首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Evaporation-Induced Transition from Nepenthes Pitcher-Inspired Slippery Surfaces to Lotus Leaf-Inspired Superoleophobic Surfaces
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Evaporation-Induced Transition from Nepenthes Pitcher-Inspired Slippery Surfaces to Lotus Leaf-Inspired Superoleophobic Surfaces

机译:蒸发诱导的过渡过程,从猪笼草的猪笼草启发的光滑表面到荷叶的启发性超疏油表面的转变

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摘要

The newly developed Nepenthes pitcher (NP)-inspired slippery surfaces, formed by immobilizing fluoroliquids on lotus leaf (LL)-inspired superoleophobic surfaces, are of great general interest, whereas there are many interesting phenomena and fundamental scientific issues remaining to be unveiled. Here we present our findings of the effects of evaporation of the fluoroliquid, an inevitable process in most cases, -induced transition from NP-inspired to LL-inspired surfaces on the wettability, transparency, and self-cleaning property of the surfaces. The transition is controlled by regulating the evaporation temperature of the model fluoroliquid, Krytox100. The evaporation of Krytox100 has great a influence on the wettability, transparency, and self-cleaning property. An intermediate "sticky" state is observed in the transition process. We believe that our findings in the transition process are helpful in understanding the similarities and differences between the NP-inspired and LL-inspired surfaces and in designing new bioinspired antiwetting surfaces and exploring their potential applications.
机译:通过将含氟液体固定在荷叶(LL)启发的超疏油表面上而形成的新开发的猪笼草(NP)启发的光滑表面引起了广泛的关注,而还有许多有趣的现象和基本的科学问题尚待揭示。在这里,我们介绍了氟化物蒸发的影响的发现,在大多数情况下这是不可避免的过程,会导致从NP激发的表面过渡到LL激发的表面,从而改变表面的可湿性,透明度和自清洁性能。通过调节氟树脂模型Krytox100的蒸发温度来控制转变。 Krytox100的蒸发对润湿性,透明性和自清洁性有很大影响。在过渡过程中观察到中间的“粘性”状态。我们相信,我们在过渡过程中的发现有助于理解NP启发性表面和LL启发性表面之间的异同,以及设计新的生物启发性防湿表面并探索其潜在应用。

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