ON THE EXACT EVALUATION OF INTERMOLECULAR ELECTROSTATIC INTERACTION ENERGY IN A MOLECULAR COORDINATE SYSTEM

IF 0.3 Q4 MULTIDISCIPLINARY SCIENCES
E. Çopuroğlu, B. Mamedov
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引用次数: 0

Abstract

We propose an effective general approach for accurately calculating the electron-electron, nuclear-electron and nuclear-nuclear Coulomb electrostatic interaction energies. Since these interaction energies are fundamental terms in the ab initio, density function and semi-empirical theories, their general examination will make an important contribution to the accurate calculation of the physical and chemical properties of atoms and molecules. It is well known that electron-electron, nuclear-electron and nuclear-nuclear Coulomb electrostatic interaction energies can be reduced to basic two-center Coulomb integrals. The analytical calculation of electrostatic interaction energies with respect to basic two-center Coulomb integrals over Slater type orbitals (STOs) in molecular coordinate systems allows for the routine evaluation of molecular structures and their related properties. In this study, we introduce a new full analytical algorithm for calculating the basic two-center Coulomb integrals over STOs using Guseinov’s auxiliary functions, especially the interactions between electrons. The auxiliary functions are calculated by using the exact recurrence relations developed by Guseinov. Our new approach is successfully tested on data from previously published studies, and can be recommended for the evaluation of related problems in atomic and molecular physics.
分子坐标系中分子间静电相互作用能的精确计算
我们提出了一种精确计算电子-电子、核-电子和核-库仑静电相互作用能的有效通用方法。由于这些相互作用能是从头算、密度函数和半经验理论中的基本项,因此对它们的全面研究将对准确计算原子和分子的物理和化学性质做出重要贡献。众所周知,电子-电子、核-电子和核-库仑静电相互作用能可以归结为基本的两中心库仑积分。在分子坐标系中,关于Slater型轨道(STO)上的基本两中心库仑积分的静电相互作用能的分析计算允许对分子结构及其相关性质进行常规评估。在这项研究中,我们介绍了一种新的全解析算法,用于使用Guseinov的辅助函数计算STO上的基本两中心库仑积分,特别是电子之间的相互作用。利用Guseinov提出的精确递推关系计算了辅助函数。我们的新方法已在先前发表的研究数据上成功测试,并可推荐用于评估原子和分子物理学中的相关问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Science and Arts
Journal of Science and Arts MULTIDISCIPLINARY SCIENCES-
自引率
25.00%
发文量
57
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