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Robust omniphobic surfaces

机译:坚固的整体表面

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摘要

Superhydrophobic surfaces display water contact angles greater than 150° in conjunction with low contact angle hysteresis. Microscopic pockets of air trapped beneath the water droplets placed on these surfaces lead to a composite solid-liquid-air interface in thermodynamic equilibrium. Previous experimental and theoretical studies suggest that it may not be possible to form similar fully-equilibrated, composite interfaces with drops of liquids, such as alkanes or alcohols, that possess significantly lower surface tension than water (γlv = 72.1 mN/m). In this work we develop surfaces possessing re-entrant texture that can support strongly metastable composite solid-liquid-air interfaces, even with very low surface tension liquids such as pentane (γlv = 15.7 mN/m). Furthermore, we propose four design parameters that predict the measured contact angles for a liquid droplet on a textured surface, as well as the robustness of the composite interface, based on the properties of the solid surface and the contacting liquid. These design parameters allow us to produce two different families of re-entrant surfaces— randomly-deposited electrospun fiber mats and precisely fabricated microhoodoo surfaces—that can each support a robust composite interface with essentially any liquid. These omniphobic surfaces display contact angles greater than 150° and low contact angle hysteresis with both polar and nonpolar liquids possessing a wide range of surface tensions.
机译:超疏水表面显示出大于150°的水接触角以及低接触角滞后现象。置于这些表面上的水滴下方的微小气穴会导致热力学平衡中的固-液-气复合界面。先前的实验和理论研究表明,可能无法与液滴(如烷烃或醇)形成类似的完全平衡的复合界面,这些液滴的表面张力明显低于水(γlv= 72.1 mN / m)。在这项工作中,我们开发出具有凹角质感的表面,即使在表面张力非常低的液体(例如戊烷)(γlv= 15.7 mN / m)的情况下,也可以支撑强亚稳的复合固-液-气界面。此外,我们提出了四个设计参数,这些参数可根据固体表面和接触液体的性质,预测液滴在带纹理的表面上测得的接触角,以及复合材料界面的坚固性。这些设计参数使我们能够产生两个不同的凹角表面系列-随机沉积的电纺纤维毡和精确制造的微石纹表面-它们每个都可以支持与任何液体基本的牢固的复合界面。这些全憎性表面与极性和非极性液体均具有较大的表面张力,显示出大于150°的接触角和低接触角滞后。

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