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Electrochemical Investigation of Polypyrrole/Nd2O3?Nanocomposite as High Performance Supercapacitor Material on Mild Steel Substrate

机译:聚吡咯/ Nd2O3的电化学研究纳米复合材料在温和钢基材上的高性能超级电容器材料

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The PPy films prepared on the mild steel substrate in the absence of the non-conductive iron(II)oxalate layer can be used as the effective electrodes for electrochemical supercapacitors. This studyintroduces a nanocomposite material for electrochemical redox capacitors, which has advantages, suchas long life cycle and stability in an aqueous electrolyte. A polypyrrole/Nd2O3 thin film electrode wassynthesized electrochemically as an electrochemical supercapacitor. The supercapacitive performanceof the PPy/Nd2O3 coated electrode was investigated in 0.1 M H2SO4 solution using cyclic voltammetry(CV), galvanostatic charge–discharge and electrochemical impedance spectroscopy (EIS) techniques.The calculated specific capacitance of the PPy and PPy/Nd2O3 electrodes using the CV method was119 and 259 F.g-1, respectively. The PPy/Nd2O3 nanocomposite as a capacitor material has shownsome advantages such as long life cycle and stability in an aqueous electrolyte. The retention ofcapacitance after 3000 cycles was about 88% of the initial capacitance at the current density of 1 A.g-1.According to EIS data, the supercapacitor using PPy/Nd2O3 nanocomposite material on mild steelsubstrate has high specific capacitance of 268 F.g-1compared with 125 F.g-1for PPy coating.
机译:在不存在非导电铁(II)草酸层的不存在下,在低碳酸盐层上制备的PPY薄膜可以用作电化学超级电容器的有效电极。本研究了一种用于电化学氧化还原电容器的纳米复合材料,其具有优点,寿命长期和水性电解质中的稳定性。多吡咯/ Nd2O3薄膜电极作为电化学超级电容器电化学术语。使用循环伏安法(CV),电镀电荷 - 放电和电化学阻抗谱(EIS)技术在0.1M H 2 SO 4溶液中研究了PPY / ND2O3涂覆电极的超电容性能。使用该计算PPY和PPY / ND2O3电极的特定电容CV方法分别为119和259 FG-1。作为电容器材料的PPY / ND2O3纳米复合材料显示出诸如含水电解质中长的寿命周期和稳定性的优点。在3000个循环后的避险率为的保留约为初始电容的初始电容的初始电容为1Ab-1.根据EIS数据,超级电容器在温和的石英上使用PPY / Nd2O3纳米复合材料的高度电容为268fg-1的特定电容125 FG-1对于PPY涂层。

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