Article ID Journal Published Year Pages File Type
1486958 Materials Research Bulletin 2016 6 Pages PDF
Abstract

•Reduced graphene oxide/SnO2/polypyrrole composites are prepared by one-pot method.•PPy nanofibers and SnO2 nanoparticles distribute in the graphene nanosheets.•The composites with hierarchical nanostructures show higher specific capacitance.•The composites exhibit good rate capability and cycling stability.

The hierarchical reduced graphene oxide/SnO2/polypyrrole ternary composites are prepared in a one-pot method via in situ redox reaction between graphene oxide and Sn2+ ions, followed by the polymerization of pyrrole monomers in the presence of methyl orange. The ternary composites are composed of one-dimensional polyprrole nanofibers and SnO2 nanoparticles distributed in the network of graphene nanosheets. Supercapacitors based on the hierarchical composite show larger specific capacitance compared with the ternary composite prepared without methyl orange and reduced graphene oxide/SnO2 binary composite. They also exhibit superior electrochemical rate capability and cyclic stability. The capacitance retained about 95% after 800 galvanostatic cycles at 1 A/g. The high electrochemical performance results from the hierarchical nanostructure, the efficient combination of components and the synergistic interaction among the three components. The hierarchical ternary composites are promising electrode material for high-performance supercapacitors.

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Related Topics
Physical Sciences and Engineering Materials Science Ceramics and Composites
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