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Electrospun V<sub>2</sub>O<sub>5</sub>-doped α-Fe<sub>2</sub>O<sub>3</sub>composite nanotubes with tunable ferromagnetism for high-performance supercapacitor electrodes
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Citations
50
References
2014
Year
Materials ScienceElectrical EngineeringChemical EngineeringSupercapacitorsMagnetic PropertiesMagnetic RecordingNanomaterialsNanoelectronicsEngineeringPerfect ReversibilityAdvanced Electrode MaterialHigh-performance Supercapacitor ElectrodesTunable FerromagnetismEnergy StorageEnergy Storage FieldSupercapacitorFunctional MaterialsElectrochemistry
V2O5-doped α-Fe2O3 composite nanotubes have been successfully fabricated via a simple one-step electrospinning technique followed by calcination treatment. For the first time, we found that the magnetic properties of the as-prepared samples were significantly dependent on the contents of the dopant. In comparison with pristine α-Fe2O3, perfect reversibility, more excellent capacitance and better cycling stability were simultaneously observed for the hybrid metal oxide with an appropriate mass ratio of V2O5 (VFNT1) when it was utilized for supercapacitor electrodes, indicating that the doped α-Fe2O3 tubular nanostructures are fairly promising for practical applications not only in magnetic recording but also in the energy storage field.
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