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基于单中心多极展开的柔性HO分子可转移势函数

Transferable Potential Function for Flexible HO Molecules Based on the Single-Center Multipole Expansion.

作者信息

Jónsson Elvar Örn, Rasti Soroush, Galynska Marta, Meyer Jörg, Jónsson Hannes

机构信息

Science Institute and Faculty of Physical Sciences, University of Iceland, VR-III, 107Reykjavík, Iceland.

Leiden Institute of Chemistry, Gorlaeus Laboratories, Leiden University, 2300 RALeiden, The Netherlands.

出版信息

J Chem Theory Comput. 2022 Dec 13;18(12):7528-7543. doi: 10.1021/acs.jctc.2c00598. Epub 2022 Nov 17.

Abstract

A potential function is presented for describing a system of flexible HO molecules based on the single-center multipole expansion (SCME) of the electrostatic interaction. The model, referred to as SCME/f, includes the variation of the molecular quadrupole moment as well as the dipole moment with changes in bond length and angle so as to reproduce results of high-level electronic structure calculations. The multipole expansion also includes fixed octupole and hexadecapole moments, as well as anisotropic dipole-dipole, dipole-quadrupole, and quadrupole-quadrupole polarizability tensors. The model contains five adjustable parameters related to the repulsive interaction and damping functions in the electrostatic and dispersion interactions. Their values are adjusted to reproduce the lowest energy isomers of small clusters, (HO) with = 2-6, as well as measured properties of the ice Ih crystal. Subsequent calculations of the energy difference between the various isomer configurations of the clusters show that SCME/f gives good agreement with results of electronic structure calculations and represents a significant improvement over the previously presented rigid SCME potential function. Analysis of the vibrational frequencies of the clusters and structural properties of ice Ih crystal show the importance of accurately describing the variation of the quadrupole moment with molecular structures.

摘要

基于静电相互作用的单中心多极展开(SCME),提出了一种用于描述柔性HO分子体系的势函数。该模型称为SCME/f,包括分子四极矩以及偶极矩随键长和键角变化的情况,以便重现高水平电子结构计算的结果。多极展开还包括固定的八极矩和十六极矩,以及各向异性的偶极-偶极、偶极-四极和四极-四极极化率张量。该模型包含五个与静电和色散相互作用中的排斥相互作用及阻尼函数相关的可调参数。调整它们的值以重现小团簇(HO)₂₋₆的最低能量异构体以及冰Ih晶体的测量性质。随后对团簇各种异构体构型之间能量差的计算表明,SCME/f与电子结构计算结果吻合良好,并且相对于之前提出的刚性SCME势函数有显著改进。对团簇振动频率和冰Ih晶体结构性质的分析表明,准确描述四极矩随分子结构的变化非常重要。

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