Structure correlation in bispidine coordination compounds—isomerism and tuneable reactivity

Peter Comba, Marion Kerscher
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引用次数: 15

Abstract

The published structural data of pseudo-square-pyramidal and pseudo-octahedral transition metal complexes with tetra- and pentadentate bispidine ligands (2,4-, 2,3,4- and 2,4,7-substituted 3,7-diazabicyclo[3.3.1]nonane, pyridine or 6-methylpyridine substituents), primarily with copper(I), copper(II) and iron(II) is reviewed, together with few molecular mechanics and DFT calculations, and in the light of the specific and uncommon molecular properties of bispidine coordination compounds. One of the main features is that, while the ligands are very rigid, there is a high degree of elasticity of the coordination geometries. That is, the potential energy surfaces of the complexes are flat; in addition, there are various shallow minima, and this leads to uncommon types of isomerism. These structural features, the emerging reactivities and possibilities to tune them are discussed in detail.

比必定配位化合物的结构相关性——同分异构和可调反应性
本文综述了以铜(I)、铜(II)和铁(II)为主的四齿和五齿比斯匹啶配体(2,4-、2,3,4-和2,4,7取代的3,7-重氮杂环[3.3.1]壬烷、吡啶或6-甲基吡啶取代基)的伪方-金字塔和伪八面体过渡金属配合物的已发表结构数据,并结合比斯匹啶配位化合物的特殊和不常见的分子性质,进行了一些分子力学和DFT计算。其中一个主要特点是,虽然配体是非常刚性的,但配位几何具有高度的弹性。即配合物的势能面是平坦的;此外,还存在各种浅极小值,这导致了不常见的同分异构类型。详细讨论了这些结构特征、新出现的反应性和调整它们的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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