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首页> 外文期刊>The Journal of Chemical Physics >An interaction site model integral equation study of molecular fluids explicitly considering the molecular orientation
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An interaction site model integral equation study of molecular fluids explicitly considering the molecular orientation

机译:明确考虑分子取向的分子流体相互作用部位模型积分方程研究

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摘要

We implemented an interaction site model integral equation for rigid molecules based on a density-functional theory where the molecular orientation is explicitly considered.In this implementation of the integral equation,multiple integral of the degree of freedom of the molecular orientation is performed using efficient quadrature methods,so that the site-site pair correlation functions are evaluated exactly in the limit of low density.We apply this method to Cl_2,HCl,and H_2O molecular fluids that have been investigated by several integral equation studies using various models.The site-site pair correlation functions obtained from the integral equation are in good agreement with the one from a simulation of these molecules.Rotational invariant coefficients,which characterize the microscopic structure of molecular fluids,are determined from the integral equation and the simulation in order to investigate the accuracy of the integral equation.
机译:我们基于密度泛函理论实现了刚性分子的相互作用位点模型积分方程,其中明确考虑了分子取向。在积分方程的此实现中,使用有效正交函数对分子取向的自由度进行多次积分方法,以便在低密度范围内精确评估位点对位相关函数。我们将此方法应用于通过各种积分方程研究并使用各种模型研究的Cl_2,HCl和H_2O分子流体。通过积分方程获得的位点对相关函数与通过模拟这些分子得到的位点对相关函数非常吻合。从积分方程和仿真中确定表征分子流体微观结构的旋转不变系数,以便研究积分方程的精度。

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