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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Highly transparent and robust slippery lubricant-infused porous surfaces with anti-icing and anti-fouling performances
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Highly transparent and robust slippery lubricant-infused porous surfaces with anti-icing and anti-fouling performances

机译:具有防冰和防污性能的高度透明和强大的滑动润滑剂 - 浸泡多孔曲面

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摘要

Recently, taking advantage of slippery liquid-infused surfaces (SLIPS) has been proposed as a simple passive ice removal method. However, the process of frost formation and ice freeze on SLIPS is accompanied by the lubricant migration from the structured substrate to the surface of frozen droplets which would lead to the sacrifice of lubricant. In this paper, highly transparent and robust slippery coatings were carried out by infusing lubricant into tube-like SiO2 composite structure. The tubular material and a stack-hole composite structure contribute a lot to lock the lubricating oil, thus reducing the loss of lubricant during the icing/deicing cycles. The ultra-low ice adhesion strength (similar to 17 kPa) encourages the SLIPS to be a promising candidate for anti-icing applications. Moreover, capillary action within the unique structure as well endows SLIPS with the self-healing property. As a consequence, the as-prepared samples achieve long-term anti-icing stability while ensuring a glass substrate transmittance of up to 92.01%. In addition, surfaces maintain all the slippery characteristics after being directly exposed to running water for 30 min. Such good stability offers a possibility of applying SLIPS to everyday life. (C) 2019 Elsevier B.V. All rights reserved.
机译:最近,考虑滑的液体注入的表面(SLIPS)的优点已被提出作为一个简单的无源除冰方法。但是,结霜和冰冻结SLIPS的过程伴随着从所述结构化基底,以冷冻的液滴,这将导致润滑剂的牺牲的表面上的润滑剂迁移。在本文中,高透明和坚固的滑涂层通过注入润滑剂进行成管样SiO2复合结构。管状材料和堆叠空穴复合结构有助于很多锁定润滑油,从而减少润滑剂的损失结冰期间/除冰周期。超低冰粘合强度(类似17千帕)鼓励SLIPS成为防结冰的应用有希望的候选。此外,还有赋予了独特的结构内的毛细作用与自愈性能滑动。因此,所制备的样品达到长期防冰稳定性,同时确保了的玻璃基板的透射率至92.01%。此外,表面保持所有直接暴露于30分钟流水后的滑溜特性。这种良好的稳定性报价将下滑到日常生活的可能性。 (c)2019 Elsevier B.v.保留所有权利。

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