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纳米粗糙表面上的接触线运动:一个热激活过程。

Contact line motion on nanorough surfaces: a thermally activated process.

机构信息

Ian Wark Research Institute, University of South Australia, Mawson Lakes, South Australia 5095, Australia.

出版信息

J Am Chem Soc. 2013 May 15;135(19):7159-71. doi: 10.1021/ja3104846. Epub 2013 May 3.

Abstract

The motion of a solid-liquid-liquid contact line over nanorough surfaces is investigated. The surface nanodefects are varied in size, density, and shape. The dynamics of the three-phase contact line on all nanorough substrates studied is thermally activated. However, unlike the motion of a liquid-vapor interface over smooth surfaces, this thermally activated process is not adequately described by the molecular kinetic theory. The molecular parameters extracted from the experiments suggest that on the nanorough surfaces, the motion of the contact line is unlikely to simply consist of molecular adsorption-desorption steps. Thermally activated pinning-depinning events on the surface nanodefects are also important. We investigate the effect of surface nanotopography on the relative importance of these two mechanisms in governing contact line motion. Using a derivation for the hysteresis energy based on Joanny and de Gennes's model, we evaluate the effect of nanotopographical features on the wetting activation free energy and contact line friction. Our results suggest that both solid-liquid interactions and surface pinning strength contribute to the energy barriers hindering the three-phase contact line motion. For relatively low nanodefect densities, the activation free energy of wetting can be expressed as a sum of surface wettability and surface topography contributions, thus providing a direct link between contact line dynamics and roughness parameters.

摘要

研究了固-液-液接触线在纳米粗糙表面上的运动。表面纳米缺陷的尺寸、密度和形状各不相同。在所研究的所有纳米粗糙基底上,三相接触线的动力学都是热激活的。然而,与液体-蒸气界面在光滑表面上的运动不同,这种热激活过程不能用分子动理论充分描述。从实验中提取的分子参数表明,在纳米粗糙表面上,接触线的运动不太可能仅仅由分子吸附-解吸步骤组成。表面纳米缺陷上的热激活钉扎-去钉扎事件也很重要。我们研究了表面纳米形貌对控制接触线运动的这两种机制的相对重要性的影响。我们使用基于 Joanny 和 de Gennes 模型的滞后能量推导,评估了纳米形貌特征对润湿激活自由能和接触线摩擦的影响。我们的结果表明,固-液相互作用和表面钉扎强度都有助于阻碍三相接触线运动的能垒。对于相对较低的纳米缺陷密度,润湿的激活自由能可以表示为表面润湿性和表面形貌贡献的总和,从而为接触线动力学和粗糙度参数之间提供了直接联系。

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