4.8 Article

Simple and Cost-Effective Fabrication of Highly Flexible, Transparent Superhydrophobic Films with Hierarchical Surface Design

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 7, 期 9, 页码 5289-5295

出版社

AMER CHEMICAL SOC
DOI: 10.1021/am5086066

关键词

superhydrophobic film; optical transparency; mechanical flexibility; hierarchical surface design; cost-effective fabrication

资金

  1. Development of Next Generation Multi-functional Machining Systems for Eco/Bio Components project of Ministry of Knowledge Economy
  2. Civil & Military Technology Cooperation Program through the National Research Foundation of Korea (NRF) - Ministry of Science, ICT & Future Planning [2013M3C1A9055407]

向作者/读者索取更多资源

Optical transparency and mechanical flexibility are both of great importance for significantly expanding the applicability of superhydrophobic surfaces. Such features make it possible for functional surfaces to be applied to various glass-based products with different curvatures. In this work, we report on the simple and potentially cost-effective fabrication of highly flexible and transparent superhydrophobic films based on hierarchical surface design. The hierarchical surface morphology was easily fabricated by the simple transfer of a porous alumina membrane to the top surface of UV-imprinted polymeric micropillar arrays and subsequent chemical treatments. Through optimization of the hierarchical surface design, the resultant superhydrophobic films showed superior surface wetting properties (with a static contact angle of >170 degrees and contact angle hysteresis of <3.5 degrees) in the Cassie-Baxter wetting regime, considerable dynamic water repellency (with perfect bouncing of a water droplet dropped from an impact height of 30 mm), and good optical transparency (>82% at 550 nm wavelength). The superhydrophobic films were also experimentally found to be robust without significant degradation in the superhydrophobicity, even under repetitive bending and pressing for up to 2000 cycles. Finally, the practical usability of the proposed superhydorphobic films was clearly demonstrated by examining the antiwetting performance in real time while pouring water on the film and submerging the film in water.

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