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Facile synthesis of ternary graphene nanocomposites with doped metal oxide and conductive polymers as electrode materials for high performance supercapacitors

机译:掺杂金属氧化物和导电聚合物作为高性能超级电容器电极材料的三元石墨烯纳米复合材料的简便合成

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Supercapacitors (SCs) due to their high energy density, fast charge storage and energy transfer, long charge discharge curves and low costs are very attractive for designing new generation of energy storage devices. In this work we present a simple and scalable synthetic approach to engineer ternary composite as electrode material based on combination of graphene with doped metal oxides (iron oxide) and conductive polymer (polypyrrole) with aims to achieve supercapacitors with very high gravimetric and areal capacitances. In the first step a binary composite with graphene mixed with doped iron oxide (rGO/MeFesub2/subOsub4/sub) (Me?=?Mn, Ni) was synthesized using new single step process with NaOH acting as a coprecipitation and GO reducing agent. This rGO/MnFesub2/subOsub4/sub composite electrode showed gravimetric capacitance of 147 Fgsup-1/sup and areal capacitance of 232 mFcmsup-2/sup at scan rate of 5 mVssup-1/sup. In the final step a conductive polypyrrole was included to prepare a ternary composite graphene/metal doped iron oxide/polypyrrole (rGO/MnFesub2/subOsub4/sub/Ppy) electrode. Ternary composite electrode showed significantly improved gravimetric capacitance and areal capacitance of 232 Fgsup-1/sup and 395 mFcmsup-2/sup respectively indicating synergistic impact of Ppy additives. The method is promising to fabricate advanced electrode materials for high performing supercapacitors combining graphene, doped iron oxide and conductive polymers.
机译:超级电容器(SC)具有高能量密度,快速电荷存储和能量转移,长电荷放电曲线以及低成本等优点,对于设计新一代的能量存储设备非常有吸引力。在这项工作中,我们提出了一种简单且可扩展的合成方法,以石墨烯与掺杂的金属氧化物(氧化铁)和导电聚合物(聚吡咯)的组合为基础,设计三元复合材料作为电极材料,旨在获得具有非常高的重量和面积电容的超级电容器。第一步,使用新的单晶合成了石墨烯与掺杂的氧化铁(rGO / MeFe 2 O 4 )(Me2 =?Mn,Ni)混合的二元复合材料。 NaOH作为共沉淀剂和GO还原剂的分步工艺。该rGO / MnFe 2 O 4 复合电极的重量电容为147 Fg -1 ,面电容为232 mFcm -2 < / sup>,扫描速率为5 mVs -1 。在最后的步骤中,包括导电聚吡咯以制备三元复合石墨烯/金属掺杂的氧化铁/聚吡咯(rGO / MnFe 2 O 4 / Ppy)电极。三元复合电极的重量电容和面电容分别显着改善,分别为232 Fg -1 和395 mFcm -2 ,表明Ppy添加剂具有协同作用。该方法有望制造出用于石墨烯,掺杂氧化铁和导电聚合物的高性能超级电容器的先进电极材料。

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