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Functional surfaces of laser-microstructured silicon coated with thermoresponsive PS/PNIPAM polymer blends: Switching reversibly between hydrophilicity and hydrophobicity

机译:涂有热敏性PS / PNIPAM聚合物共混物的激光微结构硅的功能表面:在亲水性和疏水性之间可逆地切换

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摘要

We developed functional surfaces of laser-microstructured silicon coated with blends of polystyrene (PS) and poly(N-isopropylacrylamide) (PNIPAM) and we study their switching wetting behavior between hydrophilicity and hydrophobicity. Large areas of silicon are processed with reproducible surface micromorphology and spin coated with PS/PNIPAM blends of two blend ratios. The wetting behavior of the surfaces is modified by the combination of surface topography and surface chemistry effects. PS/PNIPAM films are casted on flat and microstructured silicon substrates with or without a native SiO2 layer. All films respond to the stimulus of temperature and films casted on microstructured silicon substrates with a native SiO2 layer show the highest thermoresponsiveness presumably because they adopt a more favorable structure. Microstructuring provides a large specific area that extends the contact of PNIPAM chains with water molecules according to the Wenzel model, and thus increasing the film thermoresponsiveness, resulting in a reversible transition from hydrophilicity to hydrophobicity upon heating. The absence of the native SiO2 layer from the silicon substrates affects the PS and PNIPAM arrangement in the films, increasing the water contact angle both below and above the lower critical solution temperature of PNIPAM and decreasing their thermoresponsiveness.
机译:我们开发了具有聚苯乙烯(PS)和聚(N-异丙基丙烯酰胺)(PNIPAM)的共混物的激光微结构硅的功能表面,并且我们研究了它们在亲水性和疏水性之间的切换润湿行为。用可重复的表面微晶加工大面积的硅,并旋涂有两个混合比的PS / PNIPAM共混物。表面的润湿行为通过表面形貌和表面化学效应的组合来修改。 Ps / pnipam薄膜在具有或不具有天然SiO2层的平面和微结构化的硅基衬底上浇铸。所有薄膜响应于在微结构化的硅基衬底上抛出的温度和薄膜的刺激,其天然SiO2层显示最高的热反应性,因为它们采用更有利的结构。微观结构提供了一种大的特定区域,其延伸了根据温革模型的水分子与水分子的触点,从而增加膜热反应性,从而在加热时从亲水性到疏水性的可逆转变。从硅基板上没有天然的SiO2层会影响薄膜中的PS和泊地排列,增加泊普临界临界溶液温度并降低其热反应性的水接触角。

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