH3. Also in this case, the electrostatic potential can be used to probe the reactivity of the compounds. It will finally be demonstrated that an increasing stability of the silylenes and germylenes is accompanied by an increase in their nucleophilicity and a decrease of the electrophilicity.

摘要

本文详细研究了分别被第一周期和第二周期元素取代的单重态硅烯和锗烯(硅和锗的二价化合物)的亲电和亲核特性。在第一部分中,通过这些化合物与路易斯碱NH₃、PH₃和AsH₃的络合反应研究了它们的路易斯酸性质。结果表明,这种络合与最强碱NH₃最有利,将这些化合物归类为硬路易斯酸。这些化合物空p轨道附近的相互作用能与用作局部硬度近似值的静电势值之间的线性相关性证实了这一点,表明络合物中存在电荷控制的相互作用。此外,帕尔等人提出的亲电指数,在全局和局部水平上计算,都与化合物与NH₃的络合能呈线性相关。通过这些硅烯与酸BH₃和AlH₃的相互作用研究了它们的路易斯碱性质。在这种情况下,静电势也可用于探测化合物的反应性。最终将证明,硅烯和锗烯稳定性的增加伴随着它们亲核性的增加和亲电性的降低。

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