A comprehensive micromodel to predict the electrochemical performance of porous composite LSM-YSZ cathodes in solid oxide fuel cells (SOFCs) is developed. The random packing sphere model is used to estimate the cathode microstructural properties required for the micromodel. The micromodel developed takes into account the complex interdependency among the mass transport, electron and ion transports, and the electrochemical reaction, and can be used for optimization of the microstructure of porous LSM-YSZ composite cathodes. It is shown that the electrochemical performance of these cathodes depends on the microstructural variables of the cathode porosity, thickness, particle size ratio, and size and volume fraction of LSM particles. The effec...
International audienceOne approach to improve the performances of a solid oxide fuel cell (SOFC) cat...
International audienceA composite electrode comprising a porous mixture of solid electrolyte (typica...
The performance of solid oxide fuel cells (SOFCs) at the cell and system levels is studied using com...
A steady-state mathematical model of charge and mass transport and electrochemical reaction in porou...
A steady-state mathematical model of charge and mass transport and electrochemical reaction in porou...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
A steady-state mathematical model of charge and mass transport and electrochemical reaction in porou...
A new anode micromodel for solid oxide fuel cells to predict the electrochemical performance of hydr...
A steady-state mathematical model of charge and mass transport and electrochemical reaction in porou...
A model for the description of transport and electrochemical processes in solid oxide fuel cell (SOF...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
The cathode represents the main source of energy loss in hydrogen fed solid oxide fuel cells (SOFCs)...
This thesis details research performed in modeling, simulation, and rational design of porous SOFC c...
The cathode represents the main source of energy loss in hydrogen fed solid oxide fuel cells (SOFCs)...
International audienceTheoretical calculations and experimental results have clearly demonstrated th...
International audienceOne approach to improve the performances of a solid oxide fuel cell (SOFC) cat...
International audienceA composite electrode comprising a porous mixture of solid electrolyte (typica...
The performance of solid oxide fuel cells (SOFCs) at the cell and system levels is studied using com...
A steady-state mathematical model of charge and mass transport and electrochemical reaction in porou...
A steady-state mathematical model of charge and mass transport and electrochemical reaction in porou...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
A steady-state mathematical model of charge and mass transport and electrochemical reaction in porou...
A new anode micromodel for solid oxide fuel cells to predict the electrochemical performance of hydr...
A steady-state mathematical model of charge and mass transport and electrochemical reaction in porou...
A model for the description of transport and electrochemical processes in solid oxide fuel cell (SOF...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
The cathode represents the main source of energy loss in hydrogen fed solid oxide fuel cells (SOFCs)...
This thesis details research performed in modeling, simulation, and rational design of porous SOFC c...
The cathode represents the main source of energy loss in hydrogen fed solid oxide fuel cells (SOFCs)...
International audienceTheoretical calculations and experimental results have clearly demonstrated th...
International audienceOne approach to improve the performances of a solid oxide fuel cell (SOFC) cat...
International audienceA composite electrode comprising a porous mixture of solid electrolyte (typica...
The performance of solid oxide fuel cells (SOFCs) at the cell and system levels is studied using com...