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Nanotexturing of polystyrene surface in fluorocarbon plasmas: From sticky to slippery superhydrophobicity

机译:碳氟化合物等离子体中聚苯乙烯表面的纳米结构:从粘性到光滑的超疏水性

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In this work plasma etching processes have been studied to roughen and fluorinate polystyrene surface as an easy method to achieve a superhydrophobic slippery character. Radiofrequency discharges have been fed with CF4/O-2 mixtures and the effect of the O-2:CF4 ratio, the input power, and the treatment duration have been investigated in terms of wettability, with focus on sliding performances. For this purpose, surface morphological variations, evaluated by means of scanning electron microscopy and atomic force microscopy, together with the chemical assessment by X-ray photoelectron spectroscopy, have been conrelated with water contact angle hysteresis and volume resolved sliding angle measurements. Results indicate that by increasing the height and decreasing the density of the structures formed by etching, within a tailored range, a transition from sticky to slippery superhydrophobicity occurs. A short treatment time (5 min) is sufficient to obtain Such an effect, provided that a high power input is utilized. Optimized surfaces show a unaltered transparency to visible light according to the low roughness produced.
机译:在这项工作中,已经研究了等离子体蚀刻工艺来粗糙化和氟化聚苯乙烯表面,这是获得超疏水滑性的简便方法。用CF4 / O-2混合物给射频放电供电,并根据润湿性研究了O-2:CF4比,输入功率和处理持续时间的影响,重点是滑动性能。为此,通过扫描电子显微镜和原子力显微镜评估的表面形态变化,以及通过X射线光电子能谱的化学评估,已经与水接触角滞后和体积分辨滑动角测量相关。结果表明,通过在定制范围内增加通过蚀刻形成的结构的高度并降低其密度,会发生从粘性到光滑的超疏水性的​​转变。只要利用高功率输入,短的治疗时间(5分钟)就足以获得这种效果。根据产生的低粗糙度,经过优化的表面对可见光的透明度不变。

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