Na0.44MnO2/Polyimide Aqueous Na-ion Batteries for Large Energy Storage Applications

Aqueous salt batteries with high concentrations of salt or water in salt aqueous systems have received considerable attention with focus on improving working voltage range and energy density. Here, the effect of NaClO 4 salt concentration on the electrochemical performance and stability of tunnel-ty...

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Veröffentlicht in:Frontiers in energy research 2021-01, Vol.8
Hauptverfasser: Maddukuri, Satyanarayana, Nimkar, Amey, Chae, Munseok S., Penki, Tirupathi Rao, Luski, Shalom, Aurbach, Doron
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Sprache:eng
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Zusammenfassung:Aqueous salt batteries with high concentrations of salt or water in salt aqueous systems have received considerable attention with focus on improving working voltage range and energy density. Here, the effect of NaClO 4 salt concentration on the electrochemical performance and stability of tunnel-type Na 0.44 MnO 2 (NMO) cathodes and organic polyimide (PI) derivative anodes was studied. High capacity retention and 100% coulombic efficiency were shown for NMO/PI full cell in saturated NaClO 4 electrolyte. A high, stable capacity of 115 mAh/g was achieved for the PI anode material, and the full cell showed a stable capacity of 41 mAh/g at 2C rate for 430 cycles (calculated for the weight of NMO cathode). Even at a fast 5C rate, a discharge capacity of 33 mAh/g was maintained for 2,400 prolonged cycles with nearly 100% efficiency. The full cell device can achieve an average voltage of 1 V with energy density of 24 Wh/kg. This study highlights concentrated sodium perchlorate as a promising electrolyte solution for stabilization of electrodes and enhancement of electrochemical performance in aqueous media.
ISSN:2296-598X
2296-598X
DOI:10.3389/fenrg.2020.615677