Major new insights on electrochemical processes at graphite electrodes are reported, following extensive investigations of two of the most studied redox couples, Fe(CN)64–/3– and Ru(NH3)63+/2+. Experiments have been carried out on five different grades of highly oriented pyrolytic graphite (HOPG) that vary in step-edge height and surface coverage. Significantly, the same electrochemical characteristic is observed on all surfaces, independent of surface quality: initial cyclic voltammetry (CV) is close to reversible on freshly cleaved surfaces (>400 measurements for Fe(CN)64–/3– and >100 for Ru(NH3)63+/2+), in marked contrast to previous studies that have found very slow electron transfer (ET) kinetics, with an interpretation that ET only oc...
Graphene, a single layer of carbon atoms, has been in the center stage of materials research since i...
Graphite-based electrodes (graphite, graphene, and nanotubes) are used widely in electrochemistry, a...
The understanding and tailoring of the electrochemistry of graphite is of significant industrial imp...
The electrochemistry of the Fe3+/2+ redox couple has been studied on highly oriented pyrolytic graph...
The electron transfer (ET) kinetics of three redox couples in aqueous solution, IrCl62−/3−, Ru(NH3)6...
After all, it's active: High-resolution scanning electrochemical cell microscopy (SECCM) demonstrate...
This chapter is concerned with electrochemistry at, and of, highly oriented pyrolytic graphite (HOPG...
The electrochemical (EC) behavior of mechanically exfoliated graphene and highly oriented pyrolytic ...
The electrochemical (EC) behavior of mechanically exfoliated graphene and highly oriented pyrolytic ...
Carbon materials have a long history of use as electrodes in electrochemistry, from (bio)electroanal...
Carbon materials have a long history of use as electrodes in electrochemistry, from (bio)electroanal...
The chemical functionalization of carbon surfaces has myriad applications, from tailored sensors to ...
Highly oriented pyrolytic graphite (HOPG) is an important electrode material as a structural model o...
The chemical functionalization of carbon surfaces has myriad applications, from tailored sensors to ...
Through theoretical modelling based upon a diffusion domain approach, we show that for a basal plane...
Graphene, a single layer of carbon atoms, has been in the center stage of materials research since i...
Graphite-based electrodes (graphite, graphene, and nanotubes) are used widely in electrochemistry, a...
The understanding and tailoring of the electrochemistry of graphite is of significant industrial imp...
The electrochemistry of the Fe3+/2+ redox couple has been studied on highly oriented pyrolytic graph...
The electron transfer (ET) kinetics of three redox couples in aqueous solution, IrCl62−/3−, Ru(NH3)6...
After all, it's active: High-resolution scanning electrochemical cell microscopy (SECCM) demonstrate...
This chapter is concerned with electrochemistry at, and of, highly oriented pyrolytic graphite (HOPG...
The electrochemical (EC) behavior of mechanically exfoliated graphene and highly oriented pyrolytic ...
The electrochemical (EC) behavior of mechanically exfoliated graphene and highly oriented pyrolytic ...
Carbon materials have a long history of use as electrodes in electrochemistry, from (bio)electroanal...
Carbon materials have a long history of use as electrodes in electrochemistry, from (bio)electroanal...
The chemical functionalization of carbon surfaces has myriad applications, from tailored sensors to ...
Highly oriented pyrolytic graphite (HOPG) is an important electrode material as a structural model o...
The chemical functionalization of carbon surfaces has myriad applications, from tailored sensors to ...
Through theoretical modelling based upon a diffusion domain approach, we show that for a basal plane...
Graphene, a single layer of carbon atoms, has been in the center stage of materials research since i...
Graphite-based electrodes (graphite, graphene, and nanotubes) are used widely in electrochemistry, a...
The understanding and tailoring of the electrochemistry of graphite is of significant industrial imp...