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Superhydrophobic Surfaces Fabricated by Femtosecond Laser with Tunable Water Adhesion: From Lotus Leaf to Rose Petal

机译:飞秒激光可调节水附着力的超疏水表面:从荷叶到玫瑰花瓣

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摘要

Superhydrophobic surfaces with tunable water adhesion have attracted much interest in fundamental research and practical applications. In this paper, we used a simple method to fabricate superhydrophobic surfaces with tunable water adhesion. Periodic microstructures with different topographies were fabricated on copper surface via femtosecond (fs) laser irradiation. The topography of these microstructures can be controlled by simply changing the scanning speed of the laser beam. After surface chemical modification, these as-prepared surfaces showed superhydrophobicity combined with different adhesion to water. Surfaces with deep microstructures showed self-cleaning properties with extremely low water adhesion, and the water adhesion increased when the surface microstructures became flat. The changes in surface water adhesion are attributed to the transition from Cassie state to Wenzel state. We also demonstrated that these superhydrophobic surfaces with different adhesion can be used for transferring small water droplets without any loss. We demonstrate that our approach provides a novel but simple way to tune the surface adhesion of superhydrophobic metallic surfaces for good potential applications in related areas.
机译:具有可调水粘附力的超疏水表面在基础研究和实际应用中引起了极大的兴趣。在本文中,我们使用一种简单的方法来制造具有可调水粘附力的超疏水表面。通过飞秒(fs)激光辐照在铜表面制造了具有不同形貌的周期性微结构。这些微结构的形貌可以通过简单地改变激光束的扫描速度来控制。经过表面化学改性后,这些制备的表面显示出超疏水性并与水具有不同的附着力。具有深微结构的表面表现出自清洁性能,极低的水附着力,并且当表面微结构变得平坦时,水附着力增加。表面水粘附力的变化归因于从卡西状态到温泽尔状态的转变。我们还证明了这些具有不同粘附力的超疏水表面可用于转移小水滴而不会造成任何损失。我们证明,我们的方法提供了一种新颖而简单的方法来调节超疏水金属表面的表面附着力,以便在相关领域中获得良好的潜在应用。

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