Zhao Bin, Xu Chengfeng, Jin Cheng, Lu Kegui, Chen Ken, Li Xiansheng, Li Lanxin, Pei Gang
Department of Thermal Science and Energy Engineering, University of Science and Technology of China, Hefei 230027, China.
Nanophotonics. 2023 Oct 18;13(5):583-591. doi: 10.1515/nanoph-2023-0511. eCollection 2024 Mar.
Passive radiative cooling is an energy-free cooling method by exchanging thermal radiation with the cold universe through the transparent atmospheric window. Spectrum tailoring of the radiative cooler is the key to daytime radiative cooling in previously reported works. In addition, radiative coolers with large-scale fabrication and self-cleaning characteristics should be further developed to improve their industrial applicability. Herein, we propose a bilayer radiative cooling coating with the superhydrophobic property and a scalable process, by covering TiO/acrylic resin paint with a silica/poly(vinylidene fluoride-co-hexafluoropropylene) (SiO/P(VdF-HFP)) composite masking layer. The strong Mie scattering in TiO/acrylic resin paint contributes to high solar reflection, while the SiO/P(VdF-HFP) masking layer is responsible for superhydrophobicity and synergetic solar reflection in the ultraviolet band, resulting in an effective solar reflectivity of 94.0 % with an average emissivity of 97.1 % and superhydrophobicity with a water contact angle of 158.9°. Moreover, the as-fabricated coating can be cooled to nearly 5.8 °C below the temperature of commercial white paint and 2.7 °C below the local ambient temperature under average solar irradiance of over 700 W m. In addition, yearly energy saving of 29.0 %-55.9 % can be achieved after the coating is applied to buildings in Phoenix, Hong Kong, Singapore, Guangzhou, and Riyadh.
被动辐射冷却是一种通过透明大气窗口与寒冷宇宙进行热辐射交换的无能源冷却方法。在先前报道的工作中,辐射冷却器的光谱剪裁是实现日间辐射冷却的关键。此外,应进一步开发具有大规模制造和自清洁特性的辐射冷却器,以提高其工业适用性。在此,我们提出一种具有超疏水性能和可扩展工艺的双层辐射冷却涂层,方法是在二氧化钛/丙烯酸树脂漆上覆盖一层二氧化硅/聚(偏二氟乙烯-共-六氟丙烯)(SiO₂/P(VdF-HFP))复合掩膜层。二氧化钛/丙烯酸树脂漆中的强米氏散射有助于实现高太阳反射率,而SiO₂/P(VdF-HFP)掩膜层则负责超疏水性以及在紫外波段的协同太阳反射,从而实现94.0%的有效太阳反射率、97.1%的平均发射率以及158.9°的水接触角超疏水性。此外,在超过700 W m²的平均太阳辐照下,制备的涂层可冷却至比商用白色涂料温度低近5.8°C,比当地环境温度低2.7°C。此外,将该涂层应用于凤凰城、香港、新加坡、广州和利雅得的建筑物后,每年可实现29.0%-55.9%的节能。