An approach based on the equations of electrochemical kinetics for the estimation of the current density distribution in electrochemical cells is presented. This approach was employed for a theoretical explanation of the phenomena of the edge and corner effects. The effects of the geometry of the system, the kinetic parameters of the cathode reactions and the resistivity of the solution are also discussed. A procedure for a complete analysis of the current distribution in electrochemical cells is presented.Prikazan je sažeti pregled ranijih rezultata i predstavljen je poboljšan pristup proceni raspodele struje u elektrohemijskim ćelijama. Ovaj pristup, zasnovan na jednačinama elektrohemijske kinetike, upotrebljen je za teorijsko objašnjenje...
This work studies mathematical issues associated with steady-state modelling of diffusion-reaction-c...
This research presents a universal characterization of the electric field coupled with a non-isotrop...
A new mathematical model to calculate current density distributions and leakage current in electroch...
An approach based on the equations of electrochemical kinetics for the estimation of the current den...
A new method for the determination of the ability of an electrolyte to distrubute uniformly current ...
The effect of ohmic resistance of electrodes on current density distribution is shown to depend on t...
Secondary current density distributions are of interestto cell designers. The purpose of this note i...
Current density distribution is an important considerationfor those involved in designing electroche...
An efficient method for the computation of current density and surface concentration distributions ...
Current density and potential distribution measurements were conducted using a segmented current col...
Current and potential distributions, satisfying Laplace's equation and obtained by superpositio...
This thesis develops diffusion models for modern electrochemical experiments involving the transpor...
The effect of the concentration of the reacting ion on the nature of the control of the electrodepos...
A technique based on the analytical method of lines is presented for predicting shape changes during...
A novel yet efficient method for the computation of simplified tertiary current density and surface ...
This work studies mathematical issues associated with steady-state modelling of diffusion-reaction-c...
This research presents a universal characterization of the electric field coupled with a non-isotrop...
A new mathematical model to calculate current density distributions and leakage current in electroch...
An approach based on the equations of electrochemical kinetics for the estimation of the current den...
A new method for the determination of the ability of an electrolyte to distrubute uniformly current ...
The effect of ohmic resistance of electrodes on current density distribution is shown to depend on t...
Secondary current density distributions are of interestto cell designers. The purpose of this note i...
Current density distribution is an important considerationfor those involved in designing electroche...
An efficient method for the computation of current density and surface concentration distributions ...
Current density and potential distribution measurements were conducted using a segmented current col...
Current and potential distributions, satisfying Laplace's equation and obtained by superpositio...
This thesis develops diffusion models for modern electrochemical experiments involving the transpor...
The effect of the concentration of the reacting ion on the nature of the control of the electrodepos...
A technique based on the analytical method of lines is presented for predicting shape changes during...
A novel yet efficient method for the computation of simplified tertiary current density and surface ...
This work studies mathematical issues associated with steady-state modelling of diffusion-reaction-c...
This research presents a universal characterization of the electric field coupled with a non-isotrop...
A new mathematical model to calculate current density distributions and leakage current in electroch...