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螯合拓扑诱导的过渡金属配位多面体的畸变途径。

Distortion Pathways of Transition Metal Coordination Polyhedra Induced by Chelating Topology.

机构信息

Departament de Química Inorgànica and Institut de Química Teòrica i Computacional, Universitat de Barcelona , Martí i Franquès 1-11, 08028 Barcelona, Spain.

出版信息

Chem Rev. 2015 Dec 23;115(24):13447-83. doi: 10.1021/acs.chemrev.5b00537. Epub 2015 Nov 17.

Abstract

A continuous shape measures analysis of the coordination polyhedra of a host of transition metal complexes with bi- and multidentate ligands discloses the distortion pathway associated with each particular topology of the chelate rings formed. The basic parameter that controls the degree of distortion is the metal-donor atom bond distance that induces nonideal bond angles due to the rigidity of the ligands. Thus, the degree of distortion within each family of complexes depends on the atomic size, on which the high- or low-spin state has a large effect. Special attention is therefore paid to several spin-crossover systems and to the enhanced distortions that go along with the transition from low- to high-spin state affected by temperature, light, or pressure. Several families of complexes show deviations from the expected distortion pathways in the high-spin state that can be associated to the onset of intermolecular interactions such as secondary coordination of counterions or solvent molecules. Also, significant displacement of counterions in an extended solid may result from the changes in metal-ligand bond distances when ligands are involved in intermolecular hydrogen bonding.

摘要

采用连续形状测量分析方法,对含有双齿和多齿配体的一系列过渡金属配合物的配位多面体进行研究,揭示了与形成的螯合环的特定拓扑结构相关的扭曲途径。控制扭曲程度的基本参数是金属-供体原子键距,由于配体的刚性,它会导致非理想的键角。因此,每个配合物家族的扭曲程度取决于原子尺寸,其中高自旋态或低自旋态有很大影响。因此,特别关注了几个自旋交叉体系以及伴随温度、光或压力引起的从低自旋态到高自旋态的转变而增强的扭曲。几个配合物家族表现出在高自旋态下偏离预期扭曲途径的现象,这可能与离子或溶剂分子的二次配位等分子间相互作用的开始有关。此外,当配体参与分子间氢键时,金属-配体键距的变化可能导致在扩展固体中抗衡离子的显著位移。

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