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Modified Kelvin Equations for Capillary Condensation in Narrow and Wide Grooves

机译:窄槽和宽槽中毛细管冷凝的修正Kelvin方程

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摘要

We consider the location and order of capillary condensation transitions occurring in deep grooves of width L and depth D. For walls that are completely wet by liquid (contact angle theta = 0) the transition is continuous and its location is not sensitive to the depth of the groove. However, for walls that are partially wet by liquid, where the transition is first order, we show that the pressure at which it occurs is determined by a modified Kelvin equation characterized by an edge contact angle theta(E) describing the shape of the meniscus formed at the top of the groove. The dependence of theta(E) on the groove depth D relies, in turn, on whether corner menisci are formed at the bottom of the groove in the low density gaslike phase. While for macroscopically wide grooves these are always present when theta 45 degrees we argue that their formation is inhibited in narrow grooves. This has a number of implications including that the local pinning of the meniscus and location of the condensation transition is different depending on whether the contact angle is greater or less than a universal value theta* approximate to 31 degrees. Our arguments are supported by detailed microscopic density functional theory calculations that show that the modified Kelvin equation remains highly accurate even when L and D are of the order of tens of molecular diameters.
机译:我们考虑了发生在宽度L和深度D的深槽中的毛细管凝结转变的位置和顺序。对于完全被液体润湿(接触角theta = 0)的壁,转变是连续的,并且其位置对深度不敏感。凹槽。但是,对于部分被液体润湿的壁,其中过渡是一阶的,我们显示出它发生的压力是由修正的开尔文方程确定的,其特征在于描述弯月面形状的边缘接触角theta(E)形成在凹槽的顶部。 θ(E)对凹槽深度D的依赖性又取决于在低密度气相中是否在凹槽的底部形成拐角弯液面。对于宏观上宽的沟槽,当θ<45度时,这些沟槽总是存在的,我们认为在狭窄的沟槽中它们的形成受到抑制。这具有许多含义,包括弯月面的局部钉扎和冷凝过渡的位置根据接触角是大于还是小于近似于31度的通用值theta *而不同。我们的论据得到详细的微观密度泛函理论计算的支持,这些计算表明,即使L和D处于分子直径的数十量级,修改后的Kelvin方程仍保持高度精确。

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  • 来源
    《Physical review letters》 |2018年第13期|135701.1-135701.5|共5页
  • 作者单位

    Univ Chem Technol Prague, Dept Phys Chem, Prague 16628 6, Czech Republic;

    Imperial Coll London, Dept Math, London SW7 2BZ, England;

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