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Nano-mesh structured Mn-based oxide/conducting polymer composite electrode for supercapacitor

机译:用于超级电容器的纳米网结构Mn基氧化物/导电聚合物复合电极

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In this work, modified nano-mesh structured Mn-based oxide electrode material and the supercapacitors are researched. Three types of conducting polymers, i.e. polyaniline (PANI), polypyrrole (PPy) and polythiophene (PTs) are considered to modify Mn-based oxide electrodes. The results of field emission scanning electron microscope show that conducting polymer film can form porous structure on Mn-based oxide electrode, this special structure is beneficial to the improvement of specific surface area, so that the specific capacitance can be increased. The specific capacitance of the supercapacitors assembled by Mn-based oxide/conducting polymer composite electrodes are tested, resulting that the maximum initial specific capacitance is 843 F g~(-1), cycle life is 10~5 times. Compared to supercapacitors assembled by general Mn-based oxide electrodes, this Mn-based oxide/conducting polymer material electrode can improve the specific capacitance up to 1.4-1.9 times, and the conductivity and cycle stability can be increased at the same time.
机译:在这项工作中,研究了改进的纳米网结构Mn基氧化物电极材料和超级电涂机。认为三种类型的导电聚合物,即聚苯胺(PANI),聚吡咯(PPY)和聚噻吩(PTS)被认为是改性Mn基氧化物电极。场发射扫描电子显微镜的结果表明,导电聚合物膜可以在Mn基氧化物电极上形成多孔结构,这种特殊结构有利于具体表面积的改善,从而可以增加特定电容。通过Mn基氧化物/导电聚合物复合电极组装的超级电容器的比电容被测试,导致最大初始特定电容为843f g〜(-1),循环寿命为10〜5次。与由一般Mn基氧化物电极组装的超级电容器相比,该Mn基氧化物/导电聚合物材料电极可以改善高达1.4-1.9倍的特定电容,并且可以同时增加电导率和循环稳定性。

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