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The stabilization of cyanonaphthalene by fast radiative cooling
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Correction to "Pyramid Textured Photonic Films with High-Refractive Index Fillers for Efficient Radiative Cooling". [PDF]
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Consistent Assessment of the Cooling Performance of Radiative Cooling Materials
Radiative cooling has emerged as a passive cooling strategy and has attracted significant attention, particularly over the past five years. While many researchers have designed various radiative cooling materials and evaluated their cooling performance ...
Xiangyu Li, Kunlang Bu
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Radiative Cooling: Principles, Progress, and Potentials
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.
Md Muntasir Hossain, Min Gu
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Colored radiative cooling: How to balance color display and radiative cooling performance
International Journal of Thermal Sciences, 2021Abstract Radiative cooling, which aims at cooling objects by radiating heat into the outer space through the atmosphere window, has garnered wide interests since it is a passive refrigeration mode without extra energy consumption. However, most of the proposed structures, to maximize the cooling performance, are in white color, which may limit their ...
Wang Xi +4 more
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Characterization of radiative cooling materials
Nature ProtocolsRadiative cooling is a renewable cooling mechanism with diverse applications. Many radiative cooling materials have been developed (e.g., fabrics, paints and building materials). It is, however, difficult to compare their properties because of a lack of standardized and transparent performance-evaluation systems.
Zhuning Wang, Sijie Pian, Yaoguang Ma
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Radiative cooling of fullerenes
The Journal of Chemical Physics, 1996We have measured the metastable fragmentation of fullerene ions in molecular beams. The rates are significantly smaller than the evaporative ensemble prediction, consistent with an alternative cooling mechanism through emission of electromagnetic radiation.
K. Hansen, E. E. B. Campbell
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