Chemistry of Materials · 2015 · 41 citations · 30 references
Materials ScienceElectrical EngineeringSupercapacitorsChemical EngineeringEngineeringHybrid CapacitorElectrode SupportCarbon-based MaterialElectrochemical Power SourceGrapheneEnergy StorageSupercapacitorElectrochemical Double Layer CapacitorChemistryGraphene FoliatesCarbon NanotubesElectrochemistry
Graphenated carbon nanotubes (g-CNTs) were investigated as the electrode support in MnO2 composite cathodes for aqueous asymmetric supercapacitors. The electrode performance could be tuned by optimizing the density of graphene foliates on the g-CNTs, which enabled geometric/morphologic control over the MnO2 electrodeposits. The synergy and optimization of the g-CNT hybrid structure led to a high specific capacitance (640 F/g) at high MnO2 specific loading (2.3 mg/cm2), thus creating a unique pathway toward improved practical performance.
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