Meng Pengyu, Huang Jian, Yang Zhaohui, Jiang Min, Wang Yibo, Zhang Wei, Zhang Jiao, Sun Baode, Fu Chaopeng
School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai, 200240, People's Republic of China.
State Key Laboratory of High Performance Ceramics and Superfine Microstructures, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, 200050, People's Republic of China.
Nanomicro Lett. 2023 Jul 29;15(1):188. doi: 10.1007/s40820-023-01160-z.
Aluminum-ion batteries (AIBs) have been highlighted as a potential alternative to lithium-ion batteries for large-scale energy storage due to the abundant reserve, light weight, low cost, and good safety of Al. However, the development of AIBs faces challenges due to the usage of AlCl-based ionic liquid electrolytes, which are expensive, corrosive, and sensitive to humidity. Here, we develop a low-cost, non-corrosive, and air-stable hydrated eutectic electrolyte composed of aluminum perchlorate nonahydrate and methylurea (MU) ligand. Through optimizing the molar ratio to achieve the unique solvation structure, the formed Al(ClO)·9HO/MU hydrated deep eutectic electrolyte (AMHEE) with an average coordination number of 2.4 can facilely realize stable and reversible deposition/stripping of Al. When combining with vanadium oxide nanorods positive electrode, the Al-ion full battery delivers a high discharge capacity of 320 mAh g with good capacity retention. The unique solvation structure with a low desolvation energy of the AMHEE enables Al insertion/extraction during charge/discharge processes, which is evidenced by in situ synchrotron radiation X-ray diffraction. This work opens a new pathway of developing low-cost, safe, environmentally friendly and high-performance electrolytes for practical and sustainable AIBs.
铝离子电池(AIBs)因其铝储量丰富、重量轻、成本低且安全性好,被视为大规模储能锂离子电池的潜在替代品。然而,由于使用基于AlCl的离子液体电解质,AIBs的发展面临挑战,这些电解质昂贵、腐蚀性强且对湿度敏感。在此,我们开发了一种由高氯酸铝九水合物和甲基脲(MU)配体组成的低成本、无腐蚀性且空气稳定的水合共晶电解质。通过优化摩尔比以实现独特的溶剂化结构,形成的平均配位数为2.4的Al(ClO)·9HO/MU水合深共晶电解质(AMHEE)能够轻松实现铝的稳定可逆沉积/剥离。当与氧化钒纳米棒正极结合时,铝离子全电池具有320 mAh g的高放电容量和良好的容量保持率。AMHEE具有低去溶剂化能的独特溶剂化结构,使得在充放电过程中能够实现铝的嵌入/脱出,原位同步辐射X射线衍射证明了这一点。这项工作为开发用于实用且可持续的AIBs的低成本、安全、环境友好且高性能的电解质开辟了一条新途径。