Publication | Closed Access
Three-Dimensionally Arrayed and Mutually Connected 1.2-nm Nanopores for High-Performance Electric Double Layer Capacitor
292
Citations
20
References
2011
Year
EngineeringNanoporous MaterialHybrid CapacitorChemistryChemical EngineeringZeolite-templated CarbonOrganic Electrolyte SolutionNanoelectronicsMaterials ScienceElectrical EngineeringNanoscale SystemNanotechnologySupercapacitorElectrochemical Double Layer CapacitorElectrochemistryPorous CarbonNanomaterialsApplied PhysicsUnique Pore StructureNanoarchitectonics
Zeolite-templated carbon is a promising candidate as an electrode material for constructing an electric double layer capacitor with both high-power and high-energy densities, due to its three-dimensionally arrayed and mutually connected 1.2-nm nanopores. This carbon exhibits both very high gravimetric (140-190 F g(-1)) and volumetric (75-83 F cm(-3)) capacitances in an organic electrolyte solution. Moreover, such a high capacitance can be well retained even at a very high current up to 20 A g(-1). This extraordinary high performance is attributed to the unique pore structure.
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