Liu Wanxin, Li Le, Yue Shi, Jia Shaofeng, Wang Conghui, 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.
Chemistry. 2024 Oct 1;30(55):e202402017. doi: 10.1002/chem.202402017. Epub 2024 Sep 13.
Aluminum-ion batteries (AIBs) are promising electrochemical energy storage sources because of their high theoretical specific capacity, light weight, zero pollution, safety, inexpensiveness, and abundant resources. These theoretical advantages have recently made AIBs a research hotspot. However, electrolyte-related issues significantly limit their commercialization. The electrolyte choices for AIBs are significantly limited, and most of the available options do not facilitate the Al/Al three-electron transfer reaction. Thus, this review presents an overview of recent advances in electrolytes and modification strategies for AIBs to clarify the limitations of existing AIB electrolytes and offer guidance for improving their performance. Furthermore, herein, the advantages, limitations and possible solutions for each electrolyte are discussed, after which the future of AIB electrolytes is envisioned.
铝离子电池(AIBs)因其高理论比容量、重量轻、无污染、安全、成本低和资源丰富等优点,是很有前景的电化学储能源。这些理论优势近来使铝离子电池成为研究热点。然而,与电解质相关的问题严重限制了它们的商业化。铝离子电池的电解质选择非常有限,并且大多数现有选择都不利于铝/铝三电子转移反应。因此,本综述概述了铝离子电池电解质及改性策略的最新进展,以阐明现有铝离子电池电解质的局限性,并为提高其性能提供指导。此外,本文讨论了每种电解质的优点、局限性和可能的解决方案,之后对铝离子电池电解质的未来进行了展望。