材料科学
砂纸
聚二甲基硅氧烷
化学气相沉积
接触角
复合材料
磨损(机械)
胶粘剂
表面能
聚合物
化学工程
环氧树脂
纳米技术
沉积(地质)
图层(电子)
工程类
古生物学
生物
沉积物
作者
Aoyun Zhuang,Ruijin Liao,Yao Lu,Sebastian C. Dixon,Arreerat Jiamprasertboon,Faze Chen,Sanjayan Sathasivam,Ivan P. Parkin,Claire J. Carmalt
标识
DOI:10.1021/acsami.7b13182
摘要
Robust superhydrophobic surfaces were synthesized as composites of the widely commercially available adhesives epoxy resin (EP) and polydimethylsiloxane (PDMS). The EP layer provided a strongly adhered micro/nanoscale structure on the substrates, while the PDMS was used as a post-treatment to lower the surface energy. In this study, the depositions of EP films were taken at a range of temperatures, deposition times, and substrates via aerosol-assisted chemical vapor deposition (AACVD). A novel dynamic deposition temperature approach was developed to create multiple-layered periodic micro/nanostructures that significantly improved the surface mechanical durability. Water droplet contact angles (CA) of 160° were observed with droplet sliding angles (SA) frequently <1°. A rigorous sandpaper abrasion test demonstrated retention of superhydrophobic properties and superior robustness therein, while wear, anticorrosion (pH = 1-14, 72 h), and UV testing (365 nm, 3.7 mW/cm2, 120 h) were carried out to exhibit the environmental stability of the films. Self-cleaning behavior was demonstrated in clearing the surfaces of various contaminating powders and aqueous dyes. This facile and flexible method for fabricating highly durable superhydrophobic polymer films points to a promising future for AACVD in their scalable and low-cost production.
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