Luo Wenxin, Li Mingjie
School of Integrated Circuits, Guangdong University of Technology, Guangzhou 510006, China.
Nanomaterials (Basel). 2023 Aug 18;13(16):2359. doi: 10.3390/nano13162359.
Transparent superhydrophobic coatings have been extensively investigated due to their ability to provide self-cleaning properties for outdoor applications. However, the widespread implementation of these coatings on a large scale is impeded by the challenges of poor durability and complex fabrication procedures. In this review, the fundamentals and theories governing the mutually exclusive properties of superhydrophobicity, optical transparency, and susceptibility to wear are introduced, followed by a discussion of representative examples of advanced surface design and processing optimizations. Also, robust evaluation protocols for assessing mechanical and chemical stabilities are briefed and potential research directions are presented. This review can offer the research community a better understanding of durable and transparent superhydrophobic surfaces, thereby facilitating their development for real-world applications.
透明超疏水涂层因其能够为户外应用提供自清洁性能而受到广泛研究。然而,这些涂层在大规模广泛应用中受到耐久性差和制造工艺复杂等挑战的阻碍。在本综述中,介绍了支配超疏水性、光学透明度和耐磨性这些相互排斥特性的基本原理和理论,随后讨论了先进表面设计和工艺优化的代表性实例。此外,还简要介绍了用于评估机械和化学稳定性的可靠评估方案,并提出了潜在的研究方向。本综述可为研究界提供对耐用且透明的超疏水表面的更好理解,从而促进其在实际应用中的发展。