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Bioinspired Design of Underwater Superaerophobic and Superaerophilic Surfaces by Femtosecond Laser Ablation for Anti- or Capturing Bubbles

机译:通过飞秒激光烧蚀抗或捕获泡沫的水下超级和超血管表面的Bioinspired设计

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摘要

A micro-/nanoscale hierarchical rough structure inspired by the underwater superaerophobicity of fish scales was fabricated by ablation of a silicon surface by a femtosecond laser. The resultant silicon surface showed superhydrophilicity in air and became superaerophobic after immersion in water. Additionally, inspired by the underwater superaerophilicity of lotus leaves, we showed that the polydimethylsiloxane surface after femtosecond laser ablation exhibits superhydrophobicity in air and becomes superaerophilic in water. The underwater superaerophobic surface showed excellent antibubble ability, whereas the underwater superaerophilic surface could absorb and capture air bubbles in a water medium. The experimental results revealed that the in-air superhydrophilic surface generally shows superaerophobicity in water and that the in-air superhydrophobic surface generally shows underwater superaerophilicity. An underwater superaerophobic porous aluminum sheet with through microholes was prepared, and this sheet was able to intercept underwater bubbles and further remove bubbles from water. In contrast, the underwater superaerophilic porous polytetrafluoroethylene sheet could allow the bubbles to pass through the sheet. We believe that these results are highly significant for providing guidance to researchers and engineers for obtaining excellent control of bubbles' behavior on a solid surface in a water medium.
机译:通过Femtosecond激光通过飞秒消除硅表面,制造了由鱼鳞的水下超级侵蚀性的微/纳米级分层粗糙结构。所得硅表面在空气中显示出超级水性,在浸入水中后变得超级性。另外,受到莲花叶的水​​下超级性的启发,我们表明,在飞秒激光烧蚀后的聚二甲基硅氧烷表面在空气中表现出超细纤维性并在水中变得超级渗透性。水下超血管表面显示出优异的抗抹布能力,而水下超级苯酚表面可以吸收和捕获水介质中的气泡。实验结果表明,空气中的过性过水面通常在水中显示过嗜血性,并且空气中的超疏水表面通常显示出水下超级嗜好体。制备水下超级超级多孔铝板,并制备通过微孔,并且该片材能够拦截水下气泡并进一步从水中除去泡泡。相反,水下超级多孔多孔聚四氟乙烯片可以使气泡通过片材。我们认为,这些结果对于为研究人员和工程师提供指导,这些结果非常重要,以获得水介质中的固体表面上的气泡行为的优异控制。

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