| Literature DB >> 34927974 |
Wenli Zhang1,2, Jian Yin3,4, Caiwei Wang5, Lei Zhao1, Wenbin Jian1, Ke Lu6, Haibo Lin4, Xueqing Qiu1,2, Husam N Alshareef3.
Abstract
Lignin, one of the renewable constituents in natural plant biomasses, holds great potential as a sustainable source of functional carbon materials. Tremendous research efforts have been made on lignin-derived carbon electrodes for rechargeable batteries. However, lignin is considered as one of the most promising carbon precursors for the development of high-performance, low-cost porous carbon electrode materials for supercapacitor applications. Yet, these efforts have not been reviewed in detail in the current literature. This review, therefore, offers a basis for the utilization of lignin as a pivotal precursor for the synthesis of porous carbons for use in supercapacitor electrode applications. Lignin chemistry, the synthesis process of lignin-derived porous carbons, and future directions for developing better porous carbon electrode materials from lignin are systematically reviewed. Technological hurdles and approaches that should be prioritized in future research are presented.Entities:
Keywords: industrialization; lignin; low-cost; porous carbon; supercapacitors
Year: 2021 PMID: 34927974 DOI: 10.1002/smtd.202100896
Source DB: PubMed Journal: Small Methods ISSN: 2366-9608