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Reaction Mechanisms for Long-Life Rechargeable Zn/MnO 2 Batteries
پدید آورنده
Li, YWang, SSalvador, JRWu, JLiu, BYang, WYang, JZhang, WLiu, JYang, Jet al.
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کتابخانه مطالعات اسلامی به زبان های اروپایی
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32910706
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025
LA61k0n6tb
Reaction Mechanisms for Long-Life Rechargeable Zn/MnO 2 Batteries
[Article]
Li, YWang, SSalvador, JRWu, JLiu, BYang, WYang, JZhang, WLiu, JYang, Jet al.
Copyright © 2019 American Chemical Society. Rechargeable aqueous Zn-ion batteries (ZIBs) are very promising for large-scale grid energy storage applications owing to their low cost, environmentally benign constituents, excellent safety, and relatively high energy density. Their usage, however, is largely hampered by the fast capacity fade. The complexity of the reactions has resulted in long-standing ambiguities of the chemical pathways of Zn/MnO 2 system. In this study, we find that both H + /Zn 2+ intercalation and conversion reactions occur at different voltages and that the rapid capacity fading can clearly be ascribed to the rate-limiting and irreversible conversion reactions at a lower voltage. By limiting the irreversible conversion reactions at â1.26 V, we successfully demonstrate ultrahigh power and long life that are superior to most of the reported ZIBs or even some lithium-ion batteries.
2019
Lawrence Berkeley National Laboratory
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[Article]
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