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Slippery lubricant-infused textured aluminum surfaces

机译:光滑的注入润滑剂的铝质表面

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摘要

To overcome instability of the lotus-inspired surfaces, slippery lubricant-infused surfaces inspired by Nepenthes pitcher plant were fabricated by the combination of fluorinated hierarchical texture and perfluoropolyether (PFPE). The hierarchical structures composed of facets, cavities, and nanoflakes were formed on the aluminum substrates by the HC1 etching and the boiling water treatment. After surface fluorina-tion, PFPE can spread over the textured aluminum surfaces via capillary effect to form continuous and homogeneous liquid films. The liquid repellency of the textured surface was demonstrated by visible experimental results and contact angle measurements. Due to the hierarchical structures that trapped enough lubricant and resisted the deformation of lubricant film, the lubricant-infused textured aluminum surface exhibited an excellent liquid repellency, low sliding angles for various liquids, and high environmental durability. Therefore, this slippery aluminum surface would be a good candidate for liquid-repellent surfaces to meet emerging needs in practical applications.
机译:为了克服荷花启发的表面的不稳定性,结合氟化的分层纹理和全氟聚醚(PFPE),制作了由猪笼草的猪笼草启发的光滑的润滑剂注入表面。通过HCl蚀刻和沸水处理,在铝基板上形成了由小面,空洞和纳米薄片组成的分层结构。表面氟化后,PFPE可以通过毛细作用散布在网纹铝表面上,形成连续且均匀的液膜。通过可见的实验结果和接触角测量证明了带纹理表面的拒液性。由于分层结构能捕获足够的润滑剂并抵抗润滑剂膜的变形,因此注入了润滑剂的网纹铝表面显示出优异的拒液性,对各种液体的低滑动角和较高的环境耐久性。因此,这种光滑的铝表面将是拒液表面的理想选择,以满足实际应用中的新兴需求。

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