材料科学
韧性
透射率
计算机科学
复合材料
极限抗拉强度
制作
高效能源利用
可扩展性
低能
建筑工程
薄雾
热的
环境科学
光电子学
病理
工程类
气象学
物理
电气工程
原子物理学
数据库
医学
替代医学
作者
Ruiyu Mi,Chaoji Chen,Tobias Keplinger,Yong Pei,Shuaiming He,Dapeng Liu,Jianguo Li,Jiaqi Dai,Emily Hitz,Bao Yang,Ingo Burgert,Liangbing Hu
标识
DOI:10.1038/s41467-020-17513-w
摘要
Abstract Nowadays, energy-saving building materials are important for reducing indoor energy consumption by enabling better thermal insulation, promoting effective sunlight harvesting and offering comfortable indoor lighting. Here, we demonstrate a novel scalable aesthetic transparent wood (called aesthetic wood hereafter) with combined aesthetic features (e.g. intact wood patterns), excellent optical properties (an average transmittance of ~ 80% and a haze of ~ 93%), good UV-blocking ability, and low thermal conductivity (0.24 W m −1 K −1 ) based on a process of spatially selective delignification and epoxy infiltration. Moreover, the rapid fabrication process and mechanical robustness (a high longitudinal tensile strength of 91.95 MPa and toughness of 2.73 MJ m −3 ) of the aesthetic wood facilitate good scale-up capability (320 mm × 170 mm × 0.6 mm) while saving large amounts of time and energy. The aesthetic wood holds great potential in energy-efficient building applications, such as glass ceilings, rooftops, transparent decorations, and indoor panels.
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