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Nonstoichiometric Cu0.6Ni0.4Co2O4 Nanowires as an Anode Material for High Performance Lithium Storage

机译:非化学计量的Cu0.6Ni0.4Co2O4纳米线作为高性能锂存储阳极材料

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摘要

Transition metal oxide is one of the most promising anode materials for lithium-ion batteries. Generally, the electrochemical property of transition metal oxides can be improved by optimizing their element components and controlling their nano-architecture. Herein, we designed nonstoichiometric Cu Ni Co O nanowires for high performance lithium-ion storage. It is found that the specific capacity of Cu Ni Co O nanowires remain 880 mAh g after 50 cycles, exhibiting much better electrochemical performance than CuCo O and NiCo O . After experiencing a large current charge and discharge state, the discharge capacity of Cu Ni Co O nanowires recovers to 780 mAh g at 50 mA g , which is ca. 88% of the initial capacity. The high electrochemical performance of Cu Ni Co O nanowires is related to their better electronic conductivity and synergistic effect of metals. This work may provide a new strategy for the design of multicomponent transition metal oxides as anode materials for lithium-ion batteries.
机译:过渡金属氧化物是锂离子电池最有希望的负极材料之一。通常,可以通过优化过渡金属氧化物的元素组成并控制其纳米结构来改善其电化学性能。在这里,我们设计了非化学计量的Cu Ni Co O纳米线用于高性能锂离子存储。发现在50次循环后,Cu Ni Co O纳米线的比容量保持880 mAh g,表现出比CuCo O和NiCo O更好的电化学性能。在经历大电流充电和放电状态后,Cu Ni Co O纳米线的放电容量在50 mA g时恢复到780 mAh g,大约为。初始容量的88%。 Cu Ni Co O纳米线的高电化学性能与其更好的电导率和金属的协同作用有关。这项工作可能为设计多组分过渡金属氧化物作为锂离子电池的负极材料提供新的策略。

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