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Anisotropic Sliding of Water Droplets on the Superhydrophobic Surfaces with Anisotropic Groove-Like Micro/Nano Structures

机译:具有各向异性沟槽状微纳米结构的超疏水表面上的水滴各向异性滑动

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摘要

Former studies have found that water droplets on the rice leaves exhibit anisotropic sliding behavior, which is mainly caused by the anisotropic groovelike surface microstructures. Similar groove-like surface microstructures and anisotropic sliding behavior of water droplets can also be found on some other plants, such as the reed leaves. In this paper, biomimetic groove-like surface microstructures are fabricated on copper surfaces by femtosecond laser micromachining. Thanks to the flexibility of this method, the period and height of the periodic micro-grooves can be precisely controlled, and the nanoscale surface roughness can also be regulated. The influences of these surface morphologies on the wetting state and anisotropic sliding behavior of water droplets are studied systematically, and theoretic analyses are also conducted. Our results prove that the anisotropic sliding behavior is mainly decided by the wetting state of external water droplets. Besides, plenty of surface nanostructures have no benefits to the anisotropic sliding behavior of surface water droplets.
机译:以前的研究发现,稻叶上的水滴表现出各向异性的滑动行为,这主要是由各向异性的槽状表面微观结构引起的。类似的沟状表面微观结构和水滴的各向异性滑动行为也可以在某些其他植物(如芦苇叶)上找到。本文采用飞秒激光微加工技术在铜表面制备了仿生沟槽状表面微结构。由于这种方法的灵活性,可以精确控制周期性微沟槽的周期和高度,并且还可以调节纳米级表面粗糙度。系统地研究了这些表面形貌对水滴的润湿状态和各向异性滑动行为的影响,并进行了理论分析。我们的结果证明,各向异性的滑动行为主要是由外部水滴的润湿状态决定的。此外,大量的表面纳米结构对表面水滴的各向异性滑动行为没有好处。

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