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确切的配体锥角。

Exact ligand cone angles.

机构信息

Department of Chemistry and Center for Computational Chemistry, University of Georgia, Athens, Georgia 30602, USA.

出版信息

J Comput Chem. 2013 May 30;34(14):1189-97. doi: 10.1002/jcc.23217. Epub 2013 Feb 13.

Abstract

Many properties of transition-metal complexes depend on the steric bulk of bound ligands, usually quantified by the Tolman (θ) and solid (Θ) cone angles, which have proven utility but suffer from various limitations and coarse approximations. Here, we present an improved, mathematically rigorous method to determine an exact cone angle (θ°) by solving for the most acute right circular cone that contains the entire ligand. The procedure is applicable to any ligand, planar or nonplanar, monodentate or polydentate, bound to any metal center in any environment, and it is ideal for analyzing structures from quantum chemical computations as well as X-ray crystallography experiments. Exact cone angles were evaluated for a wide array of phosphine and amine ligands bound to palladium, nickel, or platinum by optimizing structures using B3LYP/6-31G* density functional theory with effective core potentials for the transition metals. The mean absolute deviations of the standard θ and Θ parameters from the exact cone angles were 15-25°, mostly caused by distortions from the assumed idealized structures.

摘要

许多过渡金属配合物的性质取决于配体的空间位阻,通常用 Tolman(θ)和固体(Θ)锥角来量化,这些参数虽然具有实用性,但存在各种局限性和粗略的近似。在这里,我们提出了一种改进的、数学上严格的方法,通过求解包含整个配体的最锐角直圆锥来确定精确的锥角(θ°)。该方法适用于任何配体,无论是平面的还是非平面的,单齿的还是多齿的,与任何环境中的任何金属中心结合,对于分析量子化学计算和 X 射线晶体学实验得到的结构非常理想。通过使用 B3LYP/6-31G*密度泛函理论和过渡金属的有效核势对钯、镍或铂结合的广泛膦和胺配体进行结构优化,评估了精确锥角。标准θ和Θ参数与精确锥角的平均绝对偏差为 15-25°,主要是由假定的理想结构引起的扭曲造成的。

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