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Brush like polyaniline on vanadium oxide decorated reduced graphene oxide: Efficient electrode materials for supercapacitor

机译:氧化钒修饰的氧化石墨烯上的类似聚苯胺的刷子:超级电容器的高效电极材料

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Vanadium oxides (V3O7) have been used as electrode materials for supercapacitor applications because of its multiple oxidation states. V3O7 nanoparticles were coated on reduced graphene oxide (rGO) from a perox-ovanadate-rGO composite by thermal microexplosive decomposition method. These V3O7 decorated rGO were made composite with the flexible multi redox conducting polymer (Polyaniline). The performance of the composite materials as electrode for supercapacitors was analyzed in a 3-electrode cell, obtaining a specific capacitance of about 579 F g(-1) at 0.2 A g(-1) specific current. Cycling stability is one of the main barriers noticed in V3O7, which limits the practical performance of supercapacitors. This is overcome by modifying V3O7 with rGO and polyaniline composites which produces good electrical contact resulting in higher capacitances and enhanced cycling stability when compared to pristine V3O7. A superior electrochemical performance and ultra-long cyclic stability of 94% over 2500 cycles was obtained through these developed electrodes.
机译:氧化钒(V3O7)由于具有多种氧化态,已被用作超级电容器应用的电极材料。通过热微爆炸分解法将V3O7纳米颗粒涂覆在过氧-钒酸盐-rGO复合材料上的还原氧化石墨烯(rGO)上。这些V3O7装饰的rGO与柔性多氧化还原导电聚合物(聚苯胺)制成复合材料。在三电极电池中分析了复合材料作为超级电容器电极的性能,在0.2 A g(-1)的比电流下获得了约579 F g(-1)的比电容。循环稳定性是V3O7中注意到的主要障碍之一,它限制了超级电容器的实际性能。通过用rGO和聚苯胺复合材料改性V3O7可以克服此问题,与原始V3O7相比,该复合材料可产生良好的电接触,从而产生更高的电容和增强的循环稳定性。通过这些发达的电极,在2500次循环中获得了优异的电化学性能和94%的超长循环稳定性。

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