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Wetting of prototypical one- and two-dimensional systems: Thermodynamics and density functional theory

机译:典型的一维和二维系统的润湿:热力学和密度泛函理论

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Consider a two-dimensional capped capillary pore formed by capping two parallel planar walls with a third wall orthogonal to the two planar walls. This system reduces to a slit pore sufficiently far from the capping wall and to a single planar wall when the side walls are far apart. Not surprisingly, wetting of capped capillaries is related to wetting of slit pores and planar walls. For example, the wetting temperature of the capped capillary provides the boundary between first-order and continuous transitions to condensation. We present a numerical investigation of adsorption in capped capillaries of mesoscopic widths based on density functional theory. The fluid-fluid and fluid-substrate interactions are given by the pairwise Lennard-Jones potential. We also perform a parametric study of wetting in capped capillaries by a liquid phase by varying the applied chemical potential, temperature, and pore width. This allows us to construct surface phase diagrams and investigate the complicated interplay of wetting mechanisms specific to each system, in particular, the dependence of capillary wetting temperature on the pore width. (C) 2015 AIP Publishing LLC.
机译:考虑通过用平行于两个平行平面壁的第三壁覆盖两个平行平面壁而形成的二维封闭毛细管孔。当侧壁相距很远时,该系统减小到足够远离盖壁的狭缝孔,并减小到单个平面壁。毫不奇怪,加盖的毛细管的润湿与狭缝和平面壁的润湿有关。例如,带帽毛细管的湿润温度提供了从一阶到连续转变到冷凝的边界。我们提出了基于密度泛函理论的介观宽度的带帽毛细管中吸附的数值研究。流体-流体和流体-基质的相互作用由成对的Lennard-Jones势给出。我们还通过改变所施加的化学势,温度和孔宽度来进行液相浸润带帽毛细管的参数研究。这使我们能够构建表面相图,并研究每个系统特有的润湿机制之间的复杂相互作用,尤其是毛细管润湿温度对孔径的依赖性。 (C)2015 AIP Publishing LLC。

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