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Facile Fabrication of a Superhydrophobic Surface with Robust Micro-/Nanoscale Hierarchical Structures on Titanium Substrate

机译:具有耐高温性微/纳米级分层结构的超疏水表面的体积制备钛基材

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摘要

A superhydrophobic surface with robust structures on a metallic surface could improve its application in various harsh conditions. Herein, we developed a new strategy to fabricate robust micro-anoscale hierarchical structures with electrical discharge machining and electrochemical etching on a titanium substrate. After modification by fluorinated silane, the static water contact angle and slide angle of the surface could reach 162 ± 2° and 4 ± 1°, respectively. The superhydrophobic surfaces showed good corrosion resistance and mechanical stability after scratching with sandpapers. In addition, the superhydrophobic surfaces had good self-cleaning performance even in an acidic environment as well as the potential to be used as guiding tracks in droplet microfluidics and lab-on-a-chip systems. These results are expected to be helpful in designing the surface of liquid float gyroscope parts.
机译:金属表面上具有鲁棒结构的超疏水表面可以改善其在各种恶劣条件下的应用。这里,我们开发了一种新的策略,用于制造具有电气放电加工和在钛基板上的电化学蚀刻的鲁棒微/纳米级分层结构。通过氟化硅烷改性后,静态水接触角和表面的滑动角度分别可以达到162±2°和4°±1°。用涂涂涂层后,超疏水表面显示出良好的耐腐蚀性和机械稳定性。此外,即使在酸性环境中也具有良好的自清洁性能,以及用作液滴微流体和实验室内系统的引导轨道的电位。这些结果预计将有助于设计液体浮法陀螺仪零件的表面。

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