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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Hydrophobic and super-hydrophobic coatings based on nanoparticles overcoated by fluorocarbon plasma polymer
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Hydrophobic and super-hydrophobic coatings based on nanoparticles overcoated by fluorocarbon plasma polymer

机译:基于碳氟化合物等离子体聚合物包覆的纳米颗粒的疏水性和超疏水性涂料

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摘要

This study proposes preparation of highly hydrophobic and super-hydrophobic fluorocarbon surfaces using a simple fully vacuum-based method. The method combines deposition of nanoparticle films by means of gas aggregation sources and overcoating of such films by a magnetron sputtered polytetrafluoroethylene layer. This makes it possible to vary independently the roughness of the resulting surfaces and their chemical composition. The surface roughness is given by the underlying nanoparticle film and surface chemical composition by the chemical structure of the thin film overcoat. It is demonstrated that the surface roughness, i.e. a key parameter that governs wettability, may be adjusted by the size of nanoparticles used in a relatively wide range. Finally, it is shown that at certain surface roughness, 60 nm in this study, the fabricated surfaces become super-hydrophobic and slippery.
机译:这项研究建议使用简单的完全基于真空的方法来制备高度疏水和超疏水的碳氟化合物表面。该方法结合了借助于气体聚集源的纳米颗粒膜的沉积和通过磁控溅射的聚四氟乙烯层对这种膜的覆盖。这使得可以独立地改变所得表面的粗糙度及其化学组成。表面粗糙度由下面的纳米颗粒膜给出,表面化学组成由薄膜外涂层的化学结构给出。已经证明,可以通过在相对宽的范围内使用的纳米颗粒的尺寸来调节表面粗糙度,即控制润湿性的关键参数。最后,研究表明,在一定的表面粗糙度(60 nm)下,制成的表面变得超疏水和光滑。

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