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Preparation of Hierarchically Structured Polystyrene Surfaces with Superhydrophobic Properties by Plasma-Assisted Fluorination

机译:通过等离子体辅助氟化制备具有超疏水性质的分层结构化聚苯乙烯表面

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The nanotexturing of microstructured polystyrene surfaces through CF 4 plasma chemical fluorination is presented in this study. It is demonstrated that the parameters of a surface micropore-generation process, together with the setup of subsequent plasma-chemical modifications, allows for the creation of a long-term (weeks) surface-stable micro- and nanotexture with high hydrophobicity (water contact angle 150°). Surface micropores were generated initially via the time-sequenced dosing of mixed solvents onto a polystyrene surface (Petri dish) in a spin-coater. In the second step, tetrafluoromethane (CF 4 ) plasma fluorination was used for the generation of a specific surface nanotexture and the modulation of the surface chemical composition. Experimental results of microscopic, goniometric, and spectroscopic measurements have shown that a single combination of phase separation methods and plasma processes enables the facile preparation of a wide spectrum of hierarchically structured surfaces differing in their wetting properties and application potentials.
机译:本研究介绍了通过CF 4等离子体化学氟化的微结构化聚苯乙烯表面的纳米制纹。结果证明,表面微孔发电方法的参数与随后的等离子体化学修饰的设置一起允许产生具有高疏水性的长期(周)表面稳定的微 - 和纳米音调(水接触角度> 150°)。最初通过将混合溶剂的时序剂量的混合溶剂在旋转涂布机中的聚苯乙烯表面(Petri盘)上产生表面微孔。在第二步中,使用四氟甲烷(CF 4)等离子体氟化用于产生比表面纳米纹理和表面化学组合物的调节。显微镜,焦管测量和光谱测量的实验结果表明,相分离方法和等离子体工艺的单个组合使得能够在其润湿性能和应用电位上不同的宽谱的分层结构表面。

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