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The effect of the aspect ratio on the hydrophobicity of microstructured polydimethylsiloxane (PDMS) robust surfaces

机译:长宽比对微结构化聚二甲基硅氧烷(PDMS)坚固表面疏水性的影响

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摘要

In this study, we have designed and fabricated robust hydrophobic surfaces that are composed of various micropillar arrays and investigated the effect of the aspect ratio (feature height/feature size) of the micropillar on the wettability of the fabricated surfaces. The robust, micropillar-arrayed surfaces were designed to yield the same Wenzel and Cassie water contact angles (CAs). According to our design rule, one can achieve an enhanced hydrophobic surface by increasing the height of the micropillars. The designed hydrophobic surfaces were fabricated by polydimethylsiloxane (PDMS) replica molding with photolithographically micropatterned SU-8 masters. The hydrophobicity properties of the fabricated PDMS surfaces were fully characterized theoretically and experimentally. From the theoretical and experimental results, it was found that the micropillars of an intrinsically hydrophobic material with a high aspect ratio enhance the hydrophobicity of the surface by increasing the surface roughness (in view of the Wenzel state) and the opportunities for the entrapment of air beneath a water droplet (the Cassie state).
机译:在这项研究中,我们设计和制造了由各种微柱阵列组成的坚固的疏水性表面,并研究了微柱的纵横比(特征高度/特征尺寸)对所制造表面的润湿性的影响。坚固的,微柱状排列的表面设计为产生相同的Wenzel和Cassie水接触角(CA)。根据我们的设计规则,可以通过增加微柱的高度来获得增强的疏水性表面。所设计的疏水表面是通过使用光刻微图案化SU-8母版的聚二甲基硅氧烷(PDMS)复制品模制而成的。理论上和实验上完全表征了所制造的PDMS表面的疏水性。从理论和实验结果中发现,具有高长宽比的本征疏水性材料的微柱通过增加表面粗糙度(鉴于Wenzel态)和截留空气的机会来增强表面的疏水性。在水滴下方(卡西状态)。

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