4.5 Article

Rechargeable Aluminum-Air Batteries Based on Aqueous Solid-State Electrolytes

期刊

ENERGY TECHNOLOGY
卷 10, 期 4, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/ente.202101046

关键词

Al-air batteries; gel polymer electrolytes; hydrogels; PVA; Xanthan

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  1. Consiglio Nazionale delle Ricerche within the CRUI-CARE Agreement

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The possibility of recharging aluminum-air cells without a separator using a dual water-based electrolyte is demonstrated. By controlling the water content in the electrolyte, efficient reduction and charging processes can be achieved at the cathode and anode interfaces respectively.
The feasibility to recharge aluminum-air cells realized with a dual water-based electrolyte without separator is demonstrated. The dual electrolyte, made of polyvinyl alcohol and Xanthan gum, has a different water content, lower at the anodic interface, where parasitic reactions involving hydrogen production play a crucial role in hindering metal re-deposition, and higher at the cathode side, where water, depending on the pH, allows an efficient reduction of oxygen during discharge or the oxygen evolution during cell charging. The galvanostatic cycles show in the first discharge and charge cycles, the characteristic plateau trends of secondary batteries. By electrochemical impedance spectroscopy analysis effected after each discharge/charge phase and by measuring anode and cathode potentials during cycling, it is demonstrated that, during the first cycles, the re-deposition of aluminum is possible by adopting adequate water management in the electrolyte, while the cell malfunctioning in the subsequent cycles is mainly due to the damage of the cathode.

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