Harvey Miguel Angel, Baggio Sergio, Baggio Ricardo
Universidad Nacional de la Patagonia, Sede Trelew, and CENPAT, CONICET, Puerto Madryn, Chubut, Argentina.
Acta Crystallogr B. 2006 Dec;62(Pt 6):1038-42. doi: 10.1107/S0108768106026553. Epub 2006 Nov 14.
A method to describe, analyze and even predict the coordination geometries of metal complexes is proposed, based on previous well established concepts such as bond valence and valence-shell electron-pair repulsion (VSEPR). The idea behind the method is the generalization of the scalar bond-valence concept into a vector quantity, the bond-valence vector (BVV), with the innovation that the multidentate ligands are represented by their resultant BVVs. Complex n-ligand coordination spheres (frequently indescribable at the atomic level) reduce to much simpler ones when analyzed in BVV space, with the bonus of a better applicability of the VSEPR predictions. The geometrical implications of the BVV description are analyzed for the cases of n=2 and 3 (n=number of ligands), and the validity of its predictions, checked for a large number of metal complexes.
基于先前已确立的概念,如键价和价层电子对排斥理论(VSEPR),提出了一种描述、分析甚至预测金属配合物配位几何结构的方法。该方法背后的理念是将标量键价概念推广为向量量,即键价向量(BVV),其创新之处在于多齿配体由其合成的BVV表示。当在BVV空间中分析时,复杂的n配体配位球(在原子水平上通常难以描述)简化为更简单的配位球,这使得VSEPR预测具有更好的适用性。针对n = 2和n = 3(n为配体数)的情况分析了BVV描述的几何意义,并对大量金属配合物检验了其预测的有效性。