High-performance subambient radiative cooling enabled by optically selective and thermally insulating polyethylene aerogel

Leroy A.; Bhatia B.; Kelsall C.C.; Castillejo-Cuberos A.; Di Capua M.H.; Zhao L.; Zhang L.; Guzman A.M.; Wang E.N.

Abstract

Recent progress in passive radiative cooling technologies has substantially improved cooling performance under direct sunlight. Yet, experimental demonstrations of daytime radiative cooling still severely underperform in comparison with the theoretical potential due to considerable solar absorption and poor thermal insulation at the emitter. In this work, we developed polyethylene aerogel (PEA)-a solar-reflecting (92.2% solar weighted reflectance at 6 mm thick), infrared-transparent (79.9% transmittance between 8 and 13 mu m at 6 mm thick), and low-thermal-conductivity (k(PEA) = 28 mW/mK) material that can be integrated with existing emitters to address these challenges. Using an experimental setup that includes the custom-fabricated PEA, we demonstrate a daytime ambient temperature cooling power of 96 W/m(2) and passive cooling up to 13 degrees C below ambient temperature around solar noon. This work could greatly improve the performance of existing passive radiative coolers for air conditioning and portable refrigeration applications.

Más información

Título según WOS: High-performance subambient radiative cooling enabled by optically selective and thermally insulating polyethylene aerogel
Título según SCOPUS: MATERIALS SCIENCE High-performance subambient radiative cooling enabled by optically selective and thermally insulating polyethylene aerogel
Título de la Revista: SCIENCE ADVANCES
Volumen: 5
Número: 10
Editorial: AMER ASSOC ADVANCEMENT SCIENCE
Fecha de publicación: 2019
Idioma: English
DOI:

10.1126/sciadv.aat9480

Notas: ISI, SCOPUS