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π 电子在含苯锂键配合物形成中的作用。

The role of π electrons in the formation of benzene-containing lithium-bonded complexes.

机构信息

Institute of Computational Quantum Chemistry, College of Chemistry and Material Science, Hebei Normal University, Shijiazhuang 050016, PR China.

出版信息

Chemphyschem. 2011 Dec 23;12(18):3584-90. doi: 10.1002/cphc.201100566. Epub 2011 Oct 14.

Abstract

The intermolecular interactions in C(6)H(6)···LiX (X=OH, NH(2), F, Cl, Br, NC, CN) complexes are investigated by using second-order Møller-Plesset perturbation theory (MP2) calculations and quantum theory of "atoms in molecules" (QTAIM) studies, and the role of π electrons is studied in the formation of these benzene-containing lithium-bonded complexes. The molecular electrostatic potentials of benzene and LiX determine the geometries of the lithium-bonded complexes. The electron densities at the lithium bond critical points in the πC(6)H(6)···LiX complexes are obviously stronger than those in the σC(6)H(6)···LiX complexes, which indicates that the intermolecular interactions in the C(6)H(6)···LiX complexes are mainly attributable to π-type interaction. The topological and energy properties at the lithium bond critical points in both the C(6)H(6)···LiX and πC(6)H(6)···LiX complexes are linear with the interaction energies, thereby showing the crucial role of the π electrons in the formation of these complexes. Electron localization function (ELF) analysis indicates that the formation of the lithium bonds leads to the reduction of the ELF π-electron density and volume, and the reduction of the π-electron volume is linear with the interaction energies with the correction coefficient 0.9949.

摘要

通过使用二级微扰理论(MP2)计算和分子中原子的量子理论(QTAIM)研究,研究了 C(6)H(6)···LiX(X=OH、NH(2)、F、Cl、Br、NC、CN)复合物中的分子间相互作用,并研究了π电子在形成这些含苯的锂键复合物中的作用。苯和 LiX 的分子静电势决定了锂键复合物的几何形状。在 πC(6)H(6)···LiX 复合物中,锂键临界点的电子密度明显强于在 σC(6)H(6)···LiX 复合物中的电子密度,这表明 C(6)H(6)···LiX 复合物中的分子间相互作用主要归因于π型相互作用。在 C(6)H(6)···LiX 和 πC(6)H(6)···LiX 复合物中,锂键临界点的拓扑和能量性质与相互作用能量呈线性关系,从而表明 π 电子在这些复合物的形成中起着至关重要的作用。电子定域函数(ELF)分析表明,锂键的形成导致 ELFπ电子密度和体积的减少,而π电子体积的减少与相互作用能量呈线性关系,校正系数为 0.9949。

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