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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Replica Ornstein-Zernike Equations and Simulations of the Structure of a Simple Fluid in disordered Porous Media. Application to Monomolecular Adsorption
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Replica Ornstein-Zernike Equations and Simulations of the Structure of a Simple Fluid in disordered Porous Media. Application to Monomolecular Adsorption

机译:复制Ornstein-Zernike方程和无序多孔介质中简单流体结构的模拟。在单分子吸附中的应用

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摘要

A two-dimensional (2D) model for a simple fluid adsorbed in a disordered porous medium is investigated by means of the replica Ornstein-Zernike (ROZ) equations with th hypernetted chain (HNC) and Percus-Yevick (PY) approximations. In addition, Monte Carlo simulations for this model are presented. The structural properties of adsorbed monolayer resulting from the theory agree well with the computer simulation data. Also we obtain the fluid compressibility from the ROZ equations and the adsorption isotherms. Besides the hard core repulsion, a long-range interaction between the fluid species in the form of an attractive square well is included. The contribution of this long-range term is considered using a mean-field approximation. This permits us to analyze the qualitative dependence of the behavior of the critical density and temperature on the matrix parameters. We find that the critical temperature of the hard discs with a square well attraction decreases with an increasing density of the quenched component. The critical density is less sensitive to these changes.
机译:借助复制的Ornstein-Zernike(ROZ)方程和超网状链(HNC)和Percus-Yevick(PY)近似,研究了吸附在无序多孔介质中的简单流体的二维(2D)模型。此外,还介绍了此模型的蒙特卡洛模拟。由理论得出的吸附单层的结构特性与计算机模拟数据吻合得很好。我们还可以从ROZ方程和吸附等温线获得流体可压缩性。除了硬核排斥之外,还包括具有吸引力的方井形式的流体物种之间的远程相互作用。可以使用平均场近似来考虑此长期项的贡献。这使我们能够分析临界密度和温度行为对基体参数的定性依赖。我们发现,具有方形阱吸引力的硬盘的临界温度随着淬火组件密度的增加而降低。临界密度对这些变化不太敏感。

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