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Super liquid-repellent layers: The smaller the better

机译:超级防液层:越小越好

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Super liquid-repellent layers need to have a high impalement pressure and high contact angles, in particular a high apparent receding contact angle. Here, we demonstrate that to achieve both, the features constituting the layer should be as small as possible. Therefore, two models for super liquid-repellent layers are theoretically analyzed: A superhydrophobic layer consisting of an array of cylindrical micropillars and a superamphiphobic layer of an array of pillars of spheres. For the cylindrical micropillars a simple expression for the apparent receding contact angle is derived. It is based on a force balance rather than a thermodynamic approach. The model is supported by confocal microscope images of a water drop on an array of hydrophobic cylindrical pillars. The ratio of the width of a pillar w to the center-to-center spacing a is a primary factor in controlling the receding angle. Keeping the ratio w/a constant, the absolute size of surface features should be as small as possible, to maxinlize the impalement pressure. (C) 2014 The Authors. Published by Elsevier B.V.
机译:超级疏液层需要具有高的刺穿压力和高的接触角,尤其是高的表观后退接触角。在这里,我们证明了要实现这两者,构成该层的特征应尽可能小。因此,从理论上分析了两种超级疏液层模型:一种超疏水层,由圆柱微柱阵列和球体柱状阵列的超疏油层组成。对于圆柱微柱,可以得出表观后退接触角的简单表达式。它基于力平衡而不是热力学方法。该模型由疏水圆柱柱阵列上的水滴的共聚焦显微镜图像支持。支柱w的宽度与中心间距a之比是控制后退角度的主要因素。保持比率w / a不变,表面特征的绝对尺寸应尽可能小,以使刺穿压力最大化。 (C)2014作者。由Elsevier B.V.发布

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