Keshavarzi Ezat, Kamalvand Mohammad
Department of Chemistry, Isfahan University of Technology, Isfahan, Iran 8415683111.
J Phys Chem B. 2009 Apr 23;113(16):5493-9. doi: 10.1021/jp808466p.
The structure and properties of fluids confined in nanopores may show a dramatic departure from macroscopic bulk fluids. The main reason for this difference lies in the influence of system walls. In addition to the entropic wall effect, system walls can significantly change the energy of the confined fluid compared to macroscopic bulk fluids. The energy effect of the walls on a nanoconfined fluid appears in two forms. The first effect is the cutting off of the intermolecular interactions by the walls, which appears for example in the integrals for calculation of the thermodynamic properties. The second wall effect involves the wall-molecule interactions. In such confined fluids, the introduction of wall forces and the competition between fluid-wall and fluid-fluid forces could lead to interesting thermodynamic properties, including new kinds of phase transitions not observed in the macroscopic fluid systems. In this article, we use the perturbative fundamental measure density functional theory to study energy effects on the structure and properties of a hard core two-Yukawa fluid confined in a nanoslit. Our results show the changes undergone by the structure and phase transition of the nanoconfined fluids as a result of energy effects.
限制在纳米孔中的流体的结构和性质可能与宏观体相流体有显著差异。这种差异的主要原因在于系统壁的影响。除了熵壁效应外,与宏观体相流体相比,系统壁还能显著改变受限流体的能量。壁对纳米受限流体的能量效应以两种形式出现。第一种效应是壁对分子间相互作用的截断,这例如出现在计算热力学性质的积分中。第二种壁效应涉及壁 - 分子相互作用。在这种受限流体中,壁力的引入以及流体 - 壁和流体 - 流体力之间的竞争可能导致有趣的热力学性质,包括在宏观流体系统中未观察到的新型相变。在本文中,我们使用微扰基本度量密度泛函理论来研究能量对限制在纳米狭缝中的硬核双 Yukawa 流体的结构和性质的影响。我们的结果显示了由于能量效应,纳米受限流体的结构和相变所经历的变化。