Nature-Inspired Superwettability Achieved by Femtosecond Lasers

Jiale Yong, Qing Yang, Xun Hou, F. Chen
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引用次数: 47

Abstract

Wettability is one of a solid surface’s fundamental physical and chemical properties, which involves a wide range of applications. Femtosecond laser microfabrication has many advantages compared to traditional laser processing. This technology has been successfully applied to control the wettability of material surfaces. This review systematically summarizes the recent progress of femtosecond laser microfabrication in the preparation of various superwetting surfaces. Inspired by nature, the superwettabilities such as superhydrophilicity, superhydrophobicity, superamphiphobicity, underwater superoleophobicity, underwater superaerophobicity, underwater superaerophilicity, slippery liquid-infused porous surface, underwater superpolymphobicity, and supermetalphobicity are obtained on different substrates by the combination of the femtosecond laser-induced micro/nanostructures and appropriate chemical composition. From the perspective of biomimetic preparation, we mainly focus the methods for constructing various kinds of superwetting surfaces by femtosecond laser and the relationship between different laser-induced superwettabilities. The special wettability of solid materials makes the femtosecond laser-functionalized surfaces have many practical applications. Finally, the significant challenges and prospects of this field (femtosecond laser-induced superwettability) are discussed.
由飞秒激光实现的自然启发的超润湿性
润湿性是固体表面的基本物理化学性质之一,具有广泛的应用前景。飞秒激光微加工与传统激光加工相比具有许多优点。该技术已成功应用于控制材料表面的润湿性。本文系统地综述了飞秒激光微加工技术在制备各种超湿表面方面的最新进展。受大自然的启发,通过飞秒激光诱导的微纳米结构和适当的化学成分的结合,在不同的衬底上获得了超亲水性、超疏水性、超疏水性、水下超疏油性、水下超疏氧性、水下超亲氧性、湿滑充液多孔表面、水下超多疏水性和超疏金属等超润湿性。从仿生制备的角度出发,重点研究了飞秒激光构建各种超润湿性表面的方法以及不同超润湿性之间的关系。固体材料的特殊润湿性使得飞秒激光功能化表面具有许多实际应用。最后,讨论了飞秒激光诱导超润湿性这一领域面临的重大挑战和发展前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
11.40
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