A new method for the determination of the ability of an electrolyte to distrubute uniformly current density in an electrochemical cell is proposed. It is based on the comparison of the current in cells in which the electrode edges touch the cell side walls with the current in cells with different electrode edge - cell side wall distances. The effects of cell geometry, process parameters and current density are discussed and illustrated using the results presented in the previous papers from this series
Finite element analysis is used to calculate electrochemical potential distributions of charged spec...
ABSTRACT: Two electroplating test cells have been proposed and tested to analyze the performance of ...
The secondary current distribution is calculated for current flow between planar electrodes placed o...
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...
An approach based on the equations of electrochemical kinetics for the estimation of the current den...
density; and, consequently, should prevent overheating or blistering of the membrane and damage to t...
An efficient method for the computation of current density and surface concentration distributions ...
Presented isthe theoretical characterization f an electrochemical cell that is uniformly accessible ...
An idealized model is postulated embodying the essential features of industrial caustic-chlorine cel...
International audienceObservations via a video camera of the behavior of the bubbles produced in a c...
By means of the theory of the electropotential, the geometrical shape of a new electro-plating cell ...
A novel yet efficient method for the computation of simplified tertiary current density and surface ...
A model that predicts the current density and potential distributions as a function of depth of disc...
During fuel cell operation the electrochemical activity over the electrode area is not homogeneous i...
Finite element analysis is used to calculate electrochemical potential distributions of charged spec...
ABSTRACT: Two electroplating test cells have been proposed and tested to analyze the performance of ...
The secondary current distribution is calculated for current flow between planar electrodes placed o...
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...
An approach based on the equations of electrochemical kinetics for the estimation of the current den...
density; and, consequently, should prevent overheating or blistering of the membrane and damage to t...
An efficient method for the computation of current density and surface concentration distributions ...
Presented isthe theoretical characterization f an electrochemical cell that is uniformly accessible ...
An idealized model is postulated embodying the essential features of industrial caustic-chlorine cel...
International audienceObservations via a video camera of the behavior of the bubbles produced in a c...
By means of the theory of the electropotential, the geometrical shape of a new electro-plating cell ...
A novel yet efficient method for the computation of simplified tertiary current density and surface ...
A model that predicts the current density and potential distributions as a function of depth of disc...
During fuel cell operation the electrochemical activity over the electrode area is not homogeneous i...
Finite element analysis is used to calculate electrochemical potential distributions of charged spec...
ABSTRACT: Two electroplating test cells have been proposed and tested to analyze the performance of ...
The secondary current distribution is calculated for current flow between planar electrodes placed o...