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Graphene decorated iron oxide negative electrodes with high capacity, excellent rate performance, and wide working voltage for aqueous battery-supercapacitor hybrid devices

Miao Liu, Haoshan Nan, Xiaoying Hu, Weijin Zhang, Liang Qiao, Yi Zeng, Hongwei Tian

2020Journal of Alloys and Compounds27 citationsDOI

Topics & Concepts

Materials scienceSupercapacitorGrapheneElectrodeElectrolyteEnergy storageOxideElectrochemistryBattery (electricity)Power densityComposite numberAqueous solutionNanotechnologyPerovskite (structure)Chemical engineeringOptoelectronicsComposite materialMetallurgyPower (physics)ChemistryEngineeringPhysical chemistryPhysicsQuantum mechanicsSupercapacitor Materials and FabricationAdvanced battery technologies researchAdvancements in Battery Materials
Graphene decorated iron oxide negative electrodes with high capacity, excellent rate performance, and wide working voltage for aqueous battery-supercapacitor hybrid devices | Litcius