| Literature DB >> 32500529 |
Huaixia Zhao1,2, Qiangqiang Sun1, Ji Zhou3, Xu Deng1, Jiaxi Cui1,2.
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.Entities:
Keywords: energy-saving; mechanoresponse; radiative cooling; silicone coatings; switchable cavitation
Year: 2020 PMID: 32500529 DOI: 10.1002/adma.202000870
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849