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Water and Ethanol Droplet Wetting Transition during Evaporation on Omniphobic Surfaces

机译:憎水表面蒸发过程中水和乙醇液滴的润湿转变

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摘要

Omniphobic surfaces with reentrant microstructures have been investigated for a range of applications, but the evaporation of high- and low-surface-tension liquid droplets placed on such surfaces has not been rigorously studied. In this work, we develop a technique to fabricate omniphobic surfaces on copper substrates to allow for a systematic examination of the effects of surface topography on the evaporation dynamics of water and ethanol droplets. Compared to a water droplet, the ethanol droplet not only evaporates faster, but also inhibits Cassie-to-Wenzel wetting transitions on surfaces with certain geometries. We use an interfacial energy-based description of the system, including the transition energy barrier and triple line energy, to explain the underlying transition mechanism and behaviour observed. Suppression of the wetting transition during evaporation of droplets provides an important metric for evaluating the robustness of omniphobic surfaces requiring such functionality.
机译:已经研究了具有折返性微结构的疏油性表面的一系列应用,但尚未严格研究放置在此类表面上的高表面张力和低表面张力液滴的蒸发。在这项工作中,我们开发了一种在铜基板上制造全憎表面的技术,可以系统检查表面形貌对水和乙醇液滴蒸发动力学的影响。与水滴相比,乙醇水滴不仅蒸发更快,而且还抑制了具有特定几何形状的表面上的卡西-温泽尔润湿转变。我们使用基于界面能的系统描述,包括过渡能垒和三线能量,来解释潜在的过渡机制和观察到的行为。液滴蒸发过程中润湿转变的抑制为评估需要这种功能的全疏表面的鲁棒性提供了重要指标。

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