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Multifunctional Ternary Nanocomposites of Ni/Polypyrrole/Reduced Graphene Oxide as Supercapacitor and Electrocatalyst in Methanol Oxidation

机译:Ni/polypyrole/还原石墨烯的多功能三元纳米复合材料作为超级电容器和甲醇氧化中的电催化剂

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In this work the concurrent electrochemical energy storage and conversion characteristics of Ni nanoparticles supported on polypyrrole-reduced graphene oxide(Ni/PPy/rGO)nanocomposite is reported.Ni/PPy/rGO nanocomposite was synthesized by mixing its precursors PPy/rGO and NiCl2·6H2O,where Ni2+ was reduced to Ni at pH 10.5.The obtained nanocomposite is characterized using FTIR,XRD,Raman Spectroscopy,SEM and dynamic light scattering methods.The electrochemical energy storage properties of the nanocomposite are investigated using cyclic voltammetry,galvanostatic charge/discharge and electrochemical impedance spectroscopy tests.Electrochemical analysis reveals that Ni/PPy/rGO nanocomposite has high specific capacitance of 763.49 Fg~(-1)at 1.31 Ag~(-1)current density with capacity retention of 96.75% after 200 cycles Ni/PPy/rGO nanocomposite is also used as electrode in methanol electrooxidation.Cyclic voltammetry and chronoamperometry are carried out to study the electrochemical energy conversion properties of the composite towards methanol electro-oxidation.The anodic current density of the Ni/PPy/rGO nanocomposite is much higher than that of Ni/rGO and PPy/rGO.Moreover,the onset potential of Ni/PPy/rGO nanocomposite is much lower than that of Ni/rGO and PPy/rGO.The results show that the Ni/PPy/rGO nanocomposite is electro-catalytically active and highly stable.
机译:在这项工作中,据报道,在多吡咯并发氧化石墨烯(Ni/PPY/RGO)纳米复合材料的Ni纳米颗粒的并发电化学存储和转化特性。Ni/ppy/RGO纳米复合材料是通过混合其前体PPY/RGO和NICL2/NICL2·nanocomposite的。 6H2O,其中Ni2+在pH值10.5中还原为Ni。使用FTIR,XRD,Raman光谱,SEM和动态光散射方法对获得的纳米复合材料进行表征。使用环状电压电荷,胆囊电荷,胆汁固定电荷,胆汁固定电荷,胆汁固定电荷,胆汁复合材料的电化学能量存储特性电气化学分析表明,Ni/ppy/rgo纳米复合材料的高比电容为763.49 fg〜(-1),在1.31 ag〜(-1)电流密度为96.75%,在200个Cycles Ni/ppy后,Ni//ppy/rgo纳米复合材料的高特异性高度为763.49 fg〜(-1),ni/ppy/rgo纳米复合材料的高特异性高度为763.49 fg〜(-1),在200级Ni/ppy后,Ni/ppy/rgo纳米复合材料的高特异性高度为763.49 fg〜(-1 /RGO纳米复合材料还用作甲醇电氧化的电极。进行伏安法和计时度测量法以研究电化学能量con该复合材料对甲醇电氧化的特性。Ni/ppy/rgo纳米复合材料的阳极电流密度远高于Ni/rgo和ppy/rgo。此外,ni/ppy/rgo/rgo纳米复合材料的起源潜力是结果比Ni/RGO和PPY/RGO低得多。结果表明,Ni/PPY/RGO纳米复合材料具有电催化活性且高度稳定。

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