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首页> 外文期刊>The Journal of Chemical Physics >First-order mean-spherical approximation for interfacial phenomena:A unified method from bulk-phase equilibria study
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First-order mean-spherical approximation for interfacial phenomena:A unified method from bulk-phase equilibria study

机译:界面现象的一阶均值球面近似:整体相平衡研究的统一方法

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The recently proposed first-order mean-spherical approximation(FMSA)[Y.Tang,J.Chem.Phys.121,10605(2004)]for inhomogeneous fluids is extended to the study of interfacial phenomena.Computation is performed for the Lennard-Jones fluid,in which all phase equilibria properties and direct correlation function for density-functional theory are developed consistently and systematically from FMSA.Three functional methods,including fundamental measure theory for the repulsive force,local-density approximation,and square-gradient approximation,are applied in this interfacial investigation.Comparisons with the latest computer simulation data indicate that FMSA is satisfactory in predicting surface tension,density profile,as well as relevant phase equilibria.Furthermore,this work strongly suggests that FMSA is very capable of unifying homogeneous and inhomogeneous fluids,as well as those behaviors outside and inside the critical region within one framework.
机译:最近提出的非均质流体的一阶平均球面近似(FMSA)[Y.Tang,J.Chem.Phys.121,10605(2004)]扩展到界面现象的研究。对Lennard-由FMSA一致,系统地开发了琼斯流体,其中所有相平衡性质和密度泛函理论的直接相关函数都得到了系统地发展。三种函数方法,包括斥力的基本测度理论,局部密度近似和平方梯度近似,与最新计算机模拟数据的比较表明,FMSA在预测表面张力,密度分布以及相关的相平衡方面是令人满意的。此外,这项工作强烈表明FMSA非常有能力统一均质和不均质流体以及一个框架内关键区域内部和外部的行为。

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