Superior-Performance Aqueous Zinc-Ion Batteries Based on the In Situ Growth of MnO 2 Nanosheets on V 2 CT X MXene

Mn-based aqueous zinc-ion batteries (ZIBs) are promising candidate for large-scale rechargeable energy storage because of easy fabrication, low cost, and high safety. Nevertheless, the commercial application of Mn-based cathode is hindered by the challenging issues of low rate capability and poor cy...

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Veröffentlicht in:ACS nano 2021-02, Vol.15 (2), p.2971-2983
Hauptverfasser: Zhu, Xiaodong, Cao, Ziyi, Wang, Wenjie, Li, Haijing, Dong, Juncai, Gao, Shangpeng, Xu, Dongxiao, Li, Lei, Shen, Jianfeng, Ye, Mingxin
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Sprache:eng
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Zusammenfassung:Mn-based aqueous zinc-ion batteries (ZIBs) are promising candidate for large-scale rechargeable energy storage because of easy fabrication, low cost, and high safety. Nevertheless, the commercial application of Mn-based cathode is hindered by the challenging issues of low rate capability and poor cyclability. Herein, a manganese-vanadium hybrid, K-V C@MnO cathode, featured with MnO nanosheets uniformly formed on a V CT MXene surface, is elaborately designed and synthesized by metal-cation intercalation and following growth strategy. Benefiting from the hybrid structure with high conductivity, abundant active sites, and the synergistic reaction of Mn electrodeposition and inhibited structural damage of MnO , K-V C@MnO shows excellent electrochemical performance for aqueous ZIBs. Specifically, it presents the high specific capacity of 408.1 mAh g at 0.3 A g and maintains the specific capacity of 119.2 mAh g at a high current density of 10 A g in a long-term cycle of up to 10000 cycles. It is superior to almost all reported Mn-based cathodes for ZIBs in the aqueous electrolyte. The superior electrochemical performance suggests that the Mn-based cathode materials designed in this work can be a rational approach to be applied for high-performance ZIBs cathodes.
ISSN:1936-0851
1936-086X
DOI:10.1021/acsnano.0c09205