Capillary condensation and depinning transitions in open slits

毛细管冷凝 毛细管作用 弯月面 润湿 冷凝 接触角 缩放比例 润湿转变 相变 相(物质) 毛细管数 化学 材料科学 凝聚态物理 热力学 光学 几何学 物理 复合材料 吸附 数学 有机化学 入射(几何)
作者
Alexandr Malijevský,A. O. Parry
出处
期刊:Physical review [American Physical Society]
卷期号:104 (4) 被引量:4
标识
DOI:10.1103/physreve.104.044801
摘要

We study the low-temperature phase equilibria of a fluid confined in an open capillary slit formed by two parallel walls separated by a distance L which are in contact with a reservoir of gas. The top wall of the capillary is of finite length H while the bottom wall is considered of macroscopic extent. This system shows rich phase equilibria arising from the competition between two different types of capillary condensation, corner filling, and meniscus depinning transitions depending on the value of the aspect ratio a=L/H and divides into three regimes: For long capillaries, with a<2/π, the condensation is of type I involving menisci which are pinned at the top edges at the ends of the capillary. For intermediate capillaries, with 2/π1, condensation is always of type II. In all regimes, capillary condensation is completely suppressed for sufficiently large contact angles which is determined explicitly. For long and intermediate capillaries, we show that there is an additional continuous phase transition in the condensed liquid-like phase, associated with the depinning of each meniscus as they round the upper open edges of the slit. Meniscus depinning is third-order for complete wetting and second-order for partial wetting. Detailed scaling theories are developed for these transitions and phase boundaries which connect with the theories of wedge (corner) filling and wetting encompassing interfacial fluctuation effects and the direct influence of intermolecular forces. We test several of our predictions using a fully microscopic density functional theory which allows us to study the two types of capillary condensation and its suppression at the molecular level for different aspect ratios and contact angles.
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