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Fabrication and tribological properties of super-hydrophobic surfaces based on porous silicon

机译:多孔硅基超疏水表面的制备及其摩擦学性能

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In the present work, super-hydrophobic surfaces based on porous silicon (PS) were constructed by the self-assembled molecular films and their tribological properties were investigated. A simple chemical etching approach was developed to fabricate PS with the certain rough microstructure surface, which can be observed by the environmental scanning electron microscopy (ESEM). The hydrocarbon and fluorocarbon alkylsilane molecular films were self-assembled on PS, which was confirmed by the X-ray photoelectron spectroscopy (XPS) measurement. In contrast to PS, the alkylsilane molecular films modified PS (mPS) were super-hydrophobic since the apparent water contact angle (CA) exceeded 160°. The tribological properties of PS and the mPS were investigated by a ball-on-disk tribometer during the processes of different sliding velocities and normal loads. The experimental results showed that the alkylsilane molecular films could decrease the friction coefficient. Due to the difference of chain structure and functional groups, the fluorinated alkylsilane films are better candidates for improving the hydrophobicity and lubricating characteristics of PS comparing to the non-fluorinated ones. The carbon chain length of alkylsilane molecules self-assembling on the Si or PS substrates could have little effects on the hydrophobic properties and the tribology performances.
机译:在本工作中,通过自组装分子膜构建了基于多孔硅(PS)的超疏水表面,并研究了它们的摩擦学性能。开发了一种简单的化学蚀刻方法,以制造具有一定粗糙显微结构表面的PS,可以通过环境扫描电子显微镜(ESEM)进行观察。碳氢化合物和碳氟烷基烷基硅烷分子膜在PS上自组装,这通过X射线光电子能谱(XPS)测量得到证实。与PS相反,由于表观水接触角(CA)超过160°,烷基硅烷分子膜改性的PS(mPS)具有超疏水性。用圆盘摩擦计在不同的滑动速度和正常载荷作用下研究了PS和mPS的摩擦学特性。实验结果表明,烷基硅烷分子膜可以降低摩擦系数。由于链结构和官能团的差异,与未氟化的烷基硅烷薄膜相比,氟化的烷基硅烷薄膜更适合用于改善PS的疏水性和润滑特性。在Si或PS基板上自组装的烷基硅烷分子的碳链长度对疏水性能和摩擦学性能影响很小。

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