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Why Condensate Drops Can Spontaneously Move Away on Some Superhydrophobic Surfaces but Not on Others

机译:为什么在某些超疏水表面上凝结水滴会自发地移开,而在其他表面却不能

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The coalesce-induced condensate drop motion on some superhydrophobic surfaces (SHSs) has attracted increasing attention because of its wide potential applications. However, microscopic mechanism of spontaneous motion has not been discussed thoroughly, In this study, we fabricated two types of superhydrophobic copper surfaces with sisal-like nanoribbon structures and defoliation-like nanosheet structures by different wet chemical oxidation process and followed by same fluorization treatment. With lotus leaf and butterfly wing as control samples, the spontaneous motion phenomenon of condensate drops on these four kinds of SHSs was investigated by using optical microscope under ambient conditions. The results showed that among all four types of SHSs, only superhydrophobic copper surfaces with sisal-like nanoribbon structures showed obvious spontaneous motion of condensate drops, especially when the relative humidity was higher. The microscopic mechanism or spontaneous motion was discussed m relation to the states of condensate drops on different nanostructures. It shows that the instantaneous Cassie state of condensed droplets prior to coalescence plays a key role in determining whether the coalesced drop departs, whereas only SHS possessing nanostructures with small enough Wenzel roughness parameter r (at least <2.l) and nanogaps forming high enough Laplace pressure favors the formation of the instantaneous Cassie state by completing the Wenzel—Cassie transition.
机译:凝聚引起的凝结水在某些超疏水表面(SHSs)上的运动由于其潜在的广泛应用而引起了越来越多的关注。然而,自发运动的微观机理尚未得到充分讨论。在这项研究中,我们通过不同的湿化学氧化工艺,制造了两种具有剑麻状纳米带结构和脱叶状纳米片结构的超疏水铜表面,然后进行相同的氟化处理。以荷叶和蝴蝶翼为对照样品,通过光学显微镜在环境条件下研究了这四种SHS上的凝结水滴的自发运动现象。结果表明,在所有四种SHS中,只有具有剑麻状纳米带结构的超疏水性铜表面显示出明显的自发运动,尤其是当相对湿度较高时。讨论了微观机制或自发运动与不同纳米结构上凝结液滴状态的关系。结果表明,凝聚前液滴的瞬时Cassie状态在决定凝聚液滴是否离开方面起着关键作用,而只有SHS的纳米结构具有足够小的Wenzel粗糙度参数r(至少<2.l)和足够高的纳米间隙。拉普拉斯压力通过完成Wenzel-Cassie过渡来促进瞬时Cassie状态的形成。

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