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Self-cleaning of superhydrophobic surfaces by self-propelled jumping condensate

机译:自我推动的跳跃冷凝物对超疏水表面的自我清洁

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摘要

The self-cleaning function of superhydrophobic surfaces is conventionally attributed to the removal of contaminating particles by impacting or rolling water droplets, which implies the action of external forces such as gravity. Here, we demonstrate a unique self-cleaning mechanism whereby the contaminated superhydrophobic surface is exposed to condensing water vapor, and the contaminants are autonomously removed by the self-propelled jumping motion of the resulting liquid condensate, which partially covers or fully encloses the contaminating particles. The jumping motion off the superhydrophobic surface is powered by the surface energy released upon coalescence of the condensed water phase around the contaminants. The jumping-condensate mechanism is shown to spontaneously clean superhydrophobic cicada wings, where the contaminating particles cannot be removed by gravity, wing vibration, or wind flow. Our findings offer insights for the development of self-cleaning materials.
机译:通常,超疏水表面的自清洁功能归因于通过撞击或滚动水滴来去除污染颗粒,这意味着外力(例如重力)的作用。在这里,我们展示了一种独特的自清洁机制,使受污染的超疏水表面暴露于冷凝水蒸气中,并且通过所形成的液体冷凝物的自驱动跳跃运动自动去除污染物,该液体部分覆盖或完全包裹了污染物颗粒。超疏水表面的跳跃运动由污染物周围的冷凝水相聚结时释放的表面能提供动力。跳跃的冷凝物机制显示出可以自发清洁超疏水蝉翼,其中的污染物颗粒无法通过重力,机翼振动或风流去除。我们的发现为自清洁材料的发展提供了见识。

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