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超疏水材料耐磨性增强及其应用的最新进展

Recent Advances on the Abrasion Resistance Enhancements and Applications of Superhydrophobic Materials.

作者信息

Li Xinyi, Yang Kangli, Yuan Zhiqing, Liu Shujuan, Du Juan, Li Cancheng, Meng Shoutong

机构信息

National & Local Joint Engineering Research Center for Advanced Packaging Material and Technology, School of Packaging and Materials Engineering, Hunan University of Technology, Zhuzhou, 412007, China.

Department of Teaching, Zhuzhou Central Hospital, Zhuzhou, 412000, China.

出版信息

Chem Rec. 2023 Apr;23(4):e202200298. doi: 10.1002/tcr.202200298. Epub 2023 Feb 13.

Abstract

Researches on superhydrophobicity have been overwhelming and have shown great advantages in various fields. However, the abrasion resistance of superhydrophobic structures was usually poor, and they were easily damaged by external force or harsh environment, which greatly limited the applications of superhydrophobic surfaces. Much attention has been paid to improving the abrasion resistance of superhydrophobic materials by researchers. In this review, aimed at the advances on improving the abrasion resistance of superhydrophobic surfaces, it was summarized and compared three enhancement strategies including the reasonably design of micro-nano structures, the adoption of adhesives, and the preparation of self-healing surface. Finally, the applications of typical superhydrophobic materials with abrasion resistance were reviewed in various fields. In order to broaden the application fields of superhydrophobic materials, the abarasion resistance should be further improved. Therefore, we proposed the ideas for the future development of superhydrophobic materials with higher abrasion resistance. We hope that this review will provide a new approach to the preparation and development of stable superhydrophobic surfaces with higher abrasion resistance.

摘要

关于超疏水性的研究不胜枚举,且已在各个领域展现出巨大优势。然而,超疏水结构的耐磨性通常较差,容易受到外力或恶劣环境的破坏,这极大地限制了超疏水表面的应用。研究人员已对提高超疏水材料的耐磨性给予了诸多关注。在本综述中,针对提高超疏水表面耐磨性的进展,总结并比较了三种增强策略,包括微纳结构的合理设计、粘合剂的采用以及自修复表面的制备。最后,综述了具有耐磨性的典型超疏水材料在各个领域的应用。为拓宽超疏水材料的应用领域,应进一步提高其耐磨性。因此,我们提出了具有更高耐磨性的超疏水材料未来发展的思路。我们希望本综述能为制备和开发具有更高耐磨性的稳定超疏水表面提供一种新方法。

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