We simulate an electrode modified with a conducting porous film, where the electrolysis occurs both at the surface of the film and within it, in order to study the effect of pore size on the peak current in linear sweep voltammetry. For redox systems with reversible electrode kinetics we find that for both very large and very small pores the peak current is given by the Randles-Šev ik equation. For intermediate pore size, however, we observe a greatly enhanced peak current. When considering systems with irreversible electrode kinetics a very similar pattern is observed, except for the case of very small pores. In this case the peak current is actually smaller than expected from the Randles-Šev ik equation because the peak splits into two di...
A simple generic model to predict the influence of electrode porosity on the cyclic voltammetric res...
International audienceThe classical 1D continuum model of oxygen exchange in a porous mixed conducto...
International audienceThe classical 1D continuum model of oxygen exchange in a porous mixed conducto...
We simulate an electrode modified with a conducting porous film, where the electrolysis occurs both ...
Extracting quantitative kinetic information from linear-sweep voltammograms (LSV) on porous electrod...
Extracting quantitative kinetic information from linear-sweep voltammograms (LSV) on porous electrod...
Extracting quantitative kinetic information from linear-sweep voltammograms (LSV) on porous electrod...
Extracting quantitative kinetic information from linear-sweep voltammograms (LSV) on porous electrod...
A theoretical analysis of linear sweep voltammetry (LSV) in flooded-porous electrodes is treated for...
The analytical benefits obtained from electrode modification with conductive porous layers, a common...
A continuum-model approach, analogous to porous electrode theory, was applied to a thin-layer cell o...
Mass transport in reticulated vitreous carbon electrodes in flow by mode has been studied with the c...
A simple generic model to predict the influence of electrode porosity on the cyclic voltammetric res...
Claims made by literature use models that do not account for mass transport that is likely to affect...
International audienceThe classical 1D continuum model of oxygen exchange in a porous mixed conducto...
A simple generic model to predict the influence of electrode porosity on the cyclic voltammetric res...
International audienceThe classical 1D continuum model of oxygen exchange in a porous mixed conducto...
International audienceThe classical 1D continuum model of oxygen exchange in a porous mixed conducto...
We simulate an electrode modified with a conducting porous film, where the electrolysis occurs both ...
Extracting quantitative kinetic information from linear-sweep voltammograms (LSV) on porous electrod...
Extracting quantitative kinetic information from linear-sweep voltammograms (LSV) on porous electrod...
Extracting quantitative kinetic information from linear-sweep voltammograms (LSV) on porous electrod...
Extracting quantitative kinetic information from linear-sweep voltammograms (LSV) on porous electrod...
A theoretical analysis of linear sweep voltammetry (LSV) in flooded-porous electrodes is treated for...
The analytical benefits obtained from electrode modification with conductive porous layers, a common...
A continuum-model approach, analogous to porous electrode theory, was applied to a thin-layer cell o...
Mass transport in reticulated vitreous carbon electrodes in flow by mode has been studied with the c...
A simple generic model to predict the influence of electrode porosity on the cyclic voltammetric res...
Claims made by literature use models that do not account for mass transport that is likely to affect...
International audienceThe classical 1D continuum model of oxygen exchange in a porous mixed conducto...
A simple generic model to predict the influence of electrode porosity on the cyclic voltammetric res...
International audienceThe classical 1D continuum model of oxygen exchange in a porous mixed conducto...
International audienceThe classical 1D continuum model of oxygen exchange in a porous mixed conducto...