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Sprayable superhydrophobic nano-chains coating with continuous self-jumping of dew and melting frost

机译:露珠连续自跳和熔融霜的可雾超细氧化纳链涂层

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Spontaneous movement of condensed matter provides a new insight to efficiently improve condensation heat transfer on superhydrophobic surface. However, very few reports have shown the jumping behaviors on the sprayable superhydrophobic coatings. Here, we developed a sprayable silica nano-porous coating assembled by fluorinated nano-chains to survey the condensates’ dynamics. The dewdrops were continuously removed by self- and/or trigger-propelling motion due to abundant nano-pores from random multilayer stacking of nano-chains. In comparison, the dewdrops just could be slipped under the gravity effect on lack of nano-pores coatings stacked by silica nano-spheres and nano-aggregates. More interestingly, the spontaneous jumping effect also occurred on micro-scale frost crystals under the defrosting process on nano-chains coating surfaces. Different from self-jumping of dewdrops motion, the propelling force of frost crystals were provided by a sudden increase of the pressure under the frost crystal.
机译:冷凝物的自发运动提供了一种新的洞察,可以有效地改善超疏水表面上的冷凝传热。然而,很少有报道显示了可喷洒的超疏水涂层上的跳跃行为。在这里,我们开发了一种通过氟化纳米链组装的可喷涂二氧化硅纳米多孔涂层,以调查冷凝物的动态。由于纳米链的随机多层堆叠而导致的纳米孔的纳米孔,通过自相比和/或触发引发的运动连续去除脱水。相比之下,脱水可以在重力效应下滑动,这是缺乏由二氧化硅纳米球和纳米聚集体堆叠的纳米孔涂层。更有意义地,在纳米链涂层表面的除霜过程下的微尺寸霜晶体上也发生了自发跳跃效果。与露珠运动的自跳相同,通过霜晶下的压力突然增加来提供霜晶体的推进力。

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