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Facile one-step photopatterning of hierarchical polymer structures for highly transparent, flexible superhydrophobic films

机译:适用于高度透明,柔性超疏水膜的分层聚合物结构的平移一步照片

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摘要

Superhydrophobic surfaces with mechanical compliance and optical visibility open up new possibilities in practical applications. This work presents a simple, fast, and cost-effective route to fabricate highly flexible and transparent superhydrophobic films with hierarchical surface morphology. Two-tiered polymeric surface structures are readily obtained by a one-step photopatterning approach in conjunction with a roughened sandpaper template. The hierarchical superhydrophobic polymer (HSP) films show excellent wetting properties (static contact angle of > 172 degrees and contact angle hysteresis of < 3 degrees after Teflon coating), high optical transmittance (> 84% at 550 nm), and enhanced resistance to water drop impact. In addition, the HSP films exhibit high resistance to repeated bending and pressing deformations (5000 cycles), while stably maintaining their superhydrophobicity. The practical utility of the HSP film is successfully demonstrated through self-cleaning, anti-fogging, and water-jet impact tests.
机译:具有机械顺应性的超疏水表面和光学能见度在实际应用中开辟了新的可能性。这项工作提出了一种简单,快速,经济效益的途径,用于制造具有分层表面形态的高度柔性且透明的超疏水薄膜。通过一步的砂纸模板结合粗糙的砂纸模板,通过一步的光电图训练方法容易地获得双层的聚合物表面结构。分层超疏水聚合物(HSP)膜显示出优异的润湿性(静态接触角> 172度,接触角滞后<3度后<3℃,在550nm处> 84%),并增强了水的耐水性掉落撞击。另外,HSP膜表现出高耐弯曲和压力变形(5000个循环),同时稳定地保持其超疏水性。通过自清洁,防雾和喷水冲击试验成功地证明了HSP膜的实用效用。

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