Zhou Wenlong, Ma Xiaohan, Liu Mai, Niu Jun, Wang Shengxing, Li Shijie, Wang Wei, Fan Yongzhe
School of Materials Science and Engineering, Hebei University of Technology, Tianjin 300130, China.
School of Precision Instrument and Optoelectronics Engineering, Tianjin University, Tianjin 300072, China.
ACS Appl Mater Interfaces. 2024 Sep 4;16(35):46703-46718. doi: 10.1021/acsami.4c06827. Epub 2024 Aug 23.
Passive daytime radiative cooling (PDRC) technology has received a great deal of attention in the field of energy efficiency and environmental protection as a sustainable technology and a large-scale and promising solution to mitigate the environmental impact of global warming. In this study, we prepared PDRC material by combining FEP with modified AlO particles and using the method of spray combined with phase separation. The synergistic effect of the formed surface micronanostructures, combined with the molecular vibration of FEP and the phonon polarization resonance of AlO, further improves the optical performance of the PDRC coating. The PDRC coating has an average reflectivity of 0.96 in the solar spectral band (0.3-2.5 μm) and an average emissivity of 0.963 in the atmospheric window band ((8-13 μm). In addition, the PDRC coating had good hydrophobicity, and its water contact angle (WAC) reached 159.3°. Under direct sunlight conditions, PDRC materials have a good temperature drop (4.9 °C) compared to ambient temperatures and radiative cooling power (81.2 W/m). The prepared coating maintains superhydrophobicity and excellent cooling performance when soaked in solutions of different pH values and UV radiation, which was of great significance for sustainable applications. Our work provides a form of long-term cooling that can be effectively implemented in green and energy-efficient buildings.
被动式日间辐射冷却(PDRC)技术作为一种可持续技术以及缓解全球变暖环境影响的大规模且有前景的解决方案,在能源效率和环境保护领域受到了广泛关注。在本研究中,我们通过将氟乙烯丙烯共聚物(FEP)与改性氧化铝(AlO)颗粒相结合,并采用喷雾结合相分离的方法制备了PDRC材料。所形成的表面微纳结构的协同效应,结合FEP的分子振动和AlO的声子极化共振,进一步提高了PDRC涂层的光学性能。该PDRC涂层在太阳光谱波段(0.3 - 2.5μm)的平均反射率为0.96,在大气窗口波段(8 - 13μm)的平均发射率为0.963。此外,PDRC涂层具有良好的疏水性,其水接触角(WAC)达到159.3°。在直射阳光条件下,与环境温度相比,PDRC材料具有良好的降温效果(4.9°C)和辐射冷却功率(81.2 W/m)。制备的涂层在浸泡于不同pH值的溶液和紫外线辐射下仍保持超疏水性和优异的冷却性能,这对于可持续应用具有重要意义。我们的工作提供了一种可在绿色节能建筑中有效实施的长期冷却形式。