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Mechanically durable superoleophobic coatings prepared by layer-by-layer technique for anti-smudge and oil-water separation

机译:机械耐用的超疏油涂层采用逐层技术制备用于防污和油水分离

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摘要

Superoleophobic surfaces are of interest for anti-fouling, self-cleaning, anti-smudge, low-drag, anti-fog, and oil-water separation applications. Current bioinspired surfaces are of limited use due to a lack of mechanical durability. A so-called layer-by-layer approach, involving charged species with electrostatic interactions between layers, can provide the flexibility needed to improve adhesion to the substrate while providing a low surface tension coating at the air interface. In this work, a polyelectrolyte binder, SiO2 nanoparticles, and a fluorosurfactant are spray deposited separately to create a durable, superoleophobic coating. Polydiallyldimethylammonium chloride (PDDA) polyelectrolyte was complexed with a fluorosurfactant layer (FL), which provides oil repellency while being hydrophilic. This oleophobic/superhydrophilic behavior was enhanced through the use of roughening with SiO2 particles resulting in a superoleophobic coating with hexadecane contact angles exceeding 155° and tilt angles of less than 4°. The coating is also superhydrophilic, which is desirable for oil-water separation applications. The durability of these coatings was examined through the use of micro- and macrowear experiments. These coatings currently display characteristics of transparency. Fabrication of these coatings via the layer-by-layer technique results in superoleophobic surfaces displaying improved durability compared to existing work where either the durability or the oil-repellency is compromised.
机译:超疏油表面对于防污,自清洁,防污,低阻力,防雾和油水分离应用非常重要。由于缺乏机械耐久性,目前的生物启发表面用途有限。所谓的逐层方法,涉及带电物质在层之间具有静电相互作用,可以提供改善与基材的附着力所需的灵活性,同时在空气界面处提供低表面张力涂层。在这项工作中,将聚电解质粘合剂,SiO2纳米颗粒和含氟表面活性剂分别进行喷涂,以形成耐用的超疏油涂层。将聚二烯丙基二甲基氯化铵(PDDA)聚电解质与含氟表面活性剂层(FL)络合,该表面活性剂具有拒油性,同时具有亲水性。通过使用SiO2颗粒进行粗糙化处理可以增强这种疏油/超亲水性能,从而得到十六烷接触角超过155°和倾斜角小于4°的超疏油涂层。该涂层也是超亲水的,这对于油水分离应用是理想的。这些涂层的耐久性通过微观和宏观磨损实验进行了检验。这些涂料目前显示出透明性。与现有技术相比,通过逐层技术制造这些涂层导致超疏油性表面显示出改进的耐久性,在现有技术中,耐久性或拒油性受到损害。

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