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液体浸润表面的表观接触角和接触角滞后。

Apparent contact angle and contact angle hysteresis on liquid infused surfaces.

机构信息

Department of Physics, Durham University, Durham, DH1 3LE, UK.

Smart Materials & Surfaces Laboratory, Faculty of Engineering & Environment, Northumbria University, Newcastle upon Tyne NE1 8ST, UK.

出版信息

Soft Matter. 2016 Dec 21;13(1):101-110. doi: 10.1039/c6sm00920d.

Abstract

We theoretically investigate the apparent contact angle and contact angle hysteresis of a droplet placed on a liquid infused surface. We show that the apparent contact angle is not uniquely defined by material parameters, but also has a dependence on the relative size between the droplet and its surrounding wetting ridge formed by the infusing liquid. We derive a closed form expression for the contact angle in the limit of vanishing wetting ridge, and compute the correction for small but finite ridge, which corresponds to an effective line tension term. We also predict contact angle hysteresis on liquid infused surfaces generated by the pinning of the contact lines by the surface corrugations. Our analytical expressions for both the apparent contact angle and contact angle hysteresis can be interpreted as 'weighted sums' between the contact angles of the infusing liquid relative to the droplet and surrounding gas phases, where the weighting coefficients are given by ratios of the fluid surface tensions.

摘要

我们从理论上研究了置于液体浸润表面上的液滴的表观接触角和接触角滞后。我们表明,表观接触角不是由材料参数唯一定义的,而且还取决于液滴与其周围由浸润液体形成的润湿脊的相对大小。我们推导出了在浸润脊趋于零时接触角的封闭形式表达式,并计算了小但有限的脊的修正,这对应于有效线张力项。我们还预测了由表面波纹对接触线的钉扎引起的液体浸润表面上的接触角滞后。我们对表观接触角和接触角滞后的分析表达式可以解释为相对于液滴和周围气相的浸润液体的接触角的“加权和”,其中加权系数由流体表面张力的比值给出。

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