Publication | Closed Access
Boosting pseudocapacitive charge storage in <i>in situ</i> functionalized carbons with a high surface area for high-energy asymmetric supercapacitors
36
Citations
64
References
2018
Year
Materials ScienceSupercapacitorsChemical EngineeringHigh Surface AreaEngineeringPseudocapacitive Charge StorageHybrid CapacitorPorous CarbonHigh-energy Asymmetric SupercapacitorsJellyfish-derived CarbonsEnergy StorageSupercapacitorEnergy Storage DeviceChemistryPseudocapacitive ContributionsElectrochemical Double Layer CapacitorFunctional MaterialsElectrochemistry
The porosity and heteroatom doping level can be tuned for jellyfish-derived carbons to adjust capacitive and pseudocapacitive contributions.
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