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电子定域性指标的电荷分解分析:化学键的轨道表示与实空间表示之间的桥梁

Charge decomposition analysis of the electron localizability indicator: a bridge between the orbital and direct space representation of the chemical bond.

作者信息

Wagner Frank R, Bezugly Viktor, Kohout Miroslav, Grin Yuri

机构信息

Max-Planck-Institut für Chemische Physik fester Stoffe, Nöthnitzer Strasse 40, 01187 Dresden, Germany.

出版信息

Chemistry. 2007;13(20):5724-41. doi: 10.1002/chem.200700013.

Abstract

The novel functional electron localizability indicator is a useful tool for investigating chemical bonding in molecules and solids. In contrast to the traditional electron localization function (ELF), the electron localizability indicator is shown to be exactly decomposable into partial orbital contributions even though it displays at the single-determinantal level of theory the same topology as the ELF. This approach is generally valid for molecules and crystals at either the single-determinantal or the explicitly correlated level of theory. The advantages of the new approach are illustrated for the argon atom, homonuclear dimers N2 and F2, unsaturated hydrocarbons C2H4 and C6H6, and the transition-metal-containing molecules Sc(2)2+ and TiF4.

摘要

新型功能化电子定域性指标是研究分子和固体中化学键的有用工具。与传统的电子定域函数(ELF)不同,尽管电子定域性指标在单行列式理论水平上显示出与ELF相同的拓扑结构,但它可精确分解为部分轨道贡献。该方法在单行列式或显式相关理论水平上对分子和晶体普遍有效。通过氩原子、同核双原子分子N₂和F₂、不饱和烃C₂H₄和C₆H₆以及含过渡金属的分子Sc₂²⁺和TiF₄说明了这种新方法的优势。

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