Xia Qinqin, Chen Chaoji, Li Tian, He Shuaiming, Gao Jinlong, Wang Xizheng, Hu Liangbing
Department of Materials Science and Engineering, University of Maryland, College Park, MD 20742, USA.
Sci Adv. 2021 Jan 27;7(5). doi: 10.1126/sciadv.abd7342. Print 2021 Jan.
Transparent wood is considered a promising structural and light management material for energy-efficient engineering applications. However, the solution-based delignification process that is used to fabricate transparent wood generally consumes large amounts of chemicals and energy. Here, we report a method to produce optically transparent wood by modifying the wood's lignin structure using a solar-assisted chemical brushing approach. This method preserves most of the lignin to act as a binder, providing a robust wood scaffold for polymer infiltration while greatly reducing the chemical and energy consumption as well as processing time. The obtained transparent wood (~1 mm in thickness) demonstrates a high transmittance (>90%), high haze (>60%), and excellent light-guiding effect over visible wavelength. Furthermore, we can achieve diverse patterns directly on wood surfaces using this approach, which endows transparent wood with excellent patternability. Combining its efficient, patternable, and scalable production, this transparent wood is a promising candidate for applications in energy-efficient buildings.
透明木材被认为是一种有前途的结构和光管理材料,可用于节能工程应用。然而,用于制造透明木材的基于溶液的脱木质素工艺通常会消耗大量化学品和能源。在此,我们报告了一种通过使用太阳能辅助化学刷涂方法改变木材的木质素结构来生产光学透明木材的方法。该方法保留了大部分木质素作为粘合剂,为聚合物渗透提供了坚固的木材支架,同时大大减少了化学品和能源消耗以及加工时间。所获得的透明木材(厚度约1毫米)在可见波长范围内具有高透射率(>90%)、高雾度(>60%)和优异的导光效果。此外,使用这种方法我们可以直接在木材表面实现多种图案,这赋予了透明木材优异的图案可加工性。结合其高效、可图案化和可扩展的生产方式,这种透明木材是节能建筑应用的一个有前途的候选材料。