Anisimov Aleksei A, Ananyev Ivan V
A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, Vavilova str. 28, Moscow, 119991, GSP-1, Russia.
National Research University Higher School of Economics, Miasnitskaya Str. 20, Moscow, 101000, Russia.
J Comput Chem. 2020 Sep 30;41(25):2213-2222. doi: 10.1002/jcc.26390. Epub 2020 Jul 30.
The potential relations between the measure of topological interatomic bonding-integrals of electron density with respect to internuclear axis over the corresponding quantum theory of atoms in molecules (QTAIM)-defined interatomic surface (IAS)-and interatomic exchange-correlation contributions from the interacting quantum atoms approach are discussed. The quantum chemical computations of 38 equilibrium diatomic systems at different levels of theory (HF, MP2, MP4SDQ, and CCSD) are invoked to support abstract considerations. Parameters of excellent correlations between IAS integrals and interatomic exchange-correlation energy are found by the optimization. The performance of these trends depends on the accuracy of the electronic correlation treatment. The resulting trends are a unique feature of equilibrium states, whereas more complicated dependencies are explored for several systems at non-equilibrium conditions. The relations of established trends with other IAS-based estimations of strength of bonding interactions between topological atoms and issues explored for multiatomic systems are briefly discussed.
讨论了在分子中原子的相应量子理论(QTAIM)定义的原子间表面(IAS)上,电子密度的拓扑原子间键积分相对于核间轴的量度与相互作用量子原子方法的原子间交换 - 相关贡献之间的潜在关系。调用了38个平衡双原子系统在不同理论水平(HF、MP2、MP4SDQ和CCSD)下的量子化学计算来支持抽象的考量。通过优化发现了IAS积分与原子间交换 - 相关能量之间具有良好相关性的参数。这些趋势的表现取决于电子相关处理的准确性。所得趋势是平衡态的独特特征,而对于几个非平衡条件下的系统,则探索了更复杂的依赖性。简要讨论了既定趋势与基于IAS的拓扑原子间键合相互作用强度的其他估计以及多原子系统所探讨问题之间的关系。