Abstract
The cycle stability of lithium negative electrodes for Li–air secondary batteries was studied under oxygen atmosphere using Li∣Li symmetric cells with three organic electrolyte solutions: 1.0 M LiCF 3 SO 3 /tetraglyme (G4), 1.0 M LiN(SO 2 CF 3 ) 2 /G4, and 1.0 M LiNO 3 /G4. Of these, 1.0 M LiNO 3 /G4 showed excellent stability without dendrite deposition, even for increased dissolution/deposition capacity from 0.50 to 2.0 mAh cm −2 . These results are considered to be due to the stable Li 2 O passivation layer that was formed, not only by the direct reaction with oxygen, but also by the action of NO 3 − as an oxidant, which released NO 2 − as a redox mediator. Li–O 2 cells with 1.0 M LiNO 3 /G4 showed a clear charging voltage plateau at 3.7 V, which evidenced the redox mediator effect of NO 2 − , and cell cycleability was enhanced to 25 cycles.
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CITATION STYLE
Saito, M., Fujinami, T., Sohmiya, M., Hayashi, Y., Koyama, K., Otsuka, H., … Horiba, T. (2021). Comparison of Lithium Salt Effect on Negative Electrodes and Lithium–Air Cell Performance. Journal of The Electrochemical Society, 168(1), 010520. https://doi.org/10.1149/1945-7111/abd60d
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