Composite electrodes are of great interest in the field of solid oxide fuel cells because their use can improve the performance of these cells. However an important correlation exists between composition, microstructure, and thickness of an electrode and its performance. This correlation has been investigated in this work using a theoretical model. The model, in order to consider all the losses occurring in an electrode, includes Ohm's law for ionic and electronic charge transport; and the Butler-Volmer equation to evaluate the activation polarizations, and mass transport equations, taking into account diffusion through porous media, to evaluate the concentration losses. The model shows that the best electrode performance is a trade-off bet...
In this study, the effects of electrode microstructure and electrolyte parameters on intermediate te...
A parametric equation for describing polarization in solid oxide fuel cells (SOFC) is presented in t...
The heart of a fuel cell is the membrane-electrode assembly consisting of two porous electrodes, whe...
The anodes used in SOFCs are composites, formed by a mixture of nickel and YSZ particles. This paper...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
Solid oxide fuel cells with graded electrodes consisting of multiple composite layers yield generall...
This work constitutes a relatively compact mathematical scheme for including the effects of restrict...
A model for the description of transport and electrochemical processes in solid oxide fuel cell (SOF...
International audienceA composite electrode comprising a porous mixture of solid electrolyte (typica...
The microstructure of a solid oxide fuel cell (SOFC) electrode has a direct impact on its transport ...
A percolation model, accounting for polydispersion of powders and presence of pore formers (i.e. por...
The limitations of mass transport at elevated temperature in porous electrodes of solid oxide cells ...
Small scale particles/pores from micrometers and down to nanometers often occur in multi-functional ...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
The effective conductivity (σeff) of solid oxide fuel cell (SOFC) electrode is an important paramete...
In this study, the effects of electrode microstructure and electrolyte parameters on intermediate te...
A parametric equation for describing polarization in solid oxide fuel cells (SOFC) is presented in t...
The heart of a fuel cell is the membrane-electrode assembly consisting of two porous electrodes, whe...
The anodes used in SOFCs are composites, formed by a mixture of nickel and YSZ particles. This paper...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
Solid oxide fuel cells with graded electrodes consisting of multiple composite layers yield generall...
This work constitutes a relatively compact mathematical scheme for including the effects of restrict...
A model for the description of transport and electrochemical processes in solid oxide fuel cell (SOF...
International audienceA composite electrode comprising a porous mixture of solid electrolyte (typica...
The microstructure of a solid oxide fuel cell (SOFC) electrode has a direct impact on its transport ...
A percolation model, accounting for polydispersion of powders and presence of pore formers (i.e. por...
The limitations of mass transport at elevated temperature in porous electrodes of solid oxide cells ...
Small scale particles/pores from micrometers and down to nanometers often occur in multi-functional ...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
The effective conductivity (σeff) of solid oxide fuel cell (SOFC) electrode is an important paramete...
In this study, the effects of electrode microstructure and electrolyte parameters on intermediate te...
A parametric equation for describing polarization in solid oxide fuel cells (SOFC) is presented in t...
The heart of a fuel cell is the membrane-electrode assembly consisting of two porous electrodes, whe...