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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Enhanced electrochemical performance of a ZnO-MnO composite as an anode material for lithium ion batteries
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Enhanced electrochemical performance of a ZnO-MnO composite as an anode material for lithium ion batteries

机译:ZnO-MnO复合材料作为锂离子电池负极材料的电化学性能增强

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摘要

A ZnO-MnO composite was synthesized using a simple solvothermal method combined with a high-temperature treatment. To observe the phase change during the heating process, in situ high-temperature XRD analysis was performed under vacuum conditions. The results indicated that ZnMn2O4 transformed into the ZnO-MnO composite phase starting from 500 degrees C and that this composite structure was retained until 700 degrees C. The electrochemical performances of the ZnO-MnO composite electrode were evaluated through galvanostatic discharge-charge tests and cyclic voltammetry analysis. Its initial coulombic efficiency was significantly improved to 68.3% compared to that of ZnMn2O4 at 54.7%. Furthermore, the ZnO-MnO composite exhibited improved cycling performance and enhanced rate capability compared with untreated ZnMn2O4. To clarify the discharge-charge mechanism of the ZnO-MnO composite electrode, the structural changes during the charge and discharge processes were also investigated using ex situ XRD and TEM.
机译:ZnO-MnO复合材料是采用简单的溶剂热法结合高温处理合成的。为了观察加热过程中的相变,在真空条件下进行了原位高温XRD分析。结果表明,ZnMn2O4从500摄氏度开始转变为ZnO-MnO复合相,并且该复合结构一直保持到700摄氏度。伏安分析。与ZnMn2O4的54.7%相比,其初始库仑效率显着提高至68.3%。此外,与未经处理的ZnMn2O4相比,ZnO-MnO复合材料具有改善的循环性能和增强的倍率性能。为了阐明ZnO-MnO复合电极的充放电机理,还利用异位XRD和TEM研究了充放电过程中的结构变化。

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