International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM) results for vertically-oriented graphene nanosheets (VOGNs) as supercapacitor electrodes. Conventional EQCM technique delivered primary insights on the ionic exchange mechanisms between VOGNs and organic electrolytes, showing a major contribution of anions. A more advanced electrogravimetric methodology, ac-electrogravimetry, was then used to access specific dynamic attributes for each species exchanged at the VOGN electrode surface. Accordingly, under the conditions of this study, anions were confirmed to be the major energy storage vector with high kinetic values and low transfer resistance while cations and free solvent molecules are giv...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
A better understanding of the ionic exchange mechanisms within supercapacitor electrode materials ca...
International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM...
International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM...
International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM...
International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
International audienceTo accompany the search for optimal materials in electrochemical supercapacito...
To accompany the search for optimal materials in electrochemical supercapacitors, appropriate charac...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
A better understanding of the ionic exchange mechanisms within supercapacitor electrode materials ca...
International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM...
International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM...
International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM...
International audienceThis work presents the first electrochemical quartz crystal microbalance (EQCM...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
International audienceElectrolyte composition is a crucial factor determining the capacitive propert...
International audienceTo accompany the search for optimal materials in electrochemical supercapacito...
To accompany the search for optimal materials in electrochemical supercapacitors, appropriate charac...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
International audiencePEDOT nanowires (NWs) directly grown on the conducting electrode of quartz res...
A better understanding of the ionic exchange mechanisms within supercapacitor electrode materials ca...