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Superhydrophobic Coatings with Periodic Ring Structured Patterns for Self-Cleaning and Oil-Water Separation

机译:具有周期性环形结构图案的超疏水涂层,用于自清洁和油水分离

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摘要

Superhydrophobicity induced by surface micro- and nanostructure has many important applications in antisticking, self-cleaning, and oil-water separation. Here, a facile method of fabricating periodic droplet structured patterns on polymer thin films is reported. Once SiO_2 nanoparticles are coated on this microstructured film surface, periodic ring structured patterns are formed on the coating surface, which exhibits extremely superhydrophobic behavior with low water adhesion. The water contact angle of the coating can reach up to almost 170° and water droplet can fully rebound from the superhydrophobic surface. This work provides a facile yet robust approach to fabricate superhydrophobic coatings. Moreover, the results show that the coatings can be applicable to self-cleaning and oil-water separation.
机译:由表面微型和纳米结构诱导的超疏水性具有抗静,自清洁和油水分离的许多重要应用。 这里,报道了在聚合物薄膜上制造周期性液滴结构图案的容易方法。 一旦SiO_2纳米颗粒涂覆在该微结构化薄膜表面上,一旦在涂层表面上形成周期性的环结构图案,其在涂层表面上形成具有低水粘合的极其过度的嗜水性行为。 涂层的水接触角可以达到近170°,水滴可以从超疏水表面完全反弹。 这项工作提供了一种易于制造超疏水涂料的较强的浓郁方法。 此外,结果表明涂层可适用于自清洁和油水分离。

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