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Supercapacitor with superior electrochemical properties derived from symmetrical manganese oxide-carbon fiber coated with polypyrrole

机译:聚吡咯包覆对称的氧化锰碳纤维,具有优异的电化学性能的超级电容器

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A supercapacitor electrode comprising conducting polypyrrole (PPy) coated on manganese oxide-carbon fiber (CNF-MnO2) was successfully synthesized using electrospinning, followed by carbonization and in-situ polymerization. A non-uniform distribution of PPy on the surface of CNF-MnO2 was observed via FESEM analysis. The chemical bonding of CNF MnO2/PPy and the valence state of manganese were revealed via FTIR, Raman spectroscopy, XRD and XPS measurements. CNF-MnO2/PPy composite possessed high specific capacitance and specific energy of 315.80 Fg(-1) and 13.68 Wh/kg, respectively. In addition, good electrochemical reversibility was proven upon CNF-MnO2/PPy even at higher sweep rate (5-200 mV/s). Moreover, this one-dimensional electrode achieved an excellent long-term cycling stability (82.46%) over 2000 CV cycles with low charge transfer resistance (4.61 Omega). The modification of CNF-MnO2/PPy contributes to good synergistic effects among the material which improve the electrochemical behavior of manganese oxide-based fiber composite for future supercapacitor. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用静电纺丝成功地合成了超级电容器电极,该超级电容器电极包括涂覆在氧化锰-碳纤维(CNF-MnO2)上的导电聚吡咯(PPy),然后进行碳化和原位聚合。通过FESEM分析观察到CNF-MnO2表面上PPy的不均匀分布。通过FTIR,拉曼光谱,XRD和XPS测量揭示了CNF MnO2 / PPy的化学键和锰的价态。 CNF-MnO2 / PPy复合材料具有较高的比电容和315.80 Fg(-1)和13.68 Wh / kg的比能。另外,即使在更高的扫描速率(5-20​​0 mV / s)下,CNF-MnO2 / PPy仍具有良好的电化学可逆性。此外,这种一维电极在2000 CV循环中具有出色的长期循环稳定性(82.46%),电荷转移电阻低(4.61 Omega)。 CNF-MnO2 / PPy的改性有助于在材料之间产生良好的协同效应,从而改善用于未来超级电容器的锰氧化物基纤维复合材料的电化学性能。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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