Scinovex
article Open AccessTop 1% cited

Radiative Cooling: Principles, Progress, and Potentials

Advanced Science · 2016 · Vol. 3(7) · pp. 1500360–1500360
Md Muntasir HossainMiṅ Gu

Abstract

The recent progress on radiative cooling reveals its potential for applications in highly efficient passive cooling. This approach utilizes the maximized emission of infrared thermal radiation through the atmospheric window for releasing heat and minimized absorption of incoming atmospheric radiation. These simultaneous processes can lead to a device temperature substantially below the ambient temperature. Although the application of radiative cooling for nighttime cooling was demonstrated a few decades ago, significant cooling under direct sunlight has been achieved only recently, indicating its potential as a practical passive cooler during the day. In this article, the basic principles of radiative cooling and its performance characteristics for nonradiative contributions, solar radiation, and atmospheric conditions are discussed. The recent advancements over the traditional approaches and their material and structural characteristics are outlined. The key characteristics of the thermal radiators and solar reflectors of the current state-of-the-art radiative coolers are evaluated and their benchmarks are remarked for the peak cooling ability. The scopes for further improvements on radiative cooling efficiency for optimized device characteristics are also theoretically estimated.

Thermal Radiation and Cooling TechnologiesOptical properties and cooling technologies in crystalline materialsAtmospheric aerosols and cloudsRadiative coolingRadiative transferInfrared windowPassive coolingThermal radiationThermalRadiationEnvironmental scienceInfraredRadiant cooling

Funding

  • Science and Industry Endowment Fund
Citations
739
FWCI
45.20
field-weighted impact
References
80
Percentile
100%
vs. same field & year
Citations per year
Cited by
References
The radiative cooling of selective surfaces
Solar Energy · 1975 · 559 citations
Radiative Cooling: Principles, Progress, and Potentials
Advanced Science · 2016 · 739 citations
Related articles
Radiative Cooling: Principles, Progress, and Potentials
Advanced Science · 2016 · 739 citations
The radiative cooling of selective surfaces
Solar Energy · 1975 · 559 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.