Wang Tong, Wu Yi, Shi Lan, Hu Xinhua, Chen Min, Wu Limin
Department of Materials Science and State Key Laboratory of Molecular Engineering of Polymers, Fudan University, 200433, Shanghai, China.
Nat Commun. 2021 Jan 14;12(1):365. doi: 10.1038/s41467-020-20646-7.
All-day passive radiative cooling has recently attracted tremendous interest by reflecting sunlight and radiating heat to the ultracold outer space. While some progress has been made, it still remains big challenge in fabricating highly efficient and low-cost radiative coolers for all-day and all-climates. Herein, we report a hierarchically structured polymethyl methacrylate (PMMA) film with a micropore array combined with random nanopores for highly efficient day- and nighttime passive radiative cooling. This hierarchically porous array PMMA film exhibits sufficiently high solar reflectance (0.95) and superior longwave infrared thermal emittance (0.98) and realizes subambient cooling of ~8.2 °C during the night and ~6.0 °C to ~8.9 °C during midday with an average cooling power of ~85 W/m under solar intensity of ~900 W/m, and promisingly ~5.5 °C even under solar intensity of ~930 W/m and relative humidity of ~64% in hot and moist climate. The micropores and nanopores in the polymer film play crucial roles in enhancing the solar reflectance and thermal emittance.
全天候被动辐射冷却最近通过反射阳光并将热量辐射到超冷的外层空间而引起了极大的关注。虽然已经取得了一些进展,但制造适用于全天候和全气候的高效低成本辐射冷却器仍然是一个巨大的挑战。在此,我们报道了一种具有微孔阵列和随机纳米孔相结合的分层结构聚甲基丙烯酸甲酯(PMMA)薄膜,用于高效的白天和夜间被动辐射冷却。这种分层多孔阵列PMMA薄膜具有足够高的太阳反射率(0.95)和优异的长波红外热发射率(0.98),在夜间实现了约8.2°C的亚环境冷却,在中午实现了约6.0°C至8.9°C的冷却,在约900 W/m²的太阳强度下平均冷却功率约为85 W/m²,并且在炎热潮湿气候下,即使在约930 W/m²的太阳强度和约64%的相对湿度下,有望实现约5.5°C的冷却。聚合物薄膜中的微孔和纳米孔在提高太阳反射率和热发射率方面起着关键作用。