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首页> 外文期刊>The Journal of Chemical Physics >Toward chemical accuracy in the description of ion-water interactions through many-body representations. Alkali-water dimer potential energy surfaces
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Toward chemical accuracy in the description of ion-water interactions through many-body representations. Alkali-water dimer potential energy surfaces

机译:通过许多身体表示描述了离子水相互作用的化学精度。 碱水二聚体势能表面

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This study presents the extension of the MB-nrg (Many-Body energy) theoretical/computational framework of transferable potential energy functions (PEFs) for molecular simulations of alkali metal ion-water systems. The MB-nrg PEFs are built upon the many-body expansion of the total energy and include the explicit treatment of one-body, two-body, and three-body interactions, with all higher-order contributions described by classical induction. This study focuses on the MB-nrg two-body terms describing the full-dimensional potential energy surfaces of the M+(H2O) dimers, where M+ = Li+, Na+, K+, Rb+, and Cs+. The MB-nrg PEFs are derived entirely from "first principles" calculations carried out at the explicitly correlated coupled-cluster level including single, double, and perturbative triple excitations [CCSD(T)-F12b] for Li+ and Na+ and at the CCSD(T) level for K+, Rb+, and Cs+. The accuracy of the MB-nrg PEFs is systematically assessed through an extensive analysis of interaction energies, structures, and harmonic frequencies for all five M+(H2O) dimers. In all cases, the MB-nrg PEFs are shown to be superior to both polarizable force fields and ab initio models based on density functional theory. As previously demonstrated for halide-water dimers, the MB-nrg PEFs achieve higher accuracy by correctly describing short-range quantum-mechanical effects associated with electron density overlap as well as long-range electrostatic many-body interactions. Published by AIP Publishing.
机译:本研究介绍了用于碱金属离子水系统的分子模拟的可转移势能功能(PEFS)的MB-NRG(许多身体能量)理论/计算框架的延伸。 MB-NRG PEF是基于总能量的多体扩展,包括一个体内,双体和三体相互作用的显式治疗,具有经典归纳所描述的所有高阶贡献。该研究侧重于描述M +(H2O)二聚体的全尺寸势能表面的MB-NRG二体术语,其中M + = Li +,Na +,K +,RB +和CS +。 MB-NRG PEF完全来自在明确相关的耦合簇水平上进行的“第一原理”计算,包括单一,双和扰动三重激发[CCSD(T)-F12B]用于LI +和NA +和CCSD( t)k +,rb +和cs +的水平。通过对所有五个M +(H2O)二聚体的相互作用能量,结构和谐波频率进行广泛的分析,系统地评估MB-NRG PEF的准确性。在所有情况下,MB-NRG PEF都显示出基于密度泛函理论的可极化力领域和AB Initio模型。如前所述用于卤化卤 - 水二聚体,通过正确描述与电子密度重叠相关的短程量子机械效应以及远程静电多体相互作用,MB-NRG PEFS实现更高的精度。通过AIP发布发布。

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