Scalable and Mechanically Durable Superhydrophobic Coating of SiO2/Polydimethylsiloxane/Epoxy Nanocomposite

材料科学 涂层 砂纸 超疏水涂料 聚二甲基硅氧烷 复合材料 接触角 环氧树脂 纳米复合材料
作者
Xiao-Jing Guo,Duo Zhang,Chao‐Hua Xue,Bing‐Ying Liu,Meng-Chen Huang,Huidi Wang,Xing Wang,Fuquan Deng,Yongping Pu,Qiufeng An
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:15 (3): 4612-4622 被引量:55
标识
DOI:10.1021/acsami.2c21623
摘要

The mechanical durability of superhydrophobic surfaces is of significance for their practical applications. However, few reports about superhydrophobic coating on certain substrates took into consideration both the mechanical stability of the superhydrophobic coating and adhesion stability between the coating and the substrate. Herein, we put forward a facile and efficient strategy to construct robust superhydrophobic coatings by simply spray-coating a composite suspension of SiO2 nanoparticles, polydimethylsiloxane (PDMS), and epoxy resin (EP) on substrates pretreated with an EP base-coating. The as-obtained coating exhibited excellent superhydrophobicity with water contact angle of 163° and sliding angle of 3.5°, which could endure UV irradiation of 180 h, immersion in acidic or basic solutions for 168 h, and outdoor exposure for over 30 days. Notably, the coating surface retained superhydrophobicity after being successively impacted with faucet water for 1 h, impinged with 360 g sand grains, and abraded with sandpaper of 120 grid under a load of 500 g for 5 m distance. The outstanding mechanical stability was mainly attributed to the cross-linking of EP and the elastic nature of PDMS which ensured strong cohesion inside the whole coating and to the substrate. Additionally, the coating showed self-healing capacity against O2 plasma etching. The method is simple with the materials commercially available and is expected to be widely applied in outdoor applications.
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