Tang Yanjin, Fang Zhenxing, Lee Hoo-Jeong
College of Science and Technology, Ningbo University, 521 Wenwei Road, Ningbo 315300, China.
Department of Smart Fab. Technology, Sungkyunkwan University, Suwon 16419, Republic of Korea.
Gels. 2024 May 25;10(6):365. doi: 10.3390/gels10060365.
Cellulose hydrogels, formed either through physical or chemical cross-linking into a three-dimensional network from cellulose or its derivatives, are renowned for their exceptional water absorption capacities and biocompatibility. Rising demands for sustainable materials have spurred interest in cellulose hydrogels, attributed to their abundant supply, biodegradability, and non-toxic nature. These properties highlight their extensive potential across various sectors including biomedicine, the food industry, and environmental protection. Cellulose hydrogels are particularly advantageous in applications such as drug delivery, wound dressing, and water treatment. Recent large-scale studies have advanced our understanding of cellulose preparation and its applications. This review delves into the fundamental concepts, preparation techniques, and current applications of cellulose hydrogels in diverse fields. It also discusses the latest advances in nano-lignin-based hydrogels, providing a comprehensive overview of this promising material and offering insights and guidance for future research and development.
纤维素水凝胶是通过物理或物理或物理或化学交联由纤维素或其衍生物形成的三维网络,以其卓越的吸水能力和生物相容性而闻名。对可持续材料的需求不断增加,激发了人们对纤维素水凝胶的兴趣,这归因于其丰富的供应、可生物降解性和无毒性质。这些特性凸显了它们在生物医学、食品工业和环境保护等各个领域的广泛潜力。纤维素水凝胶在药物递送、伤口敷料和水处理等应用中特别具有优势。最近的大规模研究增进了我们对纤维素制备及其应用的理解。本综述深入探讨了纤维素水凝胶的基本概念、制备技术以及在不同领域的当前应用。它还讨论了基于纳米木质素的水凝胶的最新进展,全面概述了这种有前景的材料,并为未来的研究和开发提供见解和指导。