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基于色散校正密度泛函理论的简单、高效且通用的能量分解分析方法

Simple, Efficient, and Universal Energy Decomposition Analysis Method Based on Dispersion-Corrected Density Functional Theory.

作者信息

Lu Tian, Chen Qinxue

机构信息

Beijing Kein Research Center for Natural Sciences, Beijing 100024, P.R. China.

出版信息

J Phys Chem A. 2023 Aug 24;127(33):7023-7035. doi: 10.1021/acs.jpca.3c04374. Epub 2023 Aug 15.

Abstract

Energy decomposition analysis (EDA) is an important class of methods to explore the nature of interaction between fragments in a chemical system. It can decompose the interaction energy into different physical components to understand the factors that play key roles in the interaction. This work proposes an EDA strategy based on dispersion-corrected density functional theory (DFT), called sobEDA. This method is fairly easy to implement and very universal. It can be used to study weak interactions, chemical bond interactions, open-shell systems, and interactions between multiple fragments. The total time consumption of sobEDA is only about twice that of conventional DFT single-point calculation for the entire system. This work also proposes a variant of the sobEDA method named sobEDAw, which is designed specifically for decomposing weak interaction energies. Through a proper combination of DFT correlation energy and dispersion correction term, sobEDAw gives a ratio between dispersion energy and electrostatic energy that is highly consistent with the symmetry-adapted perturbation theory, which is quite popular and robust in studying weak interactions but expensive. We present a shell script sobEDA.sh to implement the methods proposed in this work based on the very popular Gaussian quantum chemistry program and Multiwfn wavefunction analysis code. Via the script, theoretical chemists can use the sobEDA and sobEDAw methods very conveniently in their study. Through a series of examples, the rationality of the new methods and their implementation are verified, and their great practical values in the study of various chemical systems are demonstrated.

摘要

能量分解分析(EDA)是探索化学体系中片段间相互作用本质的一类重要方法。它能将相互作用能分解为不同的物理分量,以了解在相互作用中起关键作用的因素。本文提出了一种基于色散校正密度泛函理论(DFT)的EDA策略,称为sobEDA。该方法易于实现且通用性很强。它可用于研究弱相互作用、化学键相互作用、开壳层体系以及多个片段之间的相互作用。对于整个体系,sobEDA的总耗时仅约为传统DFT单点计算的两倍。本文还提出了sobEDA方法的一个变体,名为sobEDAw,它专门用于分解弱相互作用能。通过DFT相关能与色散校正项的适当组合,sobEDAw给出的色散能与静电能之比与对称适配微扰理论高度一致,对称适配微扰理论在研究弱相互作用方面很流行且可靠,但计算成本较高。我们给出了一个 shell 脚本sobEDA.sh,用于基于非常流行的高斯量子化学程序和Multiwfn波函数分析代码实现本文提出的方法。通过该脚本,理论化学家可以在研究中非常方便地使用sobEDA和sobEDAw方法。通过一系列例子,验证了新方法及其实现的合理性,并展示了它们在各种化学体系研究中的巨大实用价值。

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