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首页> 外文期刊>Journal of power sources >Improved cycling performance of bismuth-modified amorphous manganese oxides as cathodes for rechargeable lithium batteries
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Improved cycling performance of bismuth-modified amorphous manganese oxides as cathodes for rechargeable lithium batteries

机译:铋改性非晶态锰氧化物作为可充电锂电池正极的改进循环性能

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Bismuth-modified amorphous manganese oxides were synthesized via a room temperature aqueous route. They were galvanostatically tested as intercalation cathodes for rechargeable lithium batteries at 1 mA cm~(-2) between 1.5 and 4.3 V. In sharp contrast to severe capacity fading of unmodified amorphous manganese oxide synthesized by the same route, a stable cycling performance of the bismuth-modified amorphous manganese oxide was observed. After an initial drop from 185 to 145 mAh g~(-1) in around 10 cycles, the capacity of the bismuth-modified amorphous manganese oxide remains essentially unchanged for another 40 cycles. Based on results from X-ray diffraction and cyclic voltammetry (CV) characterization, it is suggested that an electrochemically active and stable local structure evolves inside the bismuth-modified amorphous manganese oxide upon initial cycling, leading to the stabilized cycling performance for subsequent cycles.
机译:铋改性的非晶态锰氧化物是通过室温水性途径合成的。它们经过恒电流测试,用作介于1.5和4.3 V之间的1 mA cm〜(-2)时可充电锂电池的嵌入阴极。与通过相同路线合成的未改性无定形锰氧化物的严重容量衰减形成鲜明对比,其稳定的循环性能观察到铋改性的非晶态锰氧化物。在大约10个循环中从185 mAh g〜(-1)最初下降之后,铋改性的非晶态锰氧化物的容量在接下来的40个循环中基本上保持不变。根据X射线衍射和循环伏安法(CV)表征的结果,建议在初始循环后,铋改性的非晶态锰氧化物内部会形成电化学活性且稳定的局部结构,从而使后续循环具有稳定的循环性能。

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