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Demonstrating spray deposition of self-regulated nanorough layers for stable transparent superhydrophobic film coatings

机译:演示了用于稳定透明超疏水薄膜涂料的自调节纳米粗糙层的喷涂沉积

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摘要

To make large-scale onsite fabrication of transparent superhydrophobic films practical, the deposition technique should involve mechanisms that allow self-limitation of layer thickness within nanoscale level. Here, we propose a rapid and scalable deposition strategy that allows uniform placement of a nanorough layer, sufficient to generate superhydrophobic properties with enhanced optical clarity. The coating processes involved ionic spray-assisted layer-by-layer assembly to deposit a single layer of dual-scale rough silica particles with much improved kinetics, followed by rapid surface passivation using hot steam deposition of alkylsilane mixture in open air conditions. The whole processing can be finished within a few minutes with self-termination of film growth, producing well-controlled thicknesses within the range 200-400 nm. The fabricated films exhibited excellent superhydrophobic properties with water contact angle as high as 173 +/- 2 degrees and droplet roll-off angle as small as 2 +/- 1 degrees. Instead of being a hindrance, the nanorough layers increased the optical transmission in all cases, due to negligible scattering loss and the emergence of antireflection property. The fabrication of transparent superhydrophobic film was accomplished over broad ranges of coating conditions, indicating high tolerances in the input parameters. Additionally, the resulting films also showed acceptable stability in tests of droplet compression, water jet erosion, and degradation induced by ultraviolet irradiation, which is promising for outdoor implementations.
机译:为了使透明超疏水膜的大规模现场制造切实可行,沉积技术应涉及允许在纳米级水平范围内自我限制层厚度的机制。在这里,我们提出了一种快速且可扩展的沉积策略,该策略允许均匀地放置纳米粗糙层,足以产生具有增强的光学清晰度的超疏水性能。涂覆过程涉及离子喷雾辅助的逐层组装,以沉积动力学性能大大改善的单层双尺度粗糙二氧化硅颗粒,然后在露天条件下使用烷基硅烷混合物的热蒸汽沉积进行快速表面钝化。整个过程可以在几分钟内完成,并且膜生长会自我终止,从而产生厚度在200-400 nm范围内的可控厚度。制备的膜表现出优异的超疏水性,其水接触角高达173 +/- 2度,液滴滚落角小至2 +/- 1度。由于可以忽略不计的散射损失和抗反射性能的出现,纳米粗糙层在所有情况下都增加了光透射,而不是成为障碍。透明的超疏水性薄膜的制造是在很宽的涂布条件范围内完成的,这表明输入参数具有很高的公差。另外,所得膜在液滴压缩,水射流侵蚀和紫外线照射引起的降解的测试中也显示出可接受的稳定性,这对于室外应用是有希望的。

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