Acrylic membrane doped with Al2O3 nanoparticle resonators for zero-energy consuming radiative cooling

  • Liu, Yuting
  • Son, Soomin
  • Chae, Dongwoo
  • Jung, Pil-Hoon
  • Lee, Heon
Citations

WEB OF SCIENCE

113
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SCOPUS

115

초록

Passive daytime radiative cooling plays a significant role in various cooling operations, which helps reducing electricity consumption and decreasing electricity demand. This work presents a new double-layered radiative cooling structure composed of a transparent dipentaerythritol penta-hexa-acrylate (DPHA) top layer, modified using Al2O3 nanoparticles (NPs) as resonators, and a metallic Ag bottom layer (DPHA@Al2O3 NPs/Ag). The DPHA@Al2O3 NPs layer is prepared through a fast photopolymerization process. The prepared DPHA@Al2O3 NPs/Ag system exhibits a solar reflectivity of 0.9465 and long-wave infrared (the so-called atmospheric transparency window) emissivity of 0.9163. The computed radiative cooling power at 27 degrees C can reach up to 106.43 W m(-2). A subambient temperature drop of 10.35 degrees C is measured from 13:00 to 16:00 p.m. in Seoul, Korea, when using the proposed material as radiative cooler. Since this structure can be applied on flexible substrate, this has far-reaching implications for future applications in wearable devices.

키워드

Passive daytime radiative coolingNanoparticle resonatorsThermal stabilityPhotopolymerizationSubambient temperature dropSEPARATIONDESIGN
제목
Acrylic membrane doped with Al2O3 nanoparticle resonators for zero-energy consuming radiative cooling
저자
Liu, YutingSon, SoominChae, DongwooJung, Pil-HoonLee, Heon
DOI
10.1016/j.solmat.2020.110561
발행일
2020-08-15
유형
Article
저널명
Solar Energy Materials and Solar Cells
213