首页> 外文期刊>The European physical journal, B. Condensed matter physics >Behavior of a wetting phase near a solid boundary: vapor near a weakly attractive surface
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Behavior of a wetting phase near a solid boundary: vapor near a weakly attractive surface

机译:固态边界附近的润湿相的行为:弱吸引力表面附近的蒸气

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摘要

Density profiles of a LJ vapor near a weakly attractive surface with long-range fluid wall potential was studied along the pore coexistence curve. There are two localized density maxima near the pore wall: the first one is caused by localization of the molecules in the minimum of the fluid-wall potential, and the second one reflects adsorption of molecules at the first layer at higher densities. In addition, a third, weak density maximum is observed close to the critical temperature due to the competition between the long-range attractive tail of the fluid-wall potential and the effect of missing neighbors. This maximum separates the region of a gradual density depletion toward the surface due to the missing neighbor effect and the adsorption region further from the surface, where the density gradually increases toward the surface due to the attractive fluid-wall potential. When approaching the bulk critical temperature, this maximum moves away from the surface due to the divergence of the bulk correlation length. Applicability of various equations to describe the vapor density profiles is examined. Excess adsorption of vapor at low temperatures turns into excess depletion at higher temperatures. The crossover temperature increases with increasing pore size and strengthening fluid-wall interaction. The problems of the theory of the surface critical behavior of Ising models in a case of a non vanishing surface field and its mapping on a fluid is discussed.
机译:沿着孔隙共存曲线研究了具有远距离流体壁电势的弱吸引力表面附近的LJ蒸气的密度分布。在孔壁附近有两个局部密度最大值:第一个是由于分子在最小流体壁电势中的局部化而引起的,第二个是较高密度的分子在第一层的吸附。此外,由于流体壁电位的长距离引力尾部与缺少邻域的影响之间的竞争,在接近临界温度时观察到第三个弱密度最大值。该最大值将由于缺少邻近效应而导致的朝向表面的密度逐渐减小的区域与远离表面的吸附区域分开,在该区域,由于有吸引力的流体壁电势,密度逐渐朝着表面增大。当接近本体临界温度时,由于本体相关长度的差异,该最大值从表面移开。检验了各种方程式来描述蒸气密度分布的适用性。低温下蒸气的过量吸附会导致高温下的过量消耗。交叉温度随着孔径的增加和流体壁相互作用的增强而增加。讨论了在表面场不消失的情况下伊辛模型的表面临界行为的理论问题及其在流体上的映射。

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