Nanophotonics (Jan 2024)

Enhanced radiative cooling with Janus optical properties for low-temperature space cooling

  • Yang Meng,
  • Zeng Yijun,
  • Du Qingyuan,
  • Sun Haoyang,
  • Yin Yingying,
  • Yan Xiantong,
  • Jiang Mengnan,
  • Pan Chin,
  • Sun Dazhi,
  • Wang Zuankai

DOI
https://doi.org/10.1515/nanoph-2023-0641
Journal volume & issue
Vol. 13, no. 5
pp. 629 – 637

Abstract

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Passive daytime radiative cooling that could provide sub-ambient cooling emerges as a promising technology to reduce household energy consumption. Nonetheless, prevailing studies are predominantly focused on surface cooling, often overlooking its adaptability to enclosed spaces with active cooling technologies. Here we present a multilayer radiative cooling film (J-MRC) with Janus optical properties in the mid-infrared region, consisting of the nanoporous polyethylene films, the polyethylene oxide film, and silver nanowires. The top side of the J-MRC functions as a conventional radiative cooling material to supply sub-ambient surface cooling, while the bottom side with low mid-infrared emissivity transfers limited heat via thermal radiation to the low-temperature enclosures. Our experiments validate that the J-MRC possesses an enhanced space cooling performance in comparison to the conventional radiative cooling film. This work provides a valuable design concept for radiative cooling materials, thereby expanding their practical scenarios and contributing to reduce the carbon emission.

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