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三硅烯和 Si3H4 异构体的相对稳定性。

Trisilaallene and the Relative Stability of Si3H4 Isomers.

机构信息

Department of Chemistry and the Lise Meitner, Minerva Center for Computational Quantum Chemistry, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

J Chem Theory Comput. 2006 Jul;2(4):956-64. doi: 10.1021/ct050154a.

Abstract

A theoretical quantum-mechanical study of trisilaallene, H2Si [Formula: see text] Si [Formula: see text] SiH2, and of 15 other Si3H4 isomers was carried out using ab initio and DFT methods with a variety of basis sets. Values given below are at B3LYP/6-31G(d,p). Unlike H2C [Formula: see text] C [Formula: see text] CH2 which is linear, H2Si [Formula: see text] Si [Formula: see text] SiH2 is highly bent at the central silicon atom, with a SiSiSi bending angle of 69.4°. The Si [Formula: see text] Si bond length is 2.269 Å, longer than a regular Si [Formula: see text] Si double bond (2.179 Å) but shorter than a Si-Si single bond (2.351 Å). The distance between the terminal silicon atoms is 2.583 Å, significantly longer than a Si-Si single bond. The geometry and electronic properties of H2Si [Formula: see text] Si [Formula: see text] SiH2 are similar to those of the corresponding trisilacyclopropylidene, which is only 2.7 kcal/mol higher in energy. A barrier of only 0.1 kcal/mol separates trisilacyclopropylidene and trisilaallene which can be described as bond-stretch isomers. Sixteen minima were located on the Si3H4 PES, most of them within a narrow energy range of ca. 10 kcal/mol. Six of the Si3H4 isomers are analogous to the classic C3H4 minima structures; however, the other Si3H4 isomers do not have carbon analogues, and they are characterized by hydrogen-bridged structures.

摘要

采用从头算和密度泛函理论(DFT)方法,结合多种基组,对三硅烯,H2Si [Formula: see text] Si [Formula: see text] SiH2 和其他 15 种 Si3H4 异构体进行了理论量子力学研究。下面给出的值是在 B3LYP/6-31G(d,p)水平下得到的。与线性的 H2C [Formula: see text] C [Formula: see text] CH2 不同,H2Si [Formula: see text] Si [Formula: see text] SiH2 中心硅原子高度弯曲,SiSiSi 弯曲角为 69.4°。Si [Formula: see text] Si 键长为 2.269 Å,长于常规的 Si [Formula: see text] Si 双键(2.179 Å),但短于 Si-Si 单键(2.351 Å)。末端硅原子之间的距离为 2.583 Å,明显长于 Si-Si 单键。H2Si [Formula: see text] Si [Formula: see text] SiH2 的几何形状和电子性质与相应的三硅环丙叉相似,其能量仅高出 2.7 kcal/mol。三硅环丙叉和三硅烯之间的能垒仅为 0.1 kcal/mol,可以将其描述为键拉伸异构体。在 Si3H4 PES 上定位了 16 个极小值,其中大多数位于约 10 kcal/mol 的狭窄能量范围内。在 Si3H4 异构体中,有 6 种类似于经典的 C3H4 极小值结构;然而,其他 Si3H4 异构体没有碳类似物,它们的特点是具有氢键桥结构。

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