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Colored and paintable bilayer coatings with high solar-infrared reflectance for efficient cooling

机译:具有高太阳红外反射率的彩色和可涂漆的双层涂层,用于高效冷却

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Solar reflective and thermally emissive surfaces offer a sustainable way to cool objects under sunlight. However, white or silvery reflectance of these surfaces does not satisfy the need for color. Here, we present a paintable bilayer coating that simultaneously achieves color and radiative cooling. The bilayer comprises a thin, visible-absorptive layer atop a nonabsorptive, solar-scattering underlayer. The top layer absorbs appropriate visible wavelengths to show specific colors, while the underlayer maximizes the reflection of near-to-short wavelength infrared (NSWIR) light to reduce solar heating. Consequently, the bilayer attains higher NSWIR reflectance (by 0.1 to 0.51) compared with commercial paint monolayers of the same color and stays cooler by as much as 3.0° to 15.6°C under strong sunlight. High NSWIR reflectance of 0.89 is realized in the blue bilayer. The performances show that the bilayer paint design can achieve both color and efficient radiative cooling in a simple, inexpensive, and scalable manner.
机译:太阳能反光和热发光表面提供可持续的方式来在阳光下冷却物体。然而,这些表面的白色或银色反射率不满足颜色的需要。在这里,我们提出了一种可涂漆的双层涂层,同时实现颜色和辐射冷却。双层包括薄,可见吸收层,在非吸收的太阳散射底层上。顶层吸收适当的可见波长以显示特定颜色,而底层最大化近短波长度红外(NSWIR)光以降低太阳能加热的反射。因此,与相同颜色的商业涂料单层相比,双层达到较高的Nswir反射率(0.1至0.51),并在强大的阳光下将冷却器保持多达3.0°至15.6°C。在蓝色双层体内实现了0.89的高Nssir反射率。性能表明,双层涂料设计可以以简单,廉价和可扩展的方式实现颜色和高效的辐射冷却。

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