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Black Silicon/Elastomer Composite Surface with Switchable Wettability and Adhesion between Lotus and Rose Petal Effects by Mechanical Strain

机译:黑色硅/弹性体复合表面具有可切换润湿性和莲花和玫瑰花瓣效应的粘附因机械菌株

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Although many recent studies demonstrate surfaces with switchable wettability under various external stimuli, a deliberate effort to self-propel liquid droplets utilizing a surface wetting mode switch between slippery lotus and adhesive rose petal states via a mechanical strain has not been made yet, which would otherwise further benefit microfluidic applications. In this work, we present a black silicon/elastomer (bSi/elastomer) composite surface which shows switchable wettability and adhesion across the two wetting modes by mechanical stretching. The composite surface is composed of a scale-like nanostructured silicon platelet array that covers an elastomer surface. The gap between the neighboring silicon platelets is reversibly changeable as a function of a mechanical strain, leading to the transition between the two wetting modes. Moreover, the composite surface is highly flexible although its wetting properties primarily originate from superhydrophobic bSi platelets. Different wetting characteristics of the composite surface in various mechanical strains are studied, and droplet manipulation such as droplet self-propulsion and pick-and-place using the composite surface is demonstrated, which highlights its potentials for microfluidic applications.
机译:尽管许多最近的研究表明,在各种外部刺激下具有可切换润湿性的表面,但是通过机械应变的滑湿莲花和粘性玫瑰花瓣状态之间的蓄意液滴的故意努力尚未进行,否则进一步有益于微流体应用。在这项工作中,我们提出了一种黑色硅/弹性体(BSI /弹性体)复合表面,其通过机械拉伸显示两个润湿模式的可切换润湿性和粘合性。复合表面由覆盖弹性体表面的刻度状纳米结构硅血小板阵列组成。相邻硅血小板之间的间隙可逆地改变为机械应变的函数,导致两个润湿模式之间的过渡。此外,复合表面是高度柔韧的,尽管其润湿性质主要来自超疏水性BSI血小板。研究了各种机械菌株中复合表面的不同润湿特性,并进行了液滴操作,例如液滴自推进和使用复合表面拾取,其突出了其对微流体应用的电位。

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