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a-MoS3@CNT nanowire cathode for rechargeable Mg batteries: a pseudocapacitive approach for efficient Mg-storage

机译:为充电Mg a-MoS3@CNT纳米线阴极电池:pseudocapacitive方法高效Mg-storage

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摘要

Rechargeable Mg batteries are promising candidates for highly safe large-scale energy storage batteries owing to their low-cost and non-dendritic metallic Mg anode. However, exploration of high-performance cathodes remains a great challenge hindering their development. Herein, a new pseudocapacitive Mg-storage nanowire material (a-MoS3@CNT) is constructed with a carbon nanotube (CNT) core and an amorphous MoS3 (a-MoS3) outer layer (15 nm thick). The nanowire cathode exhibits a high reversible capacity of 175 mA h g(-1) at 100 mA g(-1), a good rate performance of 50 mA h g(-1) at 1000 mA g(-1), and an outstanding long-term cyclability over 500 cycles. Further investigation of the mechanism demonstrates that the Mg-storage of a-MoS3@CNT is mainly achieved by the pseudocapacitance of a-MoS3, in which Mg2+ ions show fast solid-state diffusion kinetics. The present results demonstrate a new approach for efficient Mg-storage using pseudocapacitive materials, and the performance and solid-state Mg2+ diffusion kinetics could be optimized by delicate morphology tailoring.
机译:充电Mg电池是有前途的候选人对高安全的大规模储能由于其低成本和电池non-dendritic金属镁阳极。探索高性能阴极仍然存在一个伟大的挑战阻碍他们的发展。这里,一个新的pseudocapacitive Mg-storage纳米线材料(a-MoS3@CNT)构造碳纳米管(CNT)和一个核心非晶态MoS3 a-MoS3外层(15海里厚)。可逆容量175毫安h g (1) 100 mAg(1),速率性能好马50 h g (1)马在1000 g(1),一位杰出的长期cyclability超过500周期。调查表明的机制的Mg-storage a-MoS3@CNT主要实现的pseudocapacitance a-MoS3, Mg2 +离子显示快速固态扩散动力学。目前的结果表明一种新方法高效使用pseudocapacitive Mg-storage材料,性能和固态Mg2 +扩散动力学可以优化微妙的形态裁剪。

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