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Radiative sky cooling: Fundamental principles, materials, and applications

Applied Physics Reviews, ISSN: 1931-9401, Vol: 6, Issue: 2
2019
  • 640
    Citations
  • 0
    Usage
  • 489
    Captures
  • 5
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    640
    • Citation Indexes
      638
    • Patent Family Citations
      2
      • 2
  • Captures
    489
  • Mentions
    5
    • News Mentions
      4
      • 4
    • Blog Mentions
      1
      • 1

Most Recent Blog

Novel cellulose aerogel radiative coolers for building applications

The development of efficient cooling technology based on environmentally friendly and biobased materials is crucial to many day-to-day activities. A novel, highly efficient cellulose nanocrystal aerogel radiative cooler acts as a dual-function thermal insulator and daytime passive radiant cooler. These aerogel coolers can save on average more than 35% in cooling energy consumption and they are cap

Most Recent News

Thermoelectric device generates energy at night

The device, say the researchers, generates energy by harnessing the cold darkness of space using a passive cooling mechanism - known as radiative sky cooling

Review Description

Radiative sky cooling cools an object on the earth by emitting thermal infrared radiation to the cold universe through the atmospheric window (8-13 μm). It consumes no electricity and has great potential to be explored for cooling of buildings, vehicles, solar cells, and even thermal power plants. Radiative sky cooling has been explored in the past few decades but limited to nighttime use only. Very recently, owing to the progress in nanophotonics and metamaterials, daytime radiative sky cooling to achieve subambient temperatures under direct sunlight has been experimentally demonstrated. More excitingly, the manufacturing of the daytime radiative sky cooling material by the roll-to-roll process makes large-scale deployment of the technology possible. This work reviews the fundamental principles of radiative sky cooling as well as the recent advances, from both materials and systems point of view. Potential applications in different scenarios are reviewed with special attention to technology viability and benefits. As the energy situation and environmental issues become more and more severe in the 21st century, radiative sky cooling can be explored for energy saving in buildings and vehicles, mitigating the urban heat island effect, resolving water and environmental issues, achieving more efficient power generation, and even fighting against the global warming problem.

Bibliographic Details

Dongliang Zhao; Ablimit Aili; Yao Zhai; Xiaobo Yin; Ronggui Yang; Shaoyu Xu; Gang Tan

AIP Publishing

Physics and Astronomy

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