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用于高效日间辐射冷却的可扩展且灵活的多层棱柱形光子超材料薄膜

Scalable and Flexible Multi-Layer Prismatic Photonic Metamaterial Film for Efficient Daytime Radiative Cooling.

作者信息

Li Wangchang, Zhan Huanchen, Huang Nengyan, Ying Yao, Yu Jing, Zheng Jingwu, Qiao Liang, Li Juan, Che Shenglei

机构信息

College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou, 310014, China.

Research Center of Magnetic and Electronic Materials, Zhejiang University of Technology, Hangzhou, 310014, China.

出版信息

Small Methods. 2024 Jul;8(7):e2301258. doi: 10.1002/smtd.202301258. Epub 2023 Dec 26.

Abstract

To maintain a comfortable indoor living environment in low latitude or tropical regions, humans consume significant amounts of electrical energy in air conditioning, leading to substantial CO emissions. Passive daytime radiative cooling (PDRC) allows objects to cool down during the daytime without any energy consumption by dissipating heat through the atmospheric transparency window (8-13 µm) to outer space, which has garnered significant attention. However, the practical applications of common PDRC materials are hindered by their poor optical selectivity and high-reflective silver backing. Additionally, the availability of artificial photon emitters with complex structures and excellent performance is also limited by their high cost. Herein, a novel multilayer prismatic photonic metamaterial film without any silver reflector, easily scalable and produced by a roll-to-roll method is demonstrated, which exhibits ≈96.4% sunlight reflectance (0.3-2.5 µm) and ≈97.2% emissivity in mid-infrared (IR) (8-13 µm). At an average solar intensity of ≈920 W m, it is on average 6.8 °C below ambient temperature during the day and theoretically yields a radiative cooling power of 88.9 W m. Furthermore, the film exhibits excellent hydrophobicity, superior flexibility, and robust mechanical strength, providing an attractive and viable pathway for practical applications addressing the pressing challenges of climate and energy issues.

摘要

为了在低纬度或热带地区维持舒适的室内生活环境,人类在空调中消耗大量电能,导致大量的二氧化碳排放。被动式日间辐射冷却(PDRC)通过大气透明窗口(8-13微米)将热量散发到外层空间,使物体在白天无需任何能量消耗即可降温,这一技术已引起广泛关注。然而,普通PDRC材料的实际应用受到其光学选择性差和高反射银背衬的阻碍。此外,具有复杂结构和优异性能的人工光子发射器的可用性也因其高成本而受到限制。在此,展示了一种新型的多层棱柱形光子超材料薄膜,该薄膜无需任何银反射器,易于扩展且可通过卷对卷方法生产,在0.3-2.5微米波段具有约96.4%的太阳光反射率,在中红外(IR)(8-13微米)波段具有约97.2%的发射率。在平均太阳强度约为920瓦/平方米的情况下,白天它的平均温度比环境温度低6.8摄氏度,理论上产生的辐射冷却功率为88.9瓦/平方米。此外,该薄膜具有优异的疏水性、卓越的柔韧性和强大的机械强度,为应对气候和能源问题的紧迫挑战提供了一条有吸引力且可行的实际应用途径。

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