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Superhydrophobic ceramic coatings enabled by phase-separated nanostructured composite TiO_2–Cu_2O thin films

机译:相分离的纳米结构复合TiO_2–Cu_2O薄膜可形成超疏水陶瓷涂层

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摘要

By exploiting phase-separation in oxide materials, we present a simple and potentially low-cost approach to create exceptional superhydrophobicity in thin-film based coatings. By selecting the TiO_2–Cu_2O system and depositing through magnetron sputtering onto single crystal and metal templates, we demonstrate growth of nanostructured, chemically phase-segregated composite films. These coatings, after appropriate chemical surface modification, demonstrate a robust, non-wetting Cassie–Baxter state and yield an exceptional superhydrophobic performance, with water droplet contact angles reaching to ~172° and sliding angles <1°. As an added benefit, despite the photo-active nature of TiO_2, the chemically coated composite film surfaces display UV stability and retain superhydrophobic attributes even after exposure to UV (275 nm) radiation for an extended period of time. The present approach could benefit a variety of outdoor applications of superhydrophobic coatings, especially for those where exposure to extreme atmospheric conditions is required.
机译:通过利用氧化物材料中的相分离,我们提出了一种简单且潜在的低成本方法,以在基于薄膜的涂料中创造卓越的超疏水性。通过选择TiO_2–Cu_2O系统并通过磁控溅射沉积到单晶和金属模板上,我们证明了纳米结构的,化学相分离的复合膜的生长。这些涂料经过适当的化学表面改性后,表现出坚固,不润湿的Cassie–Baxter状态,并具有出色的超疏水性能,水滴接触角达到〜172°,滑动角<1°。另外一个好处是,尽管TiO_2具有光活性,但化学涂层的复合膜表面仍具有紫外线稳定性,即使暴露在紫外线(275 nm)辐射下较长时间后仍保持超疏水特性。本方法可以使超疏水涂料的各种户外应用受益,特别是对于那些需要暴露在极端大气条件下的应用。

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