Singh Jayant K, Kwak Sang Kyu
Department of Chemical Engineering, Indian Institute of Technology Kanpur, Kanpur 208016, India.
J Chem Phys. 2007 Jan 14;126(2):024702. doi: 10.1063/1.2424460.
Phase equilibria of a square-well fluid in planar slit pores with varying slit width are investigated by applying the grand-canonical transition-matrix Monte Carlo (GC-TMMC) with the histogram-reweighting method. The wall-fluid interaction strength was varied from repulsive to attractive such that it is greater than the fluid-fluid interaction strength. The nature of the phase coexistence envelope is in agreement with that given in literature. The surface tension of the vapor-liquid interface is calculated via molecular dynamics simulations. GC-TMMC with finite size scaling is also used to calculate the surface tension. The results from molecular dynamics and GC-TMMC methods are in very good mutual agreement. The vapor-liquid surface tension, under confinement, was found to be lower than the bulk surface tension. However, with the increase of the slit width the surface tension increases. For the case of a square-well fluid in an attractive planar slit pore, the vapor-liquid surface tension exhibits a maximum with respect to wall-fluid interaction energy. We also report estimates of critical properties of confined fluids via the rectilinear diameter approach.
通过应用具有直方图重加权方法的巨正则转移矩阵蒙特卡罗(GC-TMMC),研究了具有不同狭缝宽度的平面狭缝孔中方阱流体的相平衡。壁 - 流体相互作用强度从排斥变为吸引,使其大于流体 - 流体相互作用强度。相共存包络的性质与文献中给出的一致。通过分子动力学模拟计算气 - 液界面的表面张力。具有有限尺寸标度的GC-TMMC也用于计算表面张力。分子动力学和GC-TMMC方法的结果相互非常吻合。发现在受限情况下气 - 液表面张力低于本体表面张力。然而,随着狭缝宽度的增加,表面张力增加。对于在有吸引力的平面狭缝孔中的方阱流体情况,气 - 液表面张力相对于壁 - 流体相互作用能呈现最大值。我们还通过直线直径方法报告了受限流体临界性质的估计值。