The response of the electrochemical system, which is a time-dependent potential of the working electrode, was transformed into a function dE/dt = f(E) by a software. By multiplying the reciprocal derivative of this function on the instantaneous value of the current and on the corresponding value of potential the final transformant, which is a differential charge q vs potential dependence, was obtained. The charge transferred in the adsorption or the Faraday processes on the electrodes is found by integrating q within appropriate limits of potential
International audienceDespite the widespread use of electrochemical sensing techniques, the determin...
Analytic solutions are derived for the alternating current voltammetry (ACV) harmonic waveforms of e...
As a complement to a previous contribution from us, the mass transport mechanisms of the electroacti...
We report on the development of the cyclic reciprocal derivative chronopotentiometry (CRDC) method w...
for cyclic reciprocal derivative chronopotentiometry with power and exponential programmed currents ...
The systems formalism is used to obtain the interfacial concentration transients for power-law curre...
We used reciprocal derivative chronopotentiometry (RDC) with platinum electrodes of 50 μm diameter i...
For a long time now the general characteristics of potential-time curves in constant current electro...
An accurate formula exists for describing the decay of the current following the imposition of extre...
172 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1964.U of I OnlyRestricted to the ...
We report a novel comprehensive Fourier transform electrochemical impedance spectroscopic (FTEIS) an...
A mathematical treatment is developed which yields equations relating faradaic current, voltage, and...
The first portion of this dissertation demonstrates both theoretically and experimentally that the c...
An analytical theory is presented which permits the calculation of transient effects at widely-separ...
Basic kinetic equations of chronopotentiometric potential-time curves, in which the equations for re...
International audienceDespite the widespread use of electrochemical sensing techniques, the determin...
Analytic solutions are derived for the alternating current voltammetry (ACV) harmonic waveforms of e...
As a complement to a previous contribution from us, the mass transport mechanisms of the electroacti...
We report on the development of the cyclic reciprocal derivative chronopotentiometry (CRDC) method w...
for cyclic reciprocal derivative chronopotentiometry with power and exponential programmed currents ...
The systems formalism is used to obtain the interfacial concentration transients for power-law curre...
We used reciprocal derivative chronopotentiometry (RDC) with platinum electrodes of 50 μm diameter i...
For a long time now the general characteristics of potential-time curves in constant current electro...
An accurate formula exists for describing the decay of the current following the imposition of extre...
172 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1964.U of I OnlyRestricted to the ...
We report a novel comprehensive Fourier transform electrochemical impedance spectroscopic (FTEIS) an...
A mathematical treatment is developed which yields equations relating faradaic current, voltage, and...
The first portion of this dissertation demonstrates both theoretically and experimentally that the c...
An analytical theory is presented which permits the calculation of transient effects at widely-separ...
Basic kinetic equations of chronopotentiometric potential-time curves, in which the equations for re...
International audienceDespite the widespread use of electrochemical sensing techniques, the determin...
Analytic solutions are derived for the alternating current voltammetry (ACV) harmonic waveforms of e...
As a complement to a previous contribution from us, the mass transport mechanisms of the electroacti...