Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing, China.
China National Bamboo Research Center, Hangzhou, China.
Int J Biol Macromol. 2022 Nov 1;220:159-174. doi: 10.1016/j.ijbiomac.2022.08.084. Epub 2022 Aug 15.
With the increasing demands on sustainability in the material science and engineering landscape, the use of wood, a renewable and biodegradable material, for new material development has drawn increasing attentions in the materials science community. To promote the development of new wood-based materials, it is critical to understanding not only wood's hierarchical structure from molecule to macroscale level, but also the interactions of wood with other materials and chemicals upon modification and functionalization. In this review, we discuss the recent advances in the Raman imaging technique, a new approach that combines spectroscopy and microscopy, in wood characterization and structural evolution monitoring during functionalization. We introduce the principles of Raman spectroscopy and common Raman instrumentations. We survey the use of traditional Raman spectroscopy for lignocellulosic material characterizations including cellulose crystallinity determination, holocellulose discrimination, and lignin substructure evaluation. We briefly review the recent studies on wood property enhancement and functional wood-based material development through wood modification including thermal treatment, acetylation, furfurylation, methacrylation, delignification. Subsequently, we highlight the use of the Raman imaging for visualization, spatial and temporal distribution of wood cell wall structure, as well as the microstructure evolution upon functionalization. Finally, we discuss the future prospects of the field.
随着材料科学与工程领域对可持续性要求的不断提高,木材作为一种可再生和可生物降解的材料,在新材料开发中的应用引起了材料科学界越来越多的关注。为了促进新型木材基材料的发展,关键是不仅要了解木材从分子到宏观尺度的层次结构,还要了解木材在改性和功能化过程中与其他材料和化学物质的相互作用。在这篇综述中,我们讨论了拉曼成像技术的最新进展,这是一种结合光谱学和显微镜学的新方法,用于木材功能化过程中的特征化和结构演化监测。我们介绍了拉曼光谱学的原理和常见的拉曼仪器。我们调查了传统拉曼光谱在木质纤维素材料特性中的应用,包括纤维素结晶度的测定、全纤维素的鉴别和木质素亚结构的评价。我们简要回顾了通过木材改性(包括热处理、乙酰化、糠醛化、甲基丙烯酰化、脱木质素)来增强木材性能和开发功能性木质基材料的最新研究。随后,我们强调了拉曼成像在可视化、木材细胞壁结构的空间和时间分布以及功能化过程中的微观结构演化方面的应用。最后,我们讨论了该领域的未来前景。