Recent Progress in Hard Carbon Anodes for Sodium-Ion Batteries

IF 3.4 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Jiarui Wang, Lei Xi, Chenxi Peng, Xin Song, Xuanhong Wan, Luyi Sun, Meinan Liu, Jun Liu
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Abstract

With the rapid development of renewable energy and the growth of energy demand, sodium-ion batteries (SIBs) have attracted much attention from researchers as a promising energy storage technology. Hard carbon anodes are considered to be the most promising anodes of SIBs because of their low sodium storage potential, high capacity, wide range of raw materials, and environmental friendliness. However, the rate capability and initial coulombic efficiency of hard carbon hinder the further commercialization of hard carbon. This review provides a concise overview of the three microstructures and four sodium storage mechanisms of hard carbon and comprehensively introduces the latest research progress on strategies to effectively improve the electrochemical performance of hard carbon anodes, which are categorized into structural and morphology design, precursors selection, electrolyte optimization, surface engineering, and pre-sodiation as modification strategies. In addition, the current research progress on sodium-ion full batteries is also encapsulated and the developmental prospects of hard carbon anodes in SIBs is looked forward to.

Abstract Image

钠离子电池硬碳阳极的最新进展
随着可再生能源的快速发展和能源需求的增长,钠离子电池作为一种前景广阔的储能技术备受研究人员的关注。硬碳阳极因其低钠储存潜能、高容量、原材料广泛和环境友好而被认为是最有前途的钠离子电池阳极。然而,硬碳的速率能力和初始库仑效率阻碍了硬碳的进一步商业化。本综述简明扼要地概述了硬碳的三种微观结构和四种储钠机理,并全面介绍了有效提高硬碳阳极电化学性能的最新研究进展,包括结构和形态设计、前驱体选择、电解质优化、表面工程和预阳极化等改性策略。此外,我们还总结了当前钠离子全电池的研究进展,并展望了硬碳阳极在钠离子电池中的发展前景。
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来源期刊
Advanced Engineering Materials
Advanced Engineering Materials 工程技术-材料科学:综合
CiteScore
5.70
自引率
5.60%
发文量
544
审稿时长
1.7 months
期刊介绍: Advanced Engineering Materials is the membership journal of three leading European Materials Societies - German Materials Society/DGM, - French Materials Society/SF2M, - Swiss Materials Federation/SVMT.
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