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Uniting Superhydrophobic Superoleophobic and Lubricant Infused Slippery Behavior on Copper Oxide Nano-structured Substrates

机译:在氧化铜纳米结构基底上结合超疏水超疏油和润滑剂的滑润行为

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摘要

Alloys, specifically steel, are considered as the workhorse of our society and are inimitable engineering materials in the field of infrastructure, industry and possesses significant applications in our daily life. However, creating a robust synthetic metallic surface that repels various liquids has remained extremely challenging. The wettability of a solid surface is known to be governed by its geometric nano-/micro structure and the chemical composition. Here, we are demonstrating a facile and economical way to generate copper oxide micro-nano structures with spherical (0D), needle (1D) and hierarchical cauliflower (3D) morphologies on galvanized steel substrates using a simple chemical bath deposition method. These nano/micro textured steel surfaces, on subsequent coating of a low surface energy material display excellent superhydrophobic, superoleophobic and slippery behavior. Polydimethylsiloxane coated textured surfaces illustrate superhydrophobicity with water contact angle about 160°(2) and critical sliding angle ~2°. When functionalized with low-surface energy perfluoroalkylsilane, these surfaces display high repellency for low surface tension oils as well as hydrocarbons. Among them, the hierarchical cauliflower morphology exhibits re-entrant structure thereby showing the best superoleophobicity with contact angle 149° for dodecane. Once infused with a lubricant like silicone oil, they show excellent slippery behavior with low contact angle hysteresis (~ 2°) for water drops.
机译:合金,特别是钢,被认为是我们社会的主力军,在基础设施,工业领域是不可替代的工程材料,在我们的日常生活中具有重要的应用。然而,创造出能够抵抗各种液体的坚固的合成金属表面仍然极具挑战性。已知固体表面的润湿性受其几何纳米/微观结构和化学组成的支配。在这里,我们正在演示一种简便而经济的方法,可以使用一种简单的化学浴沉积方法在镀锌的钢基材上生成具有球形(0D),针状(1D)和分层花椰菜(3D)形态的氧化铜微纳米结构。这些纳米/微织构的钢表面,在随后的低表面能材料涂层上表现出优异的超疏水,超疏油和湿滑性能。聚二甲基硅氧烷涂层的织构表面表现出超疏水性,水接触角约为160°(2),临界滑动角约为2°。当用低表面能的全氟烷基硅烷官能化时,这些表面显示出对低表面张力油以及碳氢化合物的高排斥性。其中,花椰菜的分层形态表现出凹状结构,从而显示出最佳的超疏油性,十二烷的接触角为149°。一旦注入了像硅油这样的润滑剂,它们就会表现出出色的滑爽性能,并且水滴的接触角滞后性低(〜2°)。

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