材料科学
接触角
莲花效应
超疏水涂料
纳米颗粒
涂层
纳米
表面粗糙度
复合材料
光学透明度
疏水二氧化硅
表面光洁度
化学工程
固化(化学)
纳米技术
光电子学
有机化学
工程类
化学
原材料
作者
Daniel A. Schaeffer,Georgios Polizos,Barton Smith,Dominic F. Lee,S. R. Hunter,Panos G. Datskos
出处
期刊:Nanotechnology
[IOP Publishing]
日期:2015-01-09
卷期号:26 (5): 055602-055602
被引量:69
标识
DOI:10.1088/0957-4484/26/5/055602
摘要
Optical surfaces such as mirrors and windows that are exposed to outdoor environmental conditions are susceptible to dust buildup and water condensation. The application of transparent superhydrophobic coatings on optical surfaces can improve outdoor performance via a 'self-cleaning' effect similar to the Lotus effect. The contact angle (CA) of water droplets on a typical hydrophobic flat surface varies from 100° to 120°. Adding roughness or microtexture to a hydrophobic surface leads to an enhancement of hydrophobicity and the CA can be increased to a value in the range of 160°–175°. This result is remarkable because such behavior cannot be explained using surface chemistry alone. When surface features are on the order of 100 nm or smaller, they exhibit superhydrophobic behavior and maintain their optical transparency. In this work we discuss our results on transparent superhydrophobic coatings that can be applied across large surface areas. We have used functionalized silica nanoparticles to coat various optical elements and have measured the CA and optical transmission between 190 and 1100 nm on these elements. The functionalized silica nanoparticles were dissolved in a solution of the solvents, while the binder used was a polyurethane clearcoat. This solution was spin-coated onto a variety of test glass substrates, and following a curing period of about 30 min, these coatings exhibited superhydrophobic behavior with a static CA ≥ 160°.
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