Rigorous and approximate analytical expressions are deduced for Differential Pulse Voltammetry at spherical electrodes of any size, including microelectrodes, when the electrogenerated species is soluble in the electrolytic solution. From these, we examine the utility of DPV for the determination of diffusion coefficients and formal potentials, establishing the optimum conditions for this purpose. The experimental validation of the theoretical results is reported for mercury microelectrodes of ca. 50 and 10 μm diameters both in aqueous and ionic liquid media. © 2009 Elsevier B.V. All rights reserved
International audienceExpressions for reversible differential pulse (DP) voltammograms at microdisk ...
The study of the EC mechanism by reverse pulse voltammetry (RPV) is assessed in this paper. RPV is a...
Two novel methods for the determination of diffusion coefficients of redox species combining the spe...
A rigorous analytical solution for Reverse Pulse Voltammetry (RPV) at spherical electrodes of all si...
The use of differential pulse voltammetry at spherical electrodes for the study of the kinetic of ch...
The use of differential pulse voltammetry at spherical electrodes for the study of the kinetic of ch...
The size of a microelectrode can have a dramatic impact on the relative importance of the diffusiona...
The size of a microelectrode can have a dramatic impact on the relative importance of the diffusiona...
Reverse Pulse Voltammetry (RPV) is a powerful double pulse technique for kinetic studies. The theory...
Reverse Pulse Voltammetry (RPV) is a powerful double pulse technique for kinetic studies. The theory...
The spherical diffusion that occurs when using ultramicroelectrodes (i.e., electrodes with a charact...
A model is developed for the voltammetric response due to surface charge injection at a single point...
We present a general and explicit analytical solution for double potential step chronoamperometry wi...
We present a general and explicit analytical solution for double potential step chronoamperometry wi...
The differential pulse voltammetry (DPV) experiment has been simulated using the backwards implicit ...
International audienceExpressions for reversible differential pulse (DP) voltammograms at microdisk ...
The study of the EC mechanism by reverse pulse voltammetry (RPV) is assessed in this paper. RPV is a...
Two novel methods for the determination of diffusion coefficients of redox species combining the spe...
A rigorous analytical solution for Reverse Pulse Voltammetry (RPV) at spherical electrodes of all si...
The use of differential pulse voltammetry at spherical electrodes for the study of the kinetic of ch...
The use of differential pulse voltammetry at spherical electrodes for the study of the kinetic of ch...
The size of a microelectrode can have a dramatic impact on the relative importance of the diffusiona...
The size of a microelectrode can have a dramatic impact on the relative importance of the diffusiona...
Reverse Pulse Voltammetry (RPV) is a powerful double pulse technique for kinetic studies. The theory...
Reverse Pulse Voltammetry (RPV) is a powerful double pulse technique for kinetic studies. The theory...
The spherical diffusion that occurs when using ultramicroelectrodes (i.e., electrodes with a charact...
A model is developed for the voltammetric response due to surface charge injection at a single point...
We present a general and explicit analytical solution for double potential step chronoamperometry wi...
We present a general and explicit analytical solution for double potential step chronoamperometry wi...
The differential pulse voltammetry (DPV) experiment has been simulated using the backwards implicit ...
International audienceExpressions for reversible differential pulse (DP) voltammograms at microdisk ...
The study of the EC mechanism by reverse pulse voltammetry (RPV) is assessed in this paper. RPV is a...
Two novel methods for the determination of diffusion coefficients of redox species combining the spe...