光热应用的激光加工材料。

Advances in colloid and interface science Pub Date : 2025-03-01 Epub Date: 2024-12-13 DOI:10.1016/j.cis.2024.103382
Puxin Tan, Chengbing Wang, Dan Wei, Fan Wang, Zexiang Zhao, Wenhe Zhang
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引用次数: 0

摘要

光热转换材料是光热技术的重要组成部分。尽管已经开发出各种具有良好阳光收集性能的pcm用于彩色太阳能热应用,但统一和大规模生产pcm仍然是一个挑战,并且通过传统方法制备的pcm通常是非特定地点的。激光加工技术(LPT)作为一种高效、便捷、绿色和可持续的技术,可以直接在材料表面的特定位置产生微纳结构和图案,在光热应用中受到广泛关注。本文综述了激光烧结、激光改性、液体激光烧蚀、激光诱导碳化和激光蚀刻等制备pcm的激光工艺。我们还介绍了LPT的工作机理,并分析了LPT处理后基材的导热性能、储热性能和亲疏水性能。并介绍了LPT在太阳能防冰/除冰、海水淡化、换热系统、蓄能传输等相关领域的应用。最后,对LPT的发展进行了展望,并提出了今后的研究方向。希望本文的综述能够为该领域的学者提供有意义的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser processing materials for photo-to-thermal applications.

Photothermal conversion materials (PCMs) are crucial component in solar-thermal energy technologies. Although various PCMs with excellent sunlight harvesting have been developed for colorful solar-thermal applications, uniform and large-scale production of PCMs remains a challenge, and the PCMs prepared through the conventional methods are often non-site specific. Laser processing technology (LPT), as an efficient, convenient, green and sustainable technology, can directly create micro/nano structures and patterns at specific locations on materials surface, attracting widespread attention in photo-to-thermal applications. Here, we summarize the laser processing of preparing PCMs through laser sintering, laser modification, laser ablation in liquid, laser induced carbonization, and laser etching. We also introduce the working mechanism of LPT, and analyze the thermal conductivity, heat storage performance and hydrophilic/hydrophobic properties of the substrate after LPT treatment. Furthermore, the application of LPT in solar anti-icing/deicing, seawater desalination, heat exchange system, energy storage and transfer, and other related fields are introduced. Additionally, we provide a prospect for the development of LPT and offer directions for future research. We hope that this review can provide meaningful reference value for scholars in this field.

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