Structured fluids as colorful paintable radiative coolers

  • Kim, Hyeon Ho; 
  • Kwak, Soyul; 
  • Lee, Jaewon; 
  • Im, Eunji; 
  • Raman, Aaswath P.; 
  • ... Lee, Seungwoo
Citations

WEB OF SCIENCE

14
Citations

SCOPUS

15

초록

Radiative cooling has emerged as a promising materials-driven approach to enabling passive cooling for terrestrial structures. The prevalent wavelength-selective, solar absorption-driven colorization strategies have hindered cooling performances, especially during the daytime. In this study, we present a structured fluids platform that can simultaneously achieve extremely low absorption across the solar spectrum (z3%) z 3%) and preservation of omnidirectional, full-color characteristics. In addition, it serves as an ideal broadband emitter in the infrared (IR) range, with an emissivity of up to 0.94. This enables sub-ambient ( 2 K) daytime radiative cooling with a power of 40 W/m2 2 on a reflective substrate. In addition, on an absorptive substrate, the structured fluids effectively cool the substrate by up to 9.5 K with a power of 120 W/m2. 2 . Furthermore, the exotic fluidity of structured fluids facilitates compatibility with scalable painting and molding, offering versatile and efficient solutions for sustainable energy-saving cooling applications beyond conventional radiative methods.

키워드

colloids; metamerism; photonic glass; radiative cooling; structured fluids; PHOTONIC CRYSTALS; TEMPERATURE
제목
Structured fluids as colorful paintable radiative coolers
저자
Kim, Hyeon Ho; Kwak, Soyul; Lee, Jaewon; Im, Eunji; Raman, Aaswath P.; Lee, Seungwoo
DOI
10.1016/j.xcrp.2024.102068
발행일
2024-07-17
유형
Article
저널명
Cell Reports Physical Science
권
5
호
7