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“冬暖夏凉”:受可扩展生物变色龙启发的易于制备和施工的温度自适应涂层。

"Warm in Winter and Cool in Summer": Scalable Biochameleon Inspired Temperature-Adaptive Coating with Easy Preparation and Construction.

作者信息

Dong Yan, Meng Weifeng, Wang Fuqiang, Han Han, Liang Huaxu, Li Xiang, Zou Yanan, Yang Chun, Xu Zenghui, Yan Yuying, Cheng Ziming

机构信息

School of Energy Science and Engineering, Harbin Institute of Technology, 92 West Dazhi Street, Harbin 150001, P. R. China.

School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.

出版信息

Nano Lett. 2023 Oct 11;23(19):9034-9041. doi: 10.1021/acs.nanolett.3c02733. Epub 2023 Sep 20.

Abstract

The highly reflective solar radiation of passive daytime radiative cooling (PDRC) increases heating energy consumption in the cold winter. Inspired by the temperature-adaptive skin color of chameleon, we efficiently combine temperature-adaptive solar absorption and PDRC technology to achieve "warm in winter and cool in summer". The temperature-adaptive radiative cooling coating (TARCC) with color variability is designed and fabricated, achieving 41% visible light regulation capability. Comprehensive seasonal outdoor tests confirm the reliability of the TARCC: in summer, the TARCC exhibits high solar reflectance (∼93%) and atmospheric transmission window emittance (∼94%), resulting in a 6.5 K subambient temperature. In the winter, the TARCC's dark color strongly absorbs solar radiation, resulting in a 4.3 K temperature rise. Compared with PDRC coatings, the TARCC can save up to 20% of annual energy in midlatitude regions and increase suitable human hours by 55%. With its low cost, easy preparation, and simple construction, the TARCC shows promise for achieving sustainable and comfortable indoor environments.

摘要

被动式日间辐射制冷(PDRC)的高反射性太阳辐射会增加寒冷冬季的供暖能耗。受变色龙随温度变化的皮肤颜色启发,我们将随温度变化的太阳能吸收与PDRC技术有效结合,以实现“冬暖夏凉”。设计并制造了具有颜色可变特性的随温度变化的辐射制冷涂层(TARCC),实现了41%的可见光调节能力。全面的季节性户外测试证实了TARCC的可靠性:在夏季,TARCC表现出高太阳反射率(约93%)和大气传输窗口发射率(约94%),导致比环境温度低6.5K。在冬季,TARCC的深色强烈吸收太阳辐射,导致温度升高4.3K。与PDRC涂层相比,TARCC在中纬度地区每年可节省高达20%的能源,并将适宜人类活动的时长增加55%。凭借其低成本、易于制备和施工简单的特点,TARCC在实现可持续且舒适的室内环境方面展现出前景。

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