Transparent Solar Thermal Metasurface for Efficient Anti-Icing/Deicing and Indoor Light Management

IF 18.5 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Fei Zhang, Baojian Yao, Min Song, Meijie Chen
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引用次数: 0

Abstract

Transparent roofs, such as greenhouse films and architectural glass, play a critical role in optimizing lighting and reducing energy consumption. However, conventional solutions are hindered by challenges, such as frost accumulation in winter and glare or overheating in summer. Here, a multi-functional transparent solar thermal metasurface (TSTM) is presented that integrates anti-icing/deicing functionality with indoor light management. The TSTM achieves a visible light transmittance of 0.731, diffusing over 90% of the transmitted light to enhance indoor comfort. Furthermore, the solar thermal performance of the metasurface is enabled by the high ultraviolet (0.660) and near-infrared (0.724) absorptance, and low mid-infrared thermal emittance (0.371). Its multi-scale surface and superhydrophobic surface (contact angle: 160.8°) ensure spontaneous dewetting transition during melting, enabling robust anti-icing/deicing capabilities. The metasurface effectively prevents frost formation at −10 °C and melts a 4 mm-thick frost layer within 310 s under sunlight. This work which combines photonics and interface engineering, advances transparent solar thermal technologies for sustainable architecture and energy-efficient greenhouse applications.

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来源期刊
Advanced Functional Materials
Advanced Functional Materials 工程技术-材料科学:综合
CiteScore
29.50
自引率
4.20%
发文量
2086
审稿时长
2.1 months
期刊介绍: Firmly established as a top-tier materials science journal, Advanced Functional Materials reports breakthrough research in all aspects of materials science, including nanotechnology, chemistry, physics, and biology every week. Advanced Functional Materials is known for its rapid and fair peer review, quality content, and high impact, making it the first choice of the international materials science community.
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