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Wetting morphologies at microstructured surfaces.

机译:在微结构表面的润湿形态。

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摘要

The wetting of microstructured surfaces is studied both experimentally and theoretically. Even relatively simple surface topographies such as grooves with rectangular cross section exhibit a large variety of different wetting morphologies as observed by atomic force microscopy. This polymorphism arises from liquid wedge formation along the groove corners and from contact line pinning along the groove edges. A global morphology diagram is derived that depends only on two system parameters: (i) the aspect ratio of the groove geometry and (ii) The contact angle of the underlying substrate material. For microfluidics, the most interesting shape regimes involve extended liquid filaments, which can grow and shrink in length while their cross section stays essentially constant. Thus, any method by which one can vary the contact angle can be used to switch the length of the filament, as is demonstrated in the context of electrowetting.
机译:通过实验和理论研究了微结构表面的润湿性。如原子力显微镜所观察到的,即使是相对简单的表面形貌,例如具有矩形横截面的凹槽,也呈现出多种不同的润湿形态。这种多态性是由沿凹槽角的液体楔形形成和沿凹槽边缘的接触线钉扎引起的。得出仅依赖于两个系统参数的整体形态图:(i)凹槽几何形状的纵横比和(ii)下层基板材料的接触角。对于微流体,最有趣的形状方案涉及延伸的液体细丝,其长度可增长和收缩,而其横截面则基本保持恒定。因此,如在电润湿的情况下所证明的,可以使用任何可以改变接触角的方法来切换灯丝的长度。

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