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May 28, 2024Carbon Energy26 citationsOpen Access

Joint cationic and anionic redox chemistry in a vanadium oxide cathode for zinc batteries achieving high energy density

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WWWenfeng WangLZLu ZhangZDZeang Duan

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Abstract

Abstract Rechargeable aqueous zinc batteries are promising for large‐scale energy storage due to their low cost and high safety; however, their energy density has reached the ceiling based on conventional cathodes with a single cationic redox reaction mechanism. Herein, a highly reversible cathode of typical layered vanadium oxide is reported, which operates on both the cationic redox couple of V 5+ /V 3+ accompanied by the Zn 2+ storage and the anionic O – /O 2– redox couple by anion hosting in an aqueous deep eutectic solvent electrolyte. The reversible oxygen redox delivers an additional capacity of ∼100 mAh g –1 at an operating voltage of ∼1.80 V, which increases the energy density of the cathode by ∼36%, endowing the cathode system a record high energy density of ∼506 Wh kg –1 . The findings highlight new opportunities for the design of high‐energy zinc batteries with both Zn 2+ and anions as charge carriers.

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Cite This Study

Wang et al. (2024) studied this question.

synapsesocial.com/papers/68e67f77b6db643587609701https://doi.org/10.1002/cey2.577
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