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Voltammetric responses of porous Co3O4 spinels supported on MOF-derived carbons: Effects of porous volume on dopamine diffusion processes

Lesego Gaolatlhe, Rasmita Barik, Sekhar C. Ray, Kenneth I. Ozoemena

2020Journal of Electroanalytical Chemistry31 citationsDOI

Topics & Concepts

ChemistryAdsorptionElectrodeSpecific surface areaElectrolyteChemical engineeringDiffusionCyclic voltammetryPorosityVoltammetryAnalytical Chemistry (journal)ElectrochemistryChromatographyPhysical chemistryOrganic chemistryCatalysisPhysicsThermodynamicsEngineeringElectrochemical sensors and biosensorsConducting polymers and applicationsElectrochemical Analysis and Applications
Voltammetric responses of porous Co3O4 spinels supported on MOF-derived carbons: Effects of porous volume on dopamine diffusion processes | Litcius