Qin Qin, Zeng Shiyi, Duan Gaigai, Liu Yanbo, Han Xiaoshuai, Yu Ruizhi, Huang Yong, Zhang Chunmei, Han Jingquan, Jiang Shaohua
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, International Innovation Center for Forest Chemicals and Materials, College of Materials Science and Engineering, Nanjing Forestry University, Nanjing 210037, China.
State Key Laboratory of New Textile Materials and Advanced Processing Technologies, School of Textile Science and Engineering, Wuhan Textile University, Wuhan 430200, China.
Chem Soc Rev. 2024 Sep 16;53(18):9306-9343. doi: 10.1039/d4cs00387j.
Cellulose, as the most abundant natural polymer on Earth, has long captured researchers' attention due to its high strength and modulus. Nevertheless, transferring its exceptional mechanical properties to macroscopic 2D and 3D materials poses numerous challenges. This review provides an overview of the research progress in the development of strong cellulose-based materials using both the "bottom-up" and "top-down" approaches. In the "bottom-up" strategy, various forms of regenerated cellulose-based materials and nanocellulose-based high-strength materials assembled by different methods are discussed. Under the "top-down" approach, the focus is on the development of reinforced cellulose-based materials derived from wood, bamboo, rattan and straw. Furthermore, a brief overview of the potential applications fordifferent types of strong cellulose-based materials is given, followed by a concise discussion on future directions.
纤维素作为地球上最丰富的天然聚合物,长期以来因其高强度和模量而吸引了研究人员的关注。然而,将其卓越的机械性能转移到宏观二维和三维材料上存在诸多挑战。本文综述了采用“自下而上”和“自上而下”方法开发高强度纤维素基材料的研究进展。在“自下而上”策略中,讨论了通过不同方法组装的各种形式的再生纤维素基材料和纳米纤维素基高强度材料。在“自上而下”方法中,重点是由木材、竹子、藤条和秸秆衍生的增强纤维素基材料的开发。此外,简要概述了不同类型高强度纤维素基材料的潜在应用,随后对未来方向进行了简要讨论。