Switchable Cavitation in Silicone Coatings for Energy‐Saving Cooling and Heating

Huaixia Zhao(University of Electronic Science and Technology of China), Qiangqiang Sun(University of Electronic Science and Technology of China), Ji Zhou(University of Electronic Science and Technology of China), Xu Deng(University of Electronic Science and Technology of China), Jiaxi Cui(University of Electronic Science and Technology of China)
Advanced Materials
June 5, 2020
Cited by 277Open Access
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Abstract

Space cooling and heating currently result in huge amounts of energy consumption and various environmental problems. Herein, a switching strategy is described for efficient energy-saving cooling and heating based on the dynamic cavitation of silicone coatings that can be reversibly and continuously tuned from a highly porous state to a transparent solid. In the porous state, the coatings can achieve efficient solar reflection (93%) and long-wave infrared emission (94%) to induce a subambient temperature drop of about 5 °C in hot weather (≈35 °C). In the transparent solid state, the coatings allow active sunlight permeation (95%) to induce solar heating to raise the ambient temperature from 10 to 28 °C in cold weather. The coatings are made from commercially available, cheap materials via a facile, environmentally friendly method, and are durable, reversible, and patternable. They can be applied immediately to various existed objects including rigid substrates.


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