Transparent Superhydrophobic and Self-Cleaning Coating

接触角 莲花效应 材料科学 超疏水涂料 涂层 表面能 表面粗糙度 透射率 表面光洁度 基质(水族馆) 复合材料 润湿 纳米技术 原材料 光电子学 化学 海洋学 有机化学 地质学
作者
Binbin Zhang,Xiaochen Xue,Lixia Zhao,Baorong Hou
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:16 (13): 1876-1876 被引量:49
标识
DOI:10.3390/polym16131876
摘要

Surface roughness and low surface energy are key elements for the artificial preparation of biomimetic superhydrophobic materials. However, the presence of micro-/nanostructures and the corresponding increase in roughness can increase light scattering, thereby reducing the surface transparency. Therefore, designing and constructing superhydrophobic surfaces that combine superhydrophobicity with high transparency has been a continuous research focus for researchers and engineers. In this study, a transparent superhydrophobic coating was constructed on glass substrates using hydrophobic fumed silica (HF-SiO2) and waterborne polyurethane (WPU) as raw materials, combined with a simple spray-coating technique, resulting in a water contact angle (WCA) of 158.7 ± 1.5° and a sliding angle (SA) of 6.2 ± 1.8°. Characterization tests including SEM, EDS, LSCM, FTIR, and XPS revealed the presence of micron-scale protrusions and a nano-scale porous network composite structure on the surface. The presence of HF-SiO2 not only provided a certain roughness but also effectively reduced surface energy. More importantly, the coating exhibited excellent water-repellent properties, extremely low interfacial adhesion, self-cleaning ability, and high transparency, with the light transmittance of the coated glass substrate reaching 96.1% of that of the bare glass substrate. The series of functional characteristics demonstrated by the transparent superhydrophobic HF-SiO2@WPU coating designed and constructed in this study will play an important role in various applications such as underwater observation windows, building glass facades, automotive glass, and goggles.
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