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Long-Lasting Antifog Plasma Modification of Transparent Plastics

机译:持久性防雾等离子改性透明塑料

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Antifog surfaces are necessary for any application requiring optical efficiency of transparent materials. Surface modification methods aimed toward increasing solid surface energy, even when supposed to be permanent, in fact result in a nondurable effect due to the instability in air of highly hydrophilic surfaces. We propose the strategy of combining a hydrophilic chemistry with a nanotextured topography, to tailor a long-lasting antifog modification on commercial transparent plastics. In particular, we investigated a two-step process consisting of self-masked plasma etching followed by plasma deposition of a silicon-based film. We show that the deposition of the silicon-based coatings on the flat (pristine) substrates allows a continuous variation of wettability from hydrophobic to superhydrophilic, due to a continuous reduction of carbon-containing groups, as assessed by Fourier transform infrared and X-ray photoelectron spectroscopies. By depositing these different coatings on previously nanotextured substrates, the surface wettability behavior is changed consistently, as well as the condensation phenomenon in terms of microdroplets/liquid film appearance. This variation is correlated with advancing and receding water contact angle features of the surfaces. More importantly, in the case of the superhydrophilic coating, though its surface energy decreases with time, when a nanotextured surface underlies it, the wetting behavior is maintained durably superhydrophilic, thus durably antifog.
机译:防雾表面对于任何需要透明材料的光学效率的应用都是必需的。旨在提高固体表面能的表面改性方法,即使假定是永久性的,实际上也由于高亲水性表面在空气中的不稳定性而导致不耐用的效果。我们提出将亲水化学与纳米织构形貌相结合的策略,以在商业透明塑料上定制持久的防雾改性。特别是,我们研究了两步工艺,包括自掩膜等离子体刻蚀,然后进行硅基薄膜的等离子体沉积。我们表明,在平坦(原始)基材上沉积硅基涂层可以使润湿性从疏水性到超亲水性不断变化,这是由于含碳基团的不断减少所致,这是通过傅立叶变换红外和X射线评估的光电子能谱。通过将这些不同的涂层沉积在先前的纳米纹理化基材上,表面的润湿性行为以及在微滴/液膜外观方面的凝结现象将不断变化。这种变化与表面的前进和后退水接触角特征相关。更重要的是,在超亲水性涂层的情况下,尽管其表面能随时间降低,但当纳米纹理化表面作为其基础时,润湿性能将保持持久的超亲水性,从而持久地保持防雾性。

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