Guégan Frédéric, Mignon Pierre, Tognetti Vincent, Joubert Laurent, Morell Christophe
Laboratoire des Sciences Analytiques, UMR CNRS 5280, Université Claude Bernard Lyon, 1 69622 Villeurbanne Cedex, France.
Phys Chem Chem Phys. 2014 Aug 7;16(29):15558-69. doi: 10.1039/c4cp01613k. Epub 2014 Jun 23.
In this paper, we show that the ambiphilic properties of some organic ligands in organometallic complexes may be retrieved readily from simple calculations in the framework of conceptual density functional theory (C-DFT): namely, the dual descriptor (DD) and the molecular electrostatic potential (MEP) of the ligands afford a rather straightforward interpretation of experimental trends such as the bonding geometry and the electronic properties of complexes in terms of σ-, π- and back-bonding. The studied ligands were chosen to be representative of the wide variety organometallic chemistry offers, ranging from neutral to charged systems and from diatomic to polyatomic molecules. The present approach is general since all relevant parameters are retrieved from the electron density, obtained either from a DFT or post-Hartree-Fock calculation. It is believed to be helpful for organometallic chemists, since it allows a deep understanding and may be used as a predictive tool of the coordinating properties of ligands.
在本文中,我们表明,有机金属配合物中某些有机配体的两亲性可在概念密度泛函理论(C-DFT)框架下通过简单计算轻松获得:即,配体的双描述符(DD)和分子静电势(MEP)能依据σ键、π键和反馈键对诸如配合物的键合几何结构和电子性质等实验趋势给出相当直观的解释。所研究的配体被选为有机金属化学所涵盖的广泛类型的代表,涵盖从中性到带电体系以及从双原子分子到多原子分子。本方法具有通用性,因为所有相关参数均从电子密度中获取,电子密度可通过DFT计算或后哈特里 - 福克计算得到。相信它对有机金属化学家有所帮助,因为它能实现深入理解,并且可作为配体配位性质的预测工具。