Chae Dongwoo, Kim Mingeon, Jung Pil-Hoon, Son Soomin, Seo Junyong, Liu Yuting, Lee Bong Jae, Lee Heon
Department of Materials Science and Engineering , Korea University , Anam-ro 145 , Seongbuk-gu, Seoul 136-713 , Republic of Korea.
Department of Mechanical Engineering , Korea Advanced Institute of Science and Technology , Daejeon 34141 , Republic of Korea.
ACS Appl Mater Interfaces. 2020 Feb 19;12(7):8073-8081. doi: 10.1021/acsami.9b16742. Epub 2020 Feb 7.
Daytime radiative coolers are used to pump excess heat from a target object into a cold exterior space without energy consumption. Radiative coolers have become attractive cooling options. In this study, a daytime radiative cooler was designed to have a selective emissive property of electromagnetic waves in the atmospheric transparency window of 8-13 μm and preserve low solar absorption for enhancing radiative cooling performance. The proposed daytime radiative cooler has a simple multilayer structure of inorganic materials, namely, AlO, SiN, and SiO, and exhibits high emission in the 8-13 μm region. Through a particle swarm optimization method, which is based on an evolutionary algorithm, the stacking sequence and thickness of each layer were optimized to maximize emissions in the 8-13 μm region and minimize the cooling temperature. The average value of emissivity of the fabricated inorganic radiative cooler in the 8-13 μm range was 87%, and its average absorptivity in the solar spectral region (0.3-2.5 μm) was 5.2%. The fabricated inorganic radiative cooler was experimentally applied for daytime radiative cooling. The inorganic radiative cooler can reduce the temperature by up to 8.2 °C compared to the inner ambient temperature during the daytime under direct sunlight.
日间辐射冷却器用于在不消耗能量的情况下将目标物体的多余热量泵入寒冷的外部空间。辐射冷却器已成为有吸引力的冷却选择。在本研究中,设计了一种日间辐射冷却器,使其在8-13μm的大气透明窗口具有电磁波的选择性发射特性,并保持低太阳吸收率以提高辐射冷却性能。所提出的日间辐射冷却器具有简单的无机材料多层结构,即AlO、SiN和SiO,并在8-13μm区域表现出高发射率。通过基于进化算法的粒子群优化方法,对各层的堆叠顺序和厚度进行了优化,以最大化8-13μm区域的发射率并最小化冷却温度。制备的无机辐射冷却器在8-13μm范围内的发射率平均值为87%,其在太阳光谱区域(0.3-2.5μm)的平均吸收率为5.2%。将制备的无机辐射冷却器进行了日间辐射冷却的实验应用。在白天直射阳光下,无机辐射冷却器相比内部环境温度最多可降低8.2°C。