Understanding the reversible electrodeposition of aluminum in low-cost room-temperature molten salts

Понимание обратимого электроосаждения алюминия в недорогих расплавах, жидких при комнатной температуре
Regina García-Méndez, Jingxu Zheng, David C. Bock, Cherno Jaye, Daniel A. Fischer, Amy C. Marschilok, Kenneth J. Takeuchi, Esther S. Takeuchi, Lynden A. Archer
2023-06-01

Lewis acidityaluminum battery anodesionic liquid electrolytesreversible aluminum electrodepositionroom-temperature molten salts
Aluminum is the most earth-abundant metal, trivalent, and inert in ambient air; it also has a density approximately five times that of lithium at room temperature, making it attractive for cost-effective, long-duration storage in batteries. Here, we investigate structural requirements and physicochemical and transport properties of ionic liquid (IL) electrolytes thought to enable high reversibility of Al battery anodes. We find that intentionally designed, low-cost IL analogs, including ammonium-based molten salts, offer comparable Al anode reversibility to state-of-the-art imidazolium-based IL melts. A critical ratio of solvated Al-ion species is required to balance the effects of Lewis acidity needed to continuously etch native Al2O3 and form a stable solid electrolyte interphase on Al. Our findings open new opportunities for developing simple, cost-effective, room-temperature Al batteries that enable long-duration electrical energy storage.
1
A critical ratio of solvated aluminum-ion species governs electrolyte performance and is necessary for high reversible aluminum electrodeposition.
2
Low-cost ionic-liquid analogs, including ammonium-based molten salts, achieve aluminum-anode reversibility comparable to state-of-the-art imidazolium-based melts.
3
The findings support development of simple, cost-effective room-temperature aluminum batteries for long-duration electrical energy storage.
4
The required electrolyte balance combines sufficient Lewis acidity to continuously remove native Al2O3 with formation of a stable solid-electrolyte interphase on aluminum.

aluminum battery anodes in low-cost room-temperature ionic-liquid/molten-salt electrolytes

the structural requirements and physicochemical, transport, and interfacial factors governing reversible aluminum electrodeposition, including the solvated Al-ion species ratio, Lewis acidity, native Al2O3 etching, and solid electrolyte interphase formation

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2023-06-01
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Regina García-Méndez
Jingxu Zheng
David C. Bock
Cherno Jaye
Daniel A. Fischer
Amy C. Marschilok
Kenneth J. Takeuchi
Esther S. Takeuchi
Lynden A. Archer
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