Abstract

Biomass-based nanofibers prepared by electrospinning technology have the advantages of unique porous structure, high specific surface area, low cost and easy availability, hence they have wide applications in electrochemical energy storage devices. This review describes the characteristics of electrospun nanofibers prepared from various biomass components and their derivatives and introduces their application performances in electrochemical energy storage devices. The preparation methods of electrospun nanofibers with excellent electrochemical properties are systematically introduced, and the differences of various biomass materials and their applications in electrochemical energy storage devices are analyzed and summarized. Some development suggestions for the future application of biomass-based nanofibrous materials are given. These works provide some important references for the application and expansion of biomass-based electrospun nanofibers in the field of energy storage.

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