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Ternary Ni–Cu–OH and Ni–Co–OH electrodes for electrochemical energy storage

机译:Ni-Cu-OH和Ni-Co-OH三元电极,用于电化学储能

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摘要

In this project, Ni–Cu–OH and Ni–Co–OH ternary electrodes have been prepared. Different Ni:Cu and Ni:Co ratios were deposited by chemical bath deposition (CBD) at room temperature on carbon microfibers. Since Ni(OH)2 is notorious for poor cycling stability, the goal of the work was to determine if doping with Cu or Co could improve Ni(OH)2 cycling stability performance and conductivity against reaction with electrolyte. It is observed that the electrodes with Ni:Cu and Ni:Co composition ratio of 100:10 result in the optimum capacitance and cycling stability in both Ni–Cu–OH and Ni–Co–OH electrodes. This improvement in cycling stability can be attributed to the higher redox reversibility as indicated by the smaller CV redox peak separation. In addition, it is found that decreasing Cu and Co ratios, with fixed CBD time, enhances nanoflakes formation, and hence increases electrode capacitance. For the optimum composition (Ni:Co = 100:10), composites of the ternary electrodes with graphene and carbon nanofibers were also tested, with resultant improvement in potential window, equivalent series resistance, areal capacitance and cycling stability.
机译:在该项目中,准备了Ni-Cu-OH和Ni-Co-OH三元电极。室温下通过化学浴沉积(CBD)在碳微纤维上沉积不同的Ni:Cu和Ni:Co比。由于众所周知Ni(OH)2的循环稳定性差,因此工作的目标是确定掺杂Cu或Co是否可以改善Ni(OH)2循环稳定性能和导电性,以防止与电解质的反应。可以看出,Ni:Cu和Ni:Co组成比为100:10的电极在Ni–Cu–OH和Ni–Co–OH电极中均具有最佳的电容和循环稳定性。循环稳定性的提高可归因于较高的氧化还原可逆性,如较小的CV氧化还原峰分离所示。此外,发现在固定的CBD时间下降低Cu和Co的比例会增强纳米薄片的形成,从而增加电极电容。对于最佳组成(Ni:Co = 100:10),还测试了三元电极与石墨烯和碳纳米纤维的复合材料,从而改善了电势窗口,等效串联电阻,面电容和循环稳定性。

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