Fang Yongjin, Zhang Jiexin, Xiao Lifen, Ai Xinping, Cao Yuliang, Yang Hanxi
College of Chemistry and Molecular Sciences Hubei Key Laboratory of Electrochemical Power Sources Wuhan University Wuhan 430072 P.R. China.
College of Chemistry Central China Normal University Wuhan 430079 P.R. China.
Adv Sci (Weinh). 2017 Jan 18;4(5):1600392. doi: 10.1002/advs.201600392. eCollection 2017 May.
Sodium ion batteries (SIBs) have been considered as a promising alternative for the next generation of electric storage systems due to their similar electrochemistry to Li-ion batteries and the low cost of sodium resources. Exploring appropriate electrode materials with decent electrochemical performance is the key issue for development of sodium ion batteries. Due to the high structural stability, facile reaction mechanism and rich structural diversity, phosphate framework materials have attracted increasing attention as promising electrode materials for sodium ion batteries. Herein, we review the latest advances and progresses in the exploration of phosphate framework materials especially related to single-phosphates, pyrophosphates and mixed-phosphates. We provide the detailed and comprehensive understanding of structure-composition-performance relationship of materials and try to show the advantages and disadvantages of the materials for use in SIBs. In addition, some new perspectives about phosphate framework materials for SIBs are also discussed. Phosphate framework materials will be a competitive and attractive choice for use as electrodes in the next-generation of energy storage devices.
钠离子电池(SIBs)因其与锂离子电池相似的电化学性质以及钠资源的低成本,被认为是下一代蓄电系统的一种有前景的替代方案。探索具有良好电化学性能的合适电极材料是钠离子电池发展的关键问题。由于具有高结构稳定性、简便的反应机理和丰富的结构多样性,磷酸盐骨架材料作为钠离子电池有前景的电极材料受到了越来越多的关注。在此,我们综述了磷酸盐骨架材料探索方面的最新进展,特别是与单磷酸盐、焦磷酸盐和混合磷酸盐相关的进展。我们提供了对材料结构 - 组成 - 性能关系的详细而全面的理解,并试图展示这些材料在钠离子电池中使用的优缺点。此外,还讨论了关于用于钠离子电池的磷酸盐骨架材料的一些新观点。磷酸盐骨架材料将是下一代储能装置中用作电极的具有竞争力和吸引力的选择。