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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Nature of Alkali Ion-Water Interactions: Insights from Many-Body Representations and Density Functional Theory. II
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Nature of Alkali Ion-Water Interactions: Insights from Many-Body Representations and Density Functional Theory. II

机译:碱离子 - 水相互作用的性质:许多身体表示和密度泛函理论的见解。 二

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Interaction energies of alkali ion-water dimers, M+(H2O), and trimers, M+(H2O)(2), with M = Li, Na, K, Rb, and Cs, are investigated using various many-body potential energy functions and exchange-correlation functionals selected across the hierarchy of density functional theory approximations. Analysis of interaction energy decompositions indicates that close-range interactions such as Pauli repulsion, charge transfer, and charge penetration must be captured in order to reproduce accurate interaction energies. In particular, it is found that simple classical polarizable models must be supplemented with dedicated terms which account for these close-range interactions in order to achieve chemical accuracy. It is also found that the exchange-correlation functionals mostly differ from each other in their Pauli repulsion + dispersion energies and, hence, benefit from the inclusion of nonlocal terms such as Hartree-Fock exchange and dependence on the electronic kinetic energy density in order to reproduce the interactions that contribute to this term, namely, Pauli repulsion and intermediate-range dispersion. As a continuation of the analysis performed in J. Chem. Theory Comput. 2019, 15, 2983, 10.1021/acs.jctc.9b00064, we make comparisons between findings for alkali ion-water interactions with those for halide-water interactions.
机译:使用各种许多身体势能功能研究,使用M = Li,Na,K,Rb和Cs进行碱性离子水二聚体,M +(H 2 O)和三聚体,M +(H 2 O)(2)的相互作用能量。在密度函数理论理论近似的层次结构中选择的交换相关功能。相互作用能量分解的分析表明必须捕获诸如Pauli排斥,电荷转移和电荷渗透的近距离相互作用以便再现精确的相互作用能量。特别是,发现简单的经典可极化模型必须补充专用术语,该专用术语占这些近距离相互作用以实现化学精度。还发现,交换相关功能在Pauli排斥+色散能中彼此大多不同,因此,从包含非局部术语(例如Hartree-Bock交换和对电子动能密度)的依赖中受益于再现有助于该术语的相互作用,即Pauli排斥和中等范围分散。作为在J.Chem进行的分析的延续。理论计算。 2019,15,2983,10.1021 / ACS.JCTC.9B00064,我们在卤化物离子与卤化物 - 水相互作用的相互作用的结果之间进行比较。

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