Xiong Zhenhai, Liu Yang, Sun Huai
School of Chemistry and Chemical Technology, Shanghai Jiao Tong University, Shanghai 200240, China.
J Phys Chem A. 2008 Mar 20;112(11):2469-76. doi: 10.1021/jp710217p. Epub 2008 Feb 28.
To develop a molecular mechanics force field for modeling complexes of transition metals and organic ligands, the electrostatic and covalent contributions in the coordination bonds were investigated using quantum mechanical density functional theory and model complexes of glyoxal diimine and the 2+ cations of the first row transition metals. The VDD and Hirshfeld charges are found to be closely correlated with the extent of the electron transfer between the ligands and the cations. Assuming the electrostatic contribution can be represented by the atomic partial charges, the covalent contributions in the coordination bonds are estimated to be in a range of 54-92% for the systems calculated. A simple force field was parametrized to validate the partial charge representation.
为了开发一种用于过渡金属与有机配体复合物建模的分子力学力场,利用量子力学密度泛函理论以及乙二醛二亚胺与第一行过渡金属2 + 阳离子的模型复合物,研究了配位键中的静电和共价贡献。发现VDD电荷和Hirshfeld电荷与配体和阳离子之间的电子转移程度密切相关。假设静电贡献可以由原子部分电荷表示,对于所计算的体系,配位键中的共价贡献估计在54 - 92%的范围内。对一个简单的力场进行了参数化,以验证部分电荷表示法。