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基于宏观结构光热存储超疏水表面的先进防冰策略与技术

Advanced Anti-Icing Strategies and Technologies by Macrostructured Photothermal Storage Superhydrophobic Surfaces.

作者信息

Chu Fuqiang, Hu Zhifeng, Feng Yanhui, Lai Nien-Chu, Wu Xiaomin, Wang Ruzhu

机构信息

School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing, 100083, China.

Research Center of Solar Power and Refrigeration, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

Adv Mater. 2024 Aug;36(31):e2402897. doi: 10.1002/adma.202402897. Epub 2024 May 27.

Abstract

Water is the source of life and civilization, but water icing causes catastrophic damage to human life and diverse industrial processes. Currently, superhydrophobic surfaces (inspired by the lotus effect) aided anti-icing attracts intensive attention due to their energy-free property. Here, recent advances in anti-icing by design and functionalization of superhydrophobic surfaces are reviewed. The mechanisms and advantages of conventional, macrostructured, and photothermal superhydrophobic surfaces are introduced in turn. Conventional superhydrophobic surfaces, as well as macrostructured ones, easily lose the icephobic property under extreme conditions, while photothermal superhydrophobic surfaces strongly rely on solar illumination. To address the above issues, a potentially smart strategy is found by developing macrostructured photothermal storage superhydrophobic (MPSS) surfaces, which integrate the functions of macrostructured superhydrophobic materials, photothermal materials, and phase change materials (PCMs), and are expected to achieve all-day anti-icing in various fields. Finally, the latest achievements in developing MPSS surfaces, showcasing their immense potential, are highlighted. Besides, the perspectives on the future development of MPSS surfaces are provided and the problems that need to be solved in their practical applications are proposed.

摘要

水是生命和文明的源泉,但水结冰会对人类生命和各种工业过程造成灾难性破坏。目前,受荷叶效应启发的超疏水表面辅助防冰因其无需能源的特性而备受关注。在此,综述了超疏水表面的设计和功能化在防冰方面的最新进展。依次介绍了传统、宏观结构和光热超疏水表面的机理和优点。传统超疏水表面以及宏观结构表面在极端条件下容易失去疏冰性能,而光热超疏水表面则强烈依赖太阳光照射。为解决上述问题,通过开发宏观结构光热储能超疏水(MPSS)表面找到了一种潜在的智能策略,该表面整合了宏观结构超疏水材料、光热材料和相变材料(PCM)的功能,有望在各个领域实现全天候防冰。最后,强调了开发MPSS表面的最新成果,展示了其巨大潜力。此外,还提供了对MPSS表面未来发展的展望,并提出了其实际应用中需要解决的问题。

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