Wu Jingyu, Shi Yun, Wen Xiaolu, Zhang Wenliang, Zhao Dandan, Liu Liujun, Duan Jiufang
MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University, Beijing 100083, China.
ACS Appl Mater Interfaces. 2025 Jan 15;17(2):3866-3875. doi: 10.1021/acsami.4c15590. Epub 2024 Dec 31.
Recently, transparent wood (TW) has been considered for many energy-efficient building products, such as windows and decorations. However, the existing TW still faces issues with size and thickness, as well as problems with functional fillers affecting the optical and mechanical properties of TW, which limits its wide application in the window products. In this study, a wood composite material (WCM) with good optical, mechanical, and thermal insulation and UV-shielding properties was prepared by using delignified wood (DW), methyl methacrylate (MMA), and 4-vinylphenylboric acid (VPBA). Compared with NaClO delignification, peracetic acid (PAA) preserves hemicellulose and a more stable pore structure, which facilitates the filling of polymers into the DW template, resulting in the preparation of more extensive and thicker TW. VPBA, as a functional raw material for UV shielding, on the one hand, improves the interfacial compatibility of the TW, thus improving the optical properties (transmittance of about 90%, haze of about 55%) and mechanical properties (64.5 MPa). On the other hand, WCM was found to effectively block UV-C, UV-B (about 100%), and UV-A (about 90%) radiation while maintaining sufficient visible light transmittance. In addition, as an insulating window, WCM has low thermal conductivity and can maintain a high temperature for a long time after the loss of solar radiation, which is an ideal thermal insulation material and is expected to become a potential substitute for conventional glass.
最近,透明木材(TW)已被用于许多节能建筑产品,如窗户和装饰材料。然而,现有的TW仍面临尺寸和厚度方面的问题,以及功能填料影响TW光学和机械性能的问题,这限制了其在窗户产品中的广泛应用。在本研究中,通过使用脱木质素木材(DW)、甲基丙烯酸甲酯(MMA)和4-乙烯基苯硼酸(VPBA)制备了一种具有良好光学、机械、隔热和紫外线屏蔽性能的木材复合材料(WCM)。与次氯酸钠脱木质素相比,过氧乙酸(PAA)能保留半纤维素和更稳定的孔结构,这有利于聚合物填充到DW模板中,从而制备出更宽和更厚的TW。VPBA作为一种紫外线屏蔽功能原料,一方面改善了TW的界面相容性,从而提高了光学性能(透光率约90%,雾度约55%)和机械性能(64.5MPa)。另一方面,发现WCM能有效阻挡UV-C、UV-B(约100%)和UV-A(约90%)辐射,同时保持足够的可见光透过率。此外,作为一种隔热窗户,WCM具有低导热性,在失去太阳辐射后能长时间保持高温,是一种理想的隔热材料,有望成为传统玻璃的潜在替代品。