School of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, Liaoning, China.
Department of Plant Pathology and Microbiology, Texas A&M University, College Station, TX 77840, USA.
Int J Biol Macromol. 2019 Aug 15;135:1006-1019. doi: 10.1016/j.ijbiomac.2019.05.198. Epub 2019 May 30.
Lignin as the second most abundant and the only polyaromatics-contained bio-polymer in plant has been most studied for various applications. In the past decade, the utilization of lignin for value-added materials has been extensively sought after since lignin valorization represents one of the main challenging issues of the paper industry and lignocellulosic biorefinery. Among these researches, making lignin into hydrogels has great potential for upgrading lignin into functional materials. In this review, lignin hydrogel is wrapped up with preparation strategies, properties and applications. The major cross-linking strategies to synthesize lignin-based hydrogels were reviewed first, including monomers copolymerization, crosslinking of monomers with reactive polymer precursors and polymer-polymer crosslinking. Two most important properties of mechanical and porous structures of lignin hydrogel were then discussed. More importantly, we extensively reviewed current applications of lignin hydrogel, including absorption, controlled release, smart materials for stimuli sensitive, biosensors and electrodes. These applications have paved avenues for lignin valorization. Overall, this paper covers recent advancements regarding lignin-based hydrogel and represents a timely review of this promising material.
木质素作为植物中第二丰富且唯一含有多芳烃的生物聚合物,因其具有各种应用而受到广泛研究。在过去的十年中,由于木质素的增值代表了造纸工业和木质纤维素生物炼制的主要挑战问题之一,因此人们一直在广泛寻求利用木质素来制备附加值材料。在这些研究中,将木质素制成水凝胶将木质素升级为功能材料具有很大的潜力。在这篇综述中,木质素水凝胶的制备策略、性能和应用进行了总结。首先综述了合成木质素基水凝胶的主要交联策略,包括单体共聚、单体与反应性聚合物前体交联以及聚合物-聚合物交联。然后讨论了木质素水凝胶的两个最重要的性能:机械性能和多孔结构。更重要的是,我们广泛综述了木质素水凝胶的当前应用,包括吸收、控制释放、刺激敏感的智能材料、生物传感器和电极。这些应用为木质素的增值开辟了道路。总的来说,本文涵盖了关于木质素基水凝胶的最新进展,是对这种有前途的材料的及时综述。