Zhang Zhao, Terrasson Vincent, Guénin Erwann
Université de Technologie de Compiègne, ESCOM, TIMR (Integrated Transformations of Renewable Matter), Centre de Recherche Royallieu, CS 60 319, 60 203 Compiègne CEDEX, France.
Nanomaterials (Basel). 2021 May 19;11(5):1336. doi: 10.3390/nano11051336.
Lignin nanomaterials have emerged as a promising alternative to fossil-based chemicals and products for some potential added-value applications, which benefits from their structural diversity and biodegradability. This review elucidates a perspective in recent research on nanolignins and their nanocomposites. It summarizes the different nanolignin preparation methods, emphasizing anti-solvent precipitation, self-assembly and interfacial crosslinking. Also described are the preparation of various nanocomposites by the chemical modification of nanolignin and compounds with inorganic materials or polymers. Additionally, advances in numerous potential high-value applications, such as use in food packaging, biomedical, chemical engineering and biorefineries, are described.
木质素纳米材料已成为一种有前途的替代品,可用于一些具有潜在附加值的应用中,以替代基于化石的化学品和产品,这得益于其结构多样性和生物降解性。本综述阐明了近期关于纳米木质素及其纳米复合材料研究的一个视角。它总结了不同的纳米木质素制备方法,重点强调了反溶剂沉淀、自组装和界面交联。还描述了通过纳米木质素与无机材料或聚合物的化学改性制备各种纳米复合材料的方法。此外,还介绍了在众多潜在高价值应用方面的进展,如用于食品包装、生物医学、化学工程和生物精炼等领域。