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首页> 外文期刊>The Journal of Chemical Physics >Prediction of phase behavior of nanoconfined Lennard-Jones fluids with density functional theory based on the first-order mean spherical approximation
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Prediction of phase behavior of nanoconfined Lennard-Jones fluids with density functional theory based on the first-order mean spherical approximation

机译:基于一阶均值球面近似的密度泛函理论预测纳米约束Lennard-Jones流体的相行为

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摘要

The recently proposed first-order mean spherical approximation (FMSA) [Y.Tang,J.Chem.Phys.121,10605 (2004)] for inhomogeneous fluids is extended to study the phase behavior of nanoconfined Lennard-Jones fluids,which is consistent with the phase equilibria calculation of the corresponding bulk fluid.With a combination of fundamental measure theory,FMSA provides Helmholtz free energy and direct correlation function to formulate density functional theory,which implementation is as easy as the mean-field theory.Following previous success in predicting density profiles inside slit pores,this work is focused specially on the vapor-liquid equilibrium of the Lennard-Jones fluids inside these pores.It is found that outside the critical region FMSA predicts well the equilibrium diagram of slit pores with the sizes of 5.0,7.5,and 10 molecular diameters by comparing with available computer simulation data.As a quantitative method,FMSA can be treated as an extension from its bulk calculation,while the mean-field theory is only qualitative,as its bulk version.
机译:最近提出的非均质流体的一阶均值球面近似(FMSA)[Y.Tang,J.Chem.Phys.121,10605(2004)]得以扩展,以研究纳米密闭Lennard-Jones流体的相行为。 FMSA结合了基本测度理论,提供了亥姆霍兹自由能和直接相关函数来构造密度泛函理论,实现起来与均值场理论一样容易。预测狭缝孔内的密度分布,这项工作专门针对这些孔内的Lennard-Jones流体的汽液平衡。发现在关键区域外FMSA可以很好地预测大小为5.0的狭缝孔的平衡图通过与现有的计算机仿真数据进行比较,可得到7.5、10和10的分子直径。平均场理论只是定性的,因为它是整体形式。

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