Photonic structures in radiative cooling
  • Lee, Minjae
  • Kim, Gwansik
  • Jung, Yeongju
  • Pyun, Kyung Rok
  • Lee, Jinwoo
  • 외 2명
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초록

Radiative cooling is a passive cooling technology without any energy consumption, compared to conventional cooling technologies that require power sources and dump waste heat into the surroundings. For decades, many radiative cooling studies have been introduced but its applications are mostly restricted to nighttime use only. Recently, the emergence of photonic technologies to achieves daytime radiative cooling overcome the performance limitations. For example, broadband and selective emissions in mid-IR and high reflectance in the solar spectral range have already been demonstrated. This review article discusses the fundamentals of thermodynamic heat transfer that motivates radiative cooling. Several photonic structures such as multilayer, periodical, random; derived from nature, and associated design procedures were thoroughly discussed. Photonic integration with new functionality significantly enhances the efficiency of radiative cooling technologies such as colored, transparent, and switchable radiative cooling applications has been developed. The commercial applications such as reducing cooling loads in vehicles, increasing the power generation of solar cells, generating electricity, saving water, and personal thermal regulation are also summarized. Lastly, perspectives on radiative cooling and emerging issues with potential solution strategies are discussed.

키워드

Commercial VehiclesSolar CellsWaste HeatBroadband EmissionCooling TechnologyEnergy-consumptionIts ApplicationsPassive CoolingPerformance LimitationsPhotonic StructurePhotonics TechnologyPower SourcesRadiative CoolingEnergy UtilizationBROAD-BANDOPTICAL-PROPERTIESINFRARED EMISSIVITYATMOSPHERIC WATERHEAT DISSIPATIONTHERMAL EMITTERSOLAR-CELLTEMPERATUREPERFORMANCECOLOR
제목
Photonic structures in radiative cooling
저자
Lee, MinjaeKim, GwansikJung, YeongjuPyun, Kyung RokLee, JinwooKim, Byung-WookKo, Seung Hwan
DOI
10.1038/s41377-023-01119-0
발행일
2023-06
유형
Review
저널명
Light: Science and Applications
12
1
페이지
1 ~ 29