Li Le, Zhang Weizhuo, Pan Weijie, Wang Mengyu, Zhang Hairan, Zhang Duo, Zhang Dan
Shaanxi Key Laboratory of Industrial Automation, School of Mechanical Engineering, Shaanxi University of Technology, Hanzhong 723001, China.
Shaanxi Key Laboratory of Catalysis, School of Chemistry and Environment Science, Shaanxi University of Technology, Hanzhong 723001, China.
Nanoscale. 2021 Dec 2;13(46):19291-19305. doi: 10.1039/d1nr05873h.
New types of rechargeable batteries other than lithium-ions, including sodium/potassium/zinc/magnesium/calcium/aluminum-ion batteries and non-aqueous batteries, are rapidly advancing towards large-scale energy storage applications. A major challenge for these burgeoning batteries is the absence of appropriate electrode materials, which gravely hinders their further development. Expanded graphite (EG)-based electrode materials have been proposed for these emerging batteries due to their low cost, non-toxic, rich-layered structure and adjustable layer spacing. Here, we evaluate and summarize the application of EG-based materials in rechargeable batteries other than Li batteries, including alkaline ion (such as Na, K) storage and multivalent ion (such as Mg, Zn, Ca and Al) storage batteries. Particularly, this article discusses the composite strategy and performance of EG-based materials, which enables them to function as an electrode in these emerging batteries. Future research areas in EG-based materials, from the fundamental understanding of material design and processing to reaction mechanisms and device performance optimization strategies, are being looked forward to.
除锂离子电池外的新型可充电电池,包括钠/钾/锌/镁/钙/铝离子电池和非水电池,正迅速朝着大规模储能应用发展。这些新兴电池面临的一个主要挑战是缺乏合适的电极材料,这严重阻碍了它们的进一步发展。基于膨胀石墨(EG)的电极材料因其成本低、无毒、层状结构丰富且层间距可调节,已被提出用于这些新兴电池。在此,我们评估并总结了基于EG的材料在除锂电池外的可充电电池中的应用,包括碱性离子(如Na、K)存储和多价离子(如Mg、Zn、Ca和Al)存储电池。特别地,本文讨论了基于EG的材料的复合策略和性能,这使其能够在这些新兴电池中用作电极。基于EG的材料未来的研究领域,从对材料设计和加工的基本理解到反应机制以及器件性能优化策略,都备受期待。