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One-Step Production of Superhydrophobic Coatings on Flat Substrates via Atmospheric Rf Plasma Process Using Non-Fluorinated Hydrocarbons

机译:使用非氟化烃通过大气Rf等离子工艺一步一步生产平面基板上的超疏水涂层

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This paper describes the direct deposition of hydro carbon coatings with a static water contact angle higher than 150 using simple C6 hydrocarbons as a reactive gas in helium plasma generated in ambient air without any preroughening of the silicon (100) substrate. The film morphology and hydrophobicity are found to strongly depend on the structure of the reagent hydrocarbon. The films deposited with n-hexane and cyclohexane exhibited relatively smooth morphology and the water contact angle was only ~95°, similar to polypropylene. When benzene was used as a main reactive gas, the deposited film surface showed nanoscale textured morphol- ogy and superhydrophobicity with a water contact angle as high as 167°. Because the plasma is generated in air, all films show some degree of oxygen incorporation. These results imply that the incorporation of a small amount of oxygenated species in hydrocarbon films due to excitation of ambient air is not detrimental for superhydrophobicity, which allows the atmospheric rf plasma with the benzene precursor to produce rough surface topography needed for superhydrophobicity.
机译:本文介绍了使用简单的C6碳氢化合物作为环境空气中产生的氦气等离子体中的反应气体,直接沉积静态水接触角大于150的碳氢化合物涂层的方法,而无需对硅(100)基材进行任何粗化处理。发现膜的形态和疏水性在很大程度上取决于反应烃的结构。用正己烷和环己烷沉积的薄膜具有相对光滑的形貌,与聚丙烯的水接触角仅为〜95°。当苯用作主要反应气体时,沉积的薄膜表面显示出纳米级的织构形态和超疏水性,水接触角高达167°。由于等离子体是在空气中产生的,因此所有薄膜都显示出一定程度的氧结合。这些结果暗示由于环境空气的激发而在烃膜中掺入少量的氧化物质对超疏水性无害,这使得大气射频等离子体与苯前体产生超疏水性所需的粗糙表面形貌。

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