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High-Voltage and Noncorrosive Ionic Liquid Electrolyte Used in Rechargeable Aluminum Battery

机译:用于可充电铝电池的高压无腐蚀离子液体电解质

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As a promising post-lithium battery, rechargeable aluminum battery has the potential to achieve a three-electron reaction with fully use of metal aluminum. Alternative electrolytes are strongly needed for further development of rechargeable aluminum batteries, because typical AlCl3-contained imidazole-based ionic liquids are moisture sensitive, corrosive, and with low oxidation voltage. In this letter, a kind of noncorrosive and water-stable ionic liquid obtained by mixing 1-butyl-3-methylimidazolium trifluoromethanesulfonate ([BMIM]OTF) with the corresponding aluminum salt (Al(OTF)(3)) is studied. This ionic liquid electrolyte has a high oxidation voltage (3.25 V vs Al3+/Al) and high ionic conductivity, and a good electrochemical performance is also achieved. A new strategy, which first used corrosive AlCl3-based electrolyte to construct a suitable passageway on the Al anode for Al3+, and then use noncorrosive Al(OTF)3-based electrolyte to get stable Al/electrolyte interface, is put forward.
机译:作为有前途的后锂电池,可再充电铝电池具有在完全使用金属铝的情况下实现三电子反应的潜力。进一步开发可充电铝电池非常需要替代电解质,因为典型的含AlCl3的咪唑基离子液体对湿气敏感,腐蚀性强且氧化电压低。在这封信中,研究了一种通过将1-丁基-3-甲基咪唑三氟甲烷磺酸盐([BMIM] OTF)与相应的铝盐(Al(OTF)(3))混合而获得的一种非腐蚀性和水稳定性离子液体。该离子液体电解质具有高氧化电压(3.25V vs Al3 + / Al)和高离子电导率,并且还获得了良好的电化学性能。提出了一种新的策略,该策略首先使用腐蚀性的AlCl3基电解质在Al阳极上构建适合Al3 +的通道,然后使用非腐蚀性的Al(OTF)3基电解质获得稳定的Al /电解质界面。

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