Department of Materials Science and Engineering, University of Maryland, College Park, MD, 20742, USA.
Center for Materials Innovation, University of Maryland, College Park, MD, 20742, USA.
Nat Commun. 2020 Jul 31;11(1):3836. doi: 10.1038/s41467-020-17513-w.
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 mK) 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) 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.
如今,节能建筑材料对于降低室内能源消耗非常重要,因为它们可以实现更好的隔热效果,促进有效阳光采集,并提供舒适的室内照明。在这里,我们展示了一种新颖的、可扩展的美观透明木材(称为美观木材),它具有综合的美学特性(例如完整的木纹)、出色的光学性能(平均透光率约为 80%,雾度约为 93%)、良好的紫外线阻挡能力和低导热系数(0.24 W mK),这是基于空间选择性脱木质素和环氧树脂渗透的工艺。此外,美观木材的快速制造工艺和机械强度(纵向拉伸强度为 91.95 MPa,韧性为 2.73 MJ m)使其具有良好的可扩展性(320mm×170mm×0.6mm),同时节省了大量的时间和能源。美观木材在节能建筑应用方面具有巨大的潜力,例如玻璃天花板、屋顶、透明装饰和室内面板。