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主族元素间理想化三键的本质与反式弯曲几何结构的σ起源——价键研究

The Nature of the Idealized Triple Bonds Between Principal Elements and the σ Origins of Trans-Bent Geometries-A Valence Bond Study.

作者信息

Ploshnik Elina, Danovich David, Hiberty Philippe C, Shaik Sason

机构信息

Institute of Chemistry and The Lise Meitner-Minerva Center for Computational Quantum Chemistry, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

Laboratoire de Chimie Physique, UMR CNRS 8000, Université de Paris-Sud, 91405 Orsay Cédex, France.

出版信息

J Chem Theory Comput. 2011 Apr 12;7(4):955-68. doi: 10.1021/ct100741b. Epub 2011 Mar 2.

Abstract

We describe herein a valence bond (VB) study of 27 triply bonded molecules of the general type X≡Y, where X and Y are main element atoms/fragments from groups 13-15 in the periodic table. The following conclusions were derived from the computational data: (a) Single π-bond and double π-bond energies for the entire set correlate with the "molecular electronegativity", which is the sum of the X and Y electronegativites for X≡Y. The correlation with the molecular electronegativity establishes a simple rule of periodicity: π-bonding strength generally increases from left to right in a period and decreases down a column in the periodic table. (b) The σ frame invariably prefers trans bending, while π-bonding gets destabilized and opposes the trans distortion. In HC≡CH, the π-bonding destabilization overrides the propensity of the σ frame to distort, while in the higher row molecules, the σ frame wins out and establishes trans-bent molecules with 2(1)/2 bonds, in accord with recent experimental evidence based on solid state (29)Si NMR of the Sekiguchi compound. Thus, in the trans-bent molecules "less bonds pay more". (c) All of the π bonds show significant bonding contributions from the resonance energy due to covalent-ionic mixing. This quantity is shown to correlate linearly with the corresponding "molecular electronegativity" and to reflect the mechanism required to satisfy the equilibrium condition for the bond. The π bonds for molecules possessing high molecular electronegativity are charge-shift bonds, wherein bonding is dominated by the resonance energy of the covalent and ionic forms, rather than by either form by itself.

摘要

我们在此描述了对27种通式为X≡Y的三键分子的价键(VB)研究,其中X和Y是元素周期表中13 - 15族的主族元素原子/片段。从计算数据得出以下结论:(a) 整个集合的单π键和双π键能量与“分子电负性”相关,“分子电负性”是X≡Y中X和Y电负性之和。与分子电负性的相关性建立了一个简单的周期性规律:π键强度通常在周期表中从左到右增加,在一列中从上到下减小。(b) σ骨架总是倾向于反式弯曲,而π键会变得不稳定并抵抗反式畸变。在HC≡CH中,π键的不稳定超过了σ骨架的畸变倾向,而在更高周期的分子中,σ骨架占主导,形成具有2(1)/2键的反式弯曲分子,这与基于关口化合物的固态(29)Si NMR的最新实验证据一致。因此,在反式弯曲分子中“键越少贡献越大”。(c) 所有的π键都显示出由于共价 - 离子混合产生的共振能对键合有显著贡献。该量与相应的“分子电负性”呈线性相关,并反映了满足键平衡条件所需的机制。具有高分子电负性的分子的π键是电荷转移键,其中键合主要由共价和离子形式的共振能主导,而不是由任何一种形式单独主导。

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