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准液体表面上高润湿性液体和冰的被动去除

Passive Removal of Highly Wetting Liquids and Ice on Quasi-Liquid Surfaces.

作者信息

Zhang Lei, Guo Zongqi, Sarma Jyotirmoy, Dai Xianming

机构信息

Department of Mechanical Engineering, The University of Texas at Dallas, 800 W. Campbell Road, Richardson, Texas 75080, United States.

出版信息

ACS Appl Mater Interfaces. 2020 Apr 29;12(17):20084-20095. doi: 10.1021/acsami.0c02014. Epub 2020 Apr 17.

Abstract

Surfaces with ultralow adhesion to liquids and solids have attracted broad interests in both fundamental studies and engineering applications from passive removal of highly wetting liquids and water harvesting to anti-/de-icing. The current state-of-the-art superomniphobic surfaces (rely on air lubricant) and liquid-infused surfaces (rely on liquid lubricant) suffer from severe issues for liquid repellency and ice removal: air/liquid lubricant loss or topography damage. Here, we create a durable quasi-liquid surface by tethering flexible polymer on various solid substrates. The untethered end of the polymer has mobile chains that behave like a liquid layer and greatly reduce the interfacial adhesion between the surface and foreign liquids/solids. Such a quasi-liquid surface with a 30.1 nm flexible polymer layer shows ultralow contact angle hysteresis (≤1.0°) to liquids regardless of their surface tensions. The highly wetting perfluorinated liquids like FC72 and Krytox101, as well as complex fluids like urine and crude oil, can be repelled from the surface. Moreover, wind can remove accreted ice from the surface in harsh conditions due to the negligible ice adhesion. We have demonstrated that the quasi-liquid surface shows robust performances in repelling highly wetting liquids, harvesting water, and removing ice, respectively.

摘要

对液体和固体具有超低粘附力的表面在基础研究和工程应用中都引起了广泛关注,其应用范围涵盖从被动去除高润湿性液体、集水到防冰/除冰等领域。当前最先进的超疏液表面(依靠空气润滑剂)和注液表面(依靠液体润滑剂)在液体排斥和除冰方面存在严重问题:空气/液体润滑剂损失或表面形貌损坏。在此,我们通过在各种固体基材上连接柔性聚合物来创建一种耐用的准液体表面。聚合物的未连接端具有可移动的链,其行为类似于液体层,极大地降低了表面与外来液体/固体之间的界面粘附力。这种具有30.1纳米柔性聚合物层的准液体表面对液体显示出超低的接触角滞后(≤1.0°),而与液体的表面张力无关。像FC72和Krytox101这样的高润湿性全氟液体,以及像尿液和原油这样的复杂流体,都能从表面被排斥。此外,由于冰附着力可忽略不计,在恶劣条件下,风可以从表面去除积聚的冰。我们已经证明,准液体表面在排斥高润湿性液体、集水和除冰方面分别表现出强大的性能。

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