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Preparation and Application of Manganese Dioxide/Graphene Composite in Lithium Sulfur Batteries

机译:锂硫电池中二氧化锰/石墨烯复合材料的制备及应用

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Graphene/manganese dioxide composites and grapheme /manganese dioxide/sulfur (G/MnO2/ S) composite cathode were prepared by hydrothermal method and by vapor permeation, respectively. Their structure, morphology and specific surface area were characterized by X-ray diffraction, electron microanalysis and nitrogen adsorption analysis. The composites show morphology of nanosheets, high specific surface area and even distribution of sulfur. The sulfur accounts for 75% in the G/ MnO2/S composite by thermogravimetric analysis. The electrochemical performance of G/S and G/ MnO2/S cathode were investigated. The G/ MnO2/ S composite cathodes show excellent rate performance and cycle stability. At a 0.2C current density, initial discharge specific capacity is 1 061 mA center dot h center dot g(-1) and maintains 698 mA center dot h center dot g(-1) after 100 cycles; At a 1C current density, maximum discharge capacity reaches 816 mA center dot h center dot g(-1) and average capacity decreasing rate is only 0.073%/ cycle after running over 400 cycles. Electrochemical mechanism of the composites cathodes was analyzed. The sulfur adsorption of MnO2 inhibited the loss of active material sulfur, so, the electrochemical performance of the complex was improved.
机译:通过水热法制备石墨烯/二氧化锰复合材料和石墨烯/二氧化锰/硫(G / MNO2 / S)复合阴极,并通过蒸汽渗透制备。它们的结构,形态学和特异性表面积的特征在于X射线衍射,电子微分析和氮吸附分析。复合材料显示纳米片,高比表面积甚至硫的形态。通过热重分析,硫磺占G / MNO2 / S复合材料中的75%。研究了G / S和G / MNO2 / s阴极的电化学性能。 G / MNO2 / S复合阴极显示出优异的速率性能和循环稳定性。在0.2℃电流密度下,初始排放特定容量为1 061 mA中心点H中心点G(-1),并在100次循环后维持698 mA中心点H中心点G(-1);在1C电流密度下,最大放电容量达到816 mA中心点H中心点G(-1),并且在运行超过400次循环后平均容量降低速率仅为0.073%/循环。分析了复合材料的电化学机理。 MnO2的硫吸附抑制了活性物质硫的损失,因此,改善了复合物的电化学性能。

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