Wu Yan, Zhou Jichun, Huang Qiongtao, Yang Feng, Wang Yajing, Liang Xinmu, Li Jinzhu
College of Furnishings and Industrial Design, Nanjing Forestry University, Nanjing 210037, China.
Department of Research and Development Center, Yihua Lifestyle Technology Co., Ltd., Shantou 515834, China.
ACS Omega. 2020 Jan 22;5(4):1782-1788. doi: 10.1021/acsomega.9b02498. eCollection 2020 Feb 4.
Transparent wood (TW) was prepared by directly impregnating the wood cell wall and cavity with index-matched prepolymerized methyl methacrylate (MMA). In this process, lignin is retained compared with the preparation of transparent wood in the past, making the production faster and more energy-efficient. The innovation lies in that the prepared transparent wood retains the natural color and texture of the wood while transmitting light, especially under the illumination of a specific light source, which exist as the special visual effects. In order to enhance the practicality of the research and effectively expand the types of home decoration materials, six common wood species with different densities were selected in the experiment. Then the characteristics and mechanisms of wood, that is, color difference, light transmittance, microstructure, changes of chemical functional groups, and tensile strength, before and after PMMA impregnating were compared and analyzed. It is concluded that the light transmittance and mechanical properties of the wood have been improved, and a good synergistic effect between wood and PMMA has been confirmed by the analysis of scanning electron microscopy and infrared spectroscopy. The above highlights make pervious to transparent wood, which has the potential as an excellent functional decorative material.
透明木材(TW)是通过用折射率匹配的预聚合甲基丙烯酸甲酯(MMA)直接浸渍木材细胞壁和细胞腔制备而成。在此过程中,与过去制备透明木材相比,木质素得以保留,从而使生产速度更快且更节能。这项创新在于,制备出的透明木材在透光的同时保留了木材的天然颜色和纹理,尤其是在特定光源的照射下,呈现出特殊的视觉效果。为了提高研究的实用性并有效拓展家居装饰材料的种类,实验中选取了六种不同密度的常见木材。然后对聚甲基丙烯酸甲酯(PMMA)浸渍前后木材的特性和机理,即色差、透光率、微观结构、化学官能团变化以及拉伸强度进行了比较和分析。结果表明,木材的透光率和力学性能得到了改善,通过扫描电子显微镜和红外光谱分析证实了木材与PMMA之间具有良好的协同效应。上述亮点使得透明木材具有潜力成为一种优异的功能性装饰材料。