首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Modelling of disjoining pressure for Lennard-Jones free thin films
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Modelling of disjoining pressure for Lennard-Jones free thin films

机译:Lennard-Jones自由薄膜的解体压力建模

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Development of disjoining pressure was performed to study the symmetric, Lennard-Jones (LJ) free thin films using molecular modelling. A methodology rooted from film thermodynamics was established to derive the disjoining pressure isotherm (II - h), which is based on the surface tension at varied film thicknesses and can be viewed as a post-processing technique. The results showed that the disjoining pressure of LJ fluid is purely attractive. Compared with the complicated method reported previously, this methodology is demonstrated to be more convenient and readily applicable for other liquid films (e.g. aqueous thin films containing electrolyte or surfactants) meanwhile it can be applied at both low and high temperatures.
机译:通过分子建模研究了分离压力的发展,以研究对称,无Lennard-Jones(LJ)的薄膜。建立了以薄膜热力学为基础的方法,以得出分离的等温线(II-h),该方法基于变化的薄膜厚度下的表面张力,可以看作是一种后处理技术。结果表明,LJ流体的分离压力纯粹具有吸引力。与先前报道的复杂方法相比,该方法被证明更方便并且易于应用于其他液体膜(例如,含有电解质或表面活性剂的水性薄膜),同时可以在低温和高温下使用。

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