Yuan Gan, Liu Yu, Ngo Chi-Vinh, Guo Chunlei
Opt Express. 2020 Nov 23;28(24):35636-35650. doi: 10.1364/OE.400804.
The development of superhydrophobic metals has found many applications such as self-cleaning, anti-corrosion, anti-icing, and water transportation. Recently, femtosecond laser has been used to create nano/microstructures and wetting property changes. However, for some of the most common metals, such as aluminum, a relatively long aging process is required to obtain stable hydrophobicity. In this work, we introduce a combination of femtosecond laser ablation and heat treatment post-process, without using any harsh chemicals. We turn aluminum superhydrophobic within 30 minutes of heat treatment following femtosecond laser processing, and this is significantly shorter compared to conventional aging process of laser-ablated aluminum. The superhydrophobic surfaces maintain high contact angles greater than 160° and low sliding angles smaller than 5° over two months after the heat treatment. Moreover, the samples exhibit strong superhydrophobicity for various types of liquids (milk, coffee, CuPc, R6G, HCl, NaOH and CuCl). The samples also show excellent self-healing and anti-corrosion properties. The mechanism for fast wettability conversion time is discussed. Our technique is a rapid process, reproducible, feasible for large-area fabrication, and environment-friendly.
超疏水金属的发展已在许多应用中得到应用,如自清洁、防腐、防冰和水传输等。最近,飞秒激光已被用于制造纳米/微结构并改变润湿性。然而,对于一些最常见的金属,如铝,需要相对较长的时效过程才能获得稳定的疏水性。在这项工作中,我们引入了飞秒激光烧蚀和后续热处理的组合方法,且不使用任何苛刻的化学物质。在飞秒激光加工后的热处理30分钟内,我们就能使铝具有超疏水性,这与激光烧蚀铝的传统时效过程相比明显更短。热处理两个月后,超疏水表面保持大于160°的高接触角和小于5°的低滑动角。此外,样品对各种类型的液体(牛奶、咖啡、酞菁铜、罗丹明6G、盐酸、氢氧化钠和氯化铜)都表现出很强的超疏水性。样品还显示出优异的自愈和防腐性能。本文讨论了快速润湿性转换时间的机制。我们的技术是一个快速的过程,可重复,适用于大面积制造,且环境友好。