Zhu Jiliang, An Zhiqiang, Zhang Anxun, Du Yike, Zhou Xuan, Geng Yizhao, Chen Guifeng
Department of Applied Physics, Hebei University of Technology, Tianjin 300401, P. R. China.
School of Materials Science and Engineering, Hebei University of Technology, Tianjin 300132, P. R. China.
iScience. 2022 Mar 21;25(4):104126. doi: 10.1016/j.isci.2022.104126. eCollection 2022 Apr 15.
Porous polymer radiative cooling coatings (PPCs) have attracted attention due to their ability of drawing and radiating heat from a hot object into the outer space, without any energy consumption. However, high performance of PPCs has yet to be achieved and the large-scale production of radiative cooling technology is still facing high cost and complex manufacturing constraints. Here, we propose a simple, inexpensive, scalable approach to fabricate anisotropic (P(VdF-HFP)) PPCs (TPCs) by dissolution and diffusion between solvent and non-solvent-induced phase separation. By adjusting the porosity, pore size, and geometry, a sub-ambient temperature drop of ∼6.3°C in daytime and 10.1°C in night-time was achieved under a solar reflectance of 0.92 and an atmospheric window emittance of 0.96. A thermoelectric generator with an output voltage of almost zero reached 7 V/m after coating with TPCs. This could provide a convenient, economical, and environment-friendly way for PPCs materials toward efficient cooling and power generations.
多孔聚合物辐射冷却涂层(PPCs)因其能够在不消耗任何能量的情况下,将热物体的热量吸收并辐射到外层空间的能力而受到关注。然而,PPCs的高性能尚未实现,辐射冷却技术的大规模生产仍面临高成本和复杂制造的限制。在此,我们提出一种简单、廉价、可扩展的方法,通过溶剂和非溶剂诱导相分离之间的溶解和扩散来制备各向异性的聚(偏氟乙烯-六氟丙烯)PPCs(TPCs)。通过调整孔隙率、孔径和几何形状,在太阳反射率为0.92和大气窗口发射率为0.96的条件下,白天实现了约6.3°C的亚环境温度下降,夜间实现了10.1°C的亚环境温度下降。用TPCs涂层后,输出电压几乎为零的热电发电机达到了7 V/m。这可为PPCs材料实现高效冷却和发电提供一种方便、经济且环保的方式。