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首页> 外文期刊>Nanoscale >Layer-by-layer stacked vanadium nitride nanocrystals/N-doped carbon hybrid nanosheets toward high-performance aqueous zinc-ion batteries
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Layer-by-layer stacked vanadium nitride nanocrystals/N-doped carbon hybrid nanosheets toward high-performance aqueous zinc-ion batteries

机译:层一层的叠氮化钒纳米晶体/ n型碳混合nanosheets对高性能水zinc-ion电池

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摘要

Aqueous zinc ion batteries (AZIBs) hold great potential in large scale, low-cost energy storage. Unfortunately, their development is limited by the poor performing cathode materials due to their unstable structures and low capacities. Hence, we develop novel layer-by-layer stacked vanadium nitride nanocrystals/N-doped carbon hybrid nanosheets (VN/NC) as cathode materials by in situ thermal conversion of pyrolyzing pentyl viologen intercalated V2O5. The combination of a leaf-like morphology, the nano structure of vanadium nitride crystals and the conductive porous nitrogen-doped carbon nanosheets endow the VN/NC cathode with excellent electrochemical performance in AZIBs. Thus, it delivers a high discharge specific capacity of 566 mA h g−1 at a current density of 0.2 A g−1 and a superior rate capability. Most importantly, it exhibits a remarkable cyclic stability with capacity retention of 131 mA h g−1 (85% of the initial capacity) after 1000 cycles at a current density of 10 A g−1. The design of the unique VN/NC hybrid nano sheets offers a pathway towards developing high performance electrode materials for energy storage.
机译:水性锌离子电池(AZIBs)大潜在的大规模,低成本的能源存储。有限的表现不佳的阴极材料由于他们的不稳定结构和低的能力。层一层的叠氮化钒纳米晶体/ n型碳混合nanosheets(VN / NC)通过原位热阴极材料转换pyrolyzing戊烷基紫罗碱插入V2O5。形态、钒的纳米结构氮化硅晶体和导电多孔nitrogen-doped碳nanosheets赋予VN /数控阴极的电化学在AZIBs的表现。放电比容量566 mA h g−1电流密度为0.2 g−1和优越的速度能力。显著的循环稳定性能力保留131 mA h g−1(初始的85%1000次后容量)电流密度10 g−1。混合纳米表提供了一个途径发展高性能电极材料能源存储。

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