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首页> 外文期刊>The Journal of Chemical Physics >A molecular H _2 potential for heterogeneous simulations including polarization and many-body van der Waals interactions
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A molecular H _2 potential for heterogeneous simulations including polarization and many-body van der Waals interactions

机译:分子极化的H _2电势,用于极化和多体范德华相互作用的多态模拟

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摘要

A highly accurate aniostropic intermolecular potential for diatomic hydrogen has been developed that is transferable for molecular modeling in heterogeneous systems. The potential surface is designed to be efficacious in modeling mixed sorbates in metal-organic materials that include sorption interactions with charged interfaces and open metal sites. The potential parameters are compatible for mixed simulations but still maintain high accuracy while deriving dispersion parameters from a proven polarizability model. The potential includes essential physical interactions including: short-range repulsions, dispersion, and permanent and induced electrostatics. Many-body polarization is introduced via a point-atomic polarizability model that is also extended to account for many-body van der Waals interactions in a consistent fashion. Permanent electrostatics are incorporated using point partial charges on atomic sites. However, contrary to expectation, the best potentials are obtained by permitting the charges to take on values that do not reproduce the first non-vanishing moment of the electrostatic potential surface, i.e., the quadrupole moment. Potential parameters are fit to match ab initio energies for a representative range of dimer geometries. The resulting potential is shown to be highly effective by comparing to electronic structure calculations for a thermal distribution of trimer geometries, and by reproducing experimental bulk pressure-density isotherms. The surface is shown to be superior to other similarly portable potential choices even in tests on homogeneous systems without strong polarizing fields. The present streamlined approach to developing such potentials allows for a simple adaptation to other molecules amenable to investigation by high-level electronic structure methods.
机译:已经开发出双原子氢的高度精确的各向异性分子间电势,可用于异质系统中的分子建模。潜在表面的设计可有效模拟金属有机材料中的混合山梨酸酯,包括与带电界面和开放金属位点的吸附相互作用。潜在参数可用于混合模拟,但仍可保持较高的精度,同时可从经过验证的极化率模型导出色散参数。电位包括基本的物理相互作用,包括:短程斥力,色散以及永久性和感应性静电。通过点原子极化率模型引入多体极化,该模型还扩展为以一致的方式解释多体范德华相互作用。永久性静电是通过原子位点上的点电荷合并而成的。然而,与预期相反,通过允许电荷呈现不再现静电势表面的第一非消失矩,即四极矩的值,来获得最佳势。拟合潜在参数以匹配代表范围内的二聚体几何形状的从头能量。通过与三聚体几何结构的热分布的电子结构计算进行比较,并通过再现实验的体积压力-密度等温线,可以证明所产生的潜力非常有效。即使在没有强偏振场的均质系统上进行测试,该表面也优于其他类似便携式电位选择。目前开发这种潜力的简化方法允许对适用于通过高级电子结构方法进行研究的其他分子的简单适应。

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