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Electrochemical characterization of an aqueous lithium rechargeable battery: The effect of CeO2 additions to the MnO2 cathode

机译:水性锂可充电电池的电化学特性:MnO2阴极中添加CeO2的影响

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摘要

The effect of CeO2 additions on an aqueous rechargeable lithium battery has been investigated. The CeO2 additions (0, 2, and 5 wt.%) were made to the manganese dioxide (MnO2) cathode of a cell comprising zinc as an anode and an aqueous saturated lithium hydroxide solution as the electrolyte. The CeO2 enhances the performance of the cell in terms of capacity and resistance to capacity fade with cycling. This effect is only evident after the first charge cycle. The mechanism by which this occurs may be due to suppression of the oxygen evolution reaction during charging. This results in full reversion of the products of discharge (principally LixMnO2) to MnO2 during charging, and suppresses the formation of non-rechargeable oxyhydroxides. CeO2 additions of 2 wt.% were found to be most effective, since additions at the 5 wt.% level caused a decrease in capacity during long-term cycling. This could be due to a synchronizing effect. The effect of additions of a rare earth oxide (CeO2) and an alkaline earth oxide (CaO) on the electrochemical behavior of the cell is also compared and discussed.
机译:已经研究了添加CeO2对水性可充电锂电池的影响。向包括锌作为阳极和饱和氢氧化锂水溶液作为电解质的电池的二氧化锰(MnO2)阴极添加CeO 2(0、2和5重量%)。 CeO 2在容量方面具有增强的电池性能,并且可以抵抗循环的容量衰减。该效果仅在第一个充电周期后才明显。发生这种情况的机理可能是由于抑制了充电过程中的析氧反应。这导致充电期间放电产物(主要是LixMnO2)完全还原为MnO2,并抑制了不可充电的羟基氧化物的形成。发现添加2wt。%的CeO 2是最有效的,因为以5wt。%的水平添加会导致长期循环期间容量的降低。这可能是由于同步效果。还比较和讨论了添加稀土氧化物(CeO2)和碱土金属氧化物(CaO)对电池电化学行为的影响。

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