Casalz-Sainz José Luis, Guevara-Vela José Manuel, Francisco Evelio, Rocha-Rinza Tomás, Martín Pendás Ángel
Departament of Analytical and Physical Chemistry, University of Oviedo, E-33006, Oviedo, Spain.
Institute of Chemistry, National Autonomous University of Mexico, Circuito Exterior, Ciudad Universitaria, Delegación Coyoacán C.P., 04510, Mexico City, Mexico.
Chemphyschem. 2017 Dec 15;18(24):3553-3561. doi: 10.1002/cphc.201700940. Epub 2017 Nov 15.
We discuss an intra- and interatomic partition of the electron correlation energy (E ) within the interacting quantum atoms (IQA) approach at the accurate coupled cluster level with single, double, and estimated triple excitations (CCSDT(T)). This division offers a privileged window into the spatial localization of this component of the molecular energy. We show that the total molecular E is dominated by the intra-atomic or intra-fragment terms and that interatomic contributions change smoothly from short- to long-range correlation (dispersion). The sign of these interatomic correlation terms differentiate between (i) mainly covalent or (ii) mainly ionic or nonbonded interactions. We propose that this feature may be used to define and examine intramolecular dispersion terms.
我们在具有单、双和估计三激发的精确耦合簇水平(CCSDT(T))下,讨论了相互作用量子原子(IQA)方法中电子相关能(E)的原子内和原子间划分。这种划分提供了一个了解分子能量这一组成部分空间定位的特殊窗口。我们表明,总分子E由原子内或片段内项主导,并且原子间贡献从短程相关(色散)到长程相关平滑变化。这些原子间相关项的符号区分了(i)主要是共价相互作用或(ii)主要是离子相互作用或非键相互作用。我们提出,这一特征可用于定义和研究分子内色散项。