Tian Qing, Tu Xitao, Yang Liu, Liu Haibo, Zhou Yubo, Xing Yuxin, Chen Zhe, Fan Shanhui, Evans Julian, He Sailing
Centre for Optical and Electromagnetic Research, National Engineering Research Center for Optical Instruments, College of Optical Science and Engineering, Zhejiang University, Hangzhou, 310058, China.
Ningbo Research Institute, Zhejiang University, Ningbo, 315100, China.
Small. 2022 Dec;18(51):e2205091. doi: 10.1002/smll.202205091. Epub 2022 Nov 3.
Metal-free polymer daytime radiative cooling coatings with hierarchical eye-like air pores are proposed and fabricated with a super-large-scale film-stretching method. The hierarchically porous film (HPF) can be further coated with polymethyl methacrylate (PMMA) micro-hemispheres, forming coated HPF (cHPF), which do not dramatically change the optical or thermal properties. The cHPF is slightly better with a lower solar absorptivity (2.4%) and a higher thermal emissivity over the atmospheric transparency window (90.1%). The low solar absorptivity is due to the strong scattering of the hierarchical eye-like air pores, while the molecular vibrations and the focusing effect of the PMMA micro-hemispheres contribute to the high emissivity. An average mid-day temperature reduction of 7.92 °C is achieved relative to the air temperature, and the average cooling power reaches 116.0 W m , which are much better than the cooling performances of the commercial cooling cushion. During the day, the cHPF-covered simulated building is up to 6.47 and 4.84 °C cooler than the ambient and the white painted counterpart, respectively. The film is durable and resistant to chemical etching, and very promising to use globally, especially in warm and tropical regions.
采用超大规模薄膜拉伸法制备并提出了具有分级眼状气孔的无金属聚合物日间辐射冷却涂层。分级多孔薄膜(HPF)可进一步涂覆聚甲基丙烯酸甲酯(PMMA)微半球,形成涂覆HPF(cHPF),其光学或热性能不会发生显著变化。cHPF的性能稍好,具有较低的太阳吸收率(2.4%)和在大气透明窗口上较高的热发射率(90.1%)。低太阳吸收率归因于分级眼状气孔的强散射,而PMMA微半球的分子振动和聚焦效应有助于提高发射率。相对于气温,实现了平均中午温度降低7.92°C,平均冷却功率达到116.0 W m,这比商用冷却垫的冷却性能要好得多。白天,覆盖cHPF的模拟建筑分别比环境温度和白色涂漆建筑低6.47°C和4.84°C。该薄膜耐用且耐化学蚀刻,在全球范围内具有很大的应用前景,特别是在温暖和热带地区。