Jia Bei-Er, Thang Ai Qin, Yan Chunshuang, Liu Chuntai, Lv Chade, Zhu Qiang, Xu Jianwei, Chen Jian, Pan Hongge, Yan Qingyu
School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, 150001, China.
Small. 2022 Oct;18(43):e2107773. doi: 10.1002/smll.202107773. Epub 2022 Aug 7.
The high cost and scarcity of lithium resources have prompted researchers to seek alternatives to lithium-ion batteries. Among emerging "Beyond Lithium" batteries, rechargeable aluminum-ion batteries (AIBs) are yet another attractive electrochemical storage device due to their high specific capacity and the abundance of aluminum. Although the current electrochemical performance of nonaqueous AIBs is better than aqueous AIBs (AAIBs), AAIBs have recently gained attention due to their low cost and enhanced safety. Extensive efforts are devoted to developing AAIBs in the last few years. Yet, it is still challenging to achieve stable electrodes with good electrochemical performance and electrolytes without side reactions. This review summarizes the recent progress in the exploration of anode and cathode materials and the selection of electrolytes of AAIBs. Lastly, the main challenges and future research outlook of high-performance AAIBs are also presented.
锂资源的高成本和稀缺性促使研究人员寻找锂离子电池的替代品。在新兴的“超越锂”电池中,可充电铝离子电池(AIBs)因其高比容量和铝资源丰富,成为另一种有吸引力的电化学储能装置。尽管目前非水AIBs的电化学性能优于水系AIBs(AAIBs),但AAIBs因其低成本和更高的安全性,最近受到了关注。在过去几年里,人们致力于开发AAIBs。然而,要实现具有良好电化学性能且无副反应的稳定电极和电解质仍具有挑战性。本文综述了AAIBs阳极和阴极材料探索以及电解质选择方面的最新进展。最后,还介绍了高性能AAIBs的主要挑战和未来研究展望。