Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7731714 | Journal of Power Sources | 2015 | 8 Pages |
Abstract
Behaviours of the AA5052 aluminium alloy anode of the alkaline aluminium-air battery are studied by the hydrogen evolution test, the electrochemical measurements and the surface analysis method. The combination of amino-acid and rare earth as electrolyte additives effectively retards the self-corrosion of AA5052 aluminium alloy in 4Â M NaOH solution. It shows that the combination of l-cysteine and cerium nitrate has a synergistic effect owing to the formation of a complex film on AA5052 alloy surface. The organic rare-earth complex can decrease the anodic polarisation, suppress the hydrogen evolution and increase the anodic utilization rate.
Related Topics
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Authors
Dapeng Wang, Heshun Li, Jie Liu, Daquan Zhang, Lixin Gao, Lin Tong,