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没有“化学键”的化学键?关于一种三亚甲基甲烷铁配合物的实验与理论电荷密度联合研究

Chemical bonds without "chemical bonding"? A combined experimental and theoretical charge density study on an iron trimethylenemethane complex.

作者信息

Farrugia Louis J, Evans Cameron, Tegel Marcus

机构信息

WestCHEM, Department of Chemistry, University of Glasgow, Scotland.

出版信息

J Phys Chem A. 2006 Jun 29;110(25):7952-61. doi: 10.1021/jp061846d.

Abstract

High-resolution X-ray diffraction data, in conjunction with DFT(B3LYP) quantum calculations, have been used in a QTAIM analysis of the charge density in the trimethylenemethane (TMM) complex Fe(eta(4)-CCH(2))(CO)(3). The agreement between the theoretical and experimental topological properties is excellent. Only one bond path is observed between the TMM ligand and the Fe atom, from the central C(alpha) atom. However, much evidence, including from the delocalization indices and the source function, suggests that there is a strong chemical interaction between the Fe and C(beta) atoms, despite the formal lack of chemical bonding according to QTAIM.

摘要

高分辨率X射线衍射数据与密度泛函理论(DFT,B3LYP)量子计算相结合,已用于对三亚甲基甲烷(TMM)配合物Fe(η⁴-C[CH₂]₃)(CO)₃中的电荷密度进行量子拓扑原子理论(QTAIM)分析。理论和实验拓扑性质之间的一致性非常好。在TMM配体和Fe原子之间,仅从中心C(α)原子观察到一条键径。然而,包括离域指数和源函数在内的许多证据表明,尽管根据QTAIM形式上缺乏化学键,但Fe和C(β)原子之间存在强烈的化学相互作用。

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