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Published on: July 31, 2016
Colored Reflective Paints with Doped ZnO Fillers for High Cooling Capabilities
Shaojun Xu1, Yan Peng1, Zhongqiu Tong1
1Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093, China.
Abstract:
Colored reflective paints are attractive for building cooling and aesthetics. However, coloration of the paints could paradoxically increase the solar absorption, decreasing the cooling capabilities. In this work, we introduced a novel coloration strategy by using metal ion-doped ZnO nanoparticles as fillers to achieve chromatic paints with high cooling capabilities. With inorganic binder of aqueous K2SiO3 solution, it observed that the Mg-doping enabled the paint to deliver a high cooling power of 103.8 W/m2, while Fe-, Cu- and Co-doping strategies created pale buff (L* = 84.6, a* = 2.9, b* = 16.3), olive green (L* = 66.8, a* = -7.9, b* = 18.7), and pale gray (L* = 81.5, a* = -0.6, b* = 2.1) colors with highly remained cooling power of 83.9, 75.4 and 61.1 W/m2, respectively. Physical characterizations indicated that the maintained crystal structures and similar band gaps could be the main reasons for high cooling capabilities of the colored paints. In addition, the high temperature differences and strong adhesion capabilities of paints on concrete substrates enabled them to present promising cooling energy savings for buildings.
