Guzei Ilia A, Wendt Mark
Chemistry Department, University of Wisconsin-Madison, Madison, WI, USA.
Dalton Trans. 2006 Sep 7(33):3991-9. doi: 10.1039/b605102b. Epub 2006 Jul 6.
An improved algorithm has been designed to characterize ligand interactions in organometallic and coordination complexes in terms of the percentage of the metal coordination sphere shielded by a given ligand. The computations for ligand solid angles are performed numerically and employ introduced atomic radii that are larger than covalent but smaller than van der Waals radii. This approach enables facile evaluation of steric congestion in the metal coordination sphere, quantification of unfavorable interligand contacts, and in some cases prediction of the complex composition or ligand coordination on purely geometrical grounds.
一种改进的算法已被设计出来,用于根据给定配体屏蔽的金属配位球的百分比来表征有机金属和配位络合物中的配体相互作用。配体立体角的计算通过数值方法进行,并采用引入的原子半径,该半径大于共价半径但小于范德华半径。这种方法能够轻松评估金属配位球中的空间拥挤情况,量化不利的配体间接触,并且在某些情况下,仅基于几何原理预测络合物的组成或配体配位情况。