Hamada Yoshinobu, Koga Kenichiro, Tanaka Hideki
Department of Chemistry, Faculty of Science, Okayama University, Japan.
J Chem Phys. 2007 Aug 28;127(8):084908. doi: 10.1063/1.2759926.
Correlation between phase behaviors of a Lennard-Jones fluid in and outside a pore is examined over wide thermodynamic conditions by grand canonical Monte Carlo simulations. A pressure tensor component of the confined fluid, a variable controllable in simulation but usually uncontrollable in experiment, is related with the pressure of a bulk homogeneous system in equilibrium with the confined system. Effects of the pore dimensionality, size, and attractive potential on the correlations between thermodynamic properties of the confined and bulk systems are clarified. A fluid-wall interfacial tension defined as an excess grand potential is evaluated as a function of the pore size. It is found that the tension decreases linearly with the inverse of the pore diameter or width.
通过巨正则蒙特卡罗模拟,在广泛的热力学条件下研究了孔内外 Lennard-Jones 流体相行为之间的相关性。受限流体的压力张量分量是模拟中可控制但实验中通常不可控制的变量,它与与受限系统处于平衡的体相均相系统的压力相关。阐明了孔的维度、尺寸和吸引势对受限系统和体相系统热力学性质之间相关性的影响。将定义为过量巨势的流体 - 壁界面张力作为孔径的函数进行评估。发现张力随孔径或宽度的倒数线性降低。