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超疏水的稳健性:机制与策略。

Robust superhydrophobicity: mechanisms and strategies.

机构信息

Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu, China.

出版信息

Chem Soc Rev. 2021 Mar 21;50(6):4031-4061. doi: 10.1039/d0cs00751j. Epub 2021 Feb 8.

Abstract

Superhydrophobic surfaces hold great prospects for extremely diverse applications owing to their water repellence property. The essential feature of superhydrophobicity is micro-/nano-scopic roughness to reserve a large portion of air under a liquid drop. However, the vulnerability of the delicate surface textures significantly impedes the practical applications of superhydrophobic surfaces. Robust superhydrophobicity is a must to meet the rigorous industrial requirements and standards for commercial products. In recent years, major advancements have been made in elucidating the mechanisms of wetting transitions, design strategies and fabrication techniques of superhydrophobicity. This review will first introduce the mechanisms of wetting transitions, including the thermodynamic stability of the Cassie state and its breakdown conditions. Then we highlight the development, current status and future prospects of robust superhydrophobicity, including characterization, design strategies and fabrication techniques. In particular, design strategies, which are classified into passive resistance and active regeneration for the first time, are proposed and discussed extensively.

摘要

由于其疏水性,超疏水表面在极其多样化的应用中具有广阔的前景。超疏水性的基本特征是微观/纳米级粗糙度,以在液滴下保留大量空气。然而,脆弱的表面纹理极大地阻碍了超疏水表面的实际应用。稳健的超疏水性是满足商业产品严格的工业要求和标准的必要条件。近年来,人们在阐明润湿转变机制、超疏水性的设计策略和制造技术方面取得了重大进展。本文首先介绍润湿转变机制,包括 Cassie 状态的热力学稳定性及其破坏条件。然后,我们重点介绍了稳健超疏水性的发展、现状和未来前景,包括特性、设计策略和制造技术。特别是,首次提出并广泛讨论了被动阻力和主动再生这两种分类的设计策略。

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