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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electrochemical investigation on nanoscale CoO as additive to the positive electrodes for Ni/MH rechargeable batteries
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Electrochemical investigation on nanoscale CoO as additive to the positive electrodes for Ni/MH rechargeable batteries

机译:Ni / MH可充电电池正极中纳米CoO添加剂的电化学研究

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摘要

The addition of CoO to the positive electrodes of Ni/MH rechargeable batteries provides excellent performance in terms of specific capacity and mean discharge voltage. CoO increases remarkably the active material utilization due to the formation of CoOOH conductive network. In this paper, an extensive study is focused on the addition of nanoscale CoO to the positive electrodes for Ni/MH batteries in comparison with usual submicron CoO particles. The electrochemical impedance spectroscopy is performed to reveal the advantages of nanoscale CoO to the electrodes. The results indicate that both the ohmic resistance of the electrode and the impedance of the electrochemical reaction decreased in the case of adding nanoscale CoO. Further study by charge-discharge cycling shows that the electrodes with nanoscale CoO have higher discharge capacity and higher mean discharge voltage, and the batteries with such electrodes present enhanced high-rate discharge capability.
机译:在Ni / MH可充电电池的正极中添加CoO可以提供比容量和平均放电电压方面的出色性能。由于CoOOH导电网络的形成,CoO显着提高了活性材料的利用率。在本文中,与常规的亚微米CoO颗粒相比,针对Ni / MH电池的正极添加了纳米级CoO进行了广泛的研究。进行电化学阻抗光谱分析以向电极揭示纳米级CoO的优势。结果表明,在添加纳米级CoO的情况下,电极的欧姆电阻和电化学反应的阻抗均降低。通过充放电循环的进一步研究表明,具有纳米级CoO的电极具有更高的放电容量和更高的平均放电电压,并且具有这种电极的电池具有更高的高倍率放电能力。

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