A percolation model, accounting for polydispersion of powders and presence of pore formers (i.e. porosity), is presented to predict effective properties of composite electrodes for solid oxide fuel cells, such as the three-phase boundary length and the mean hydraulic radius. Porosity affects both numbers of contacts (so probabilities of connection) and number of particles per unit volume. Both these effects, together with granulometric distribution, are accounted for the estimation of effective properties. As a consequence, the theory can predict numbers of contacts, coordination numbers and therefore effective properties of the electrode for multicomponent polydisperse mixtures. Model simulations show that the three-phase boundary length s...
International audienceThe composite anode and cathode of solid oxide fuel cells (SOFC) are modelled ...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
A mechanistic model for the prediction of total and active three phase boundary density (TPB), in co...
A percolation model, accounting for polydispersion of powders and presence of pore formers (i.e. por...
Percolation theory is generalized to predict the effective properties of specific solid oxide fuel c...
A modelling framework for the prediction of effective properties in porous SOFC electrodes is presen...
A previously developed microstructure model of a solid oxide fuel cell (SOFC) electrode-electrolyte ...
A Monte Carlo percolation model previously used to characterize Triple Phase Boundary (TPB) formatio...
Solid oxide fuel cells with graded electrodes consisting of multiple composite layers yield generall...
The effective conductivity (σeff) of solid oxide fuel cell (SOFC) electrode is an important paramete...
International audienceA solid oxide fuel cell (SOFC) composite electrode exhibits a superior perform...
A model for the description of transport and electrochemical processes in solid oxide fuel cell (SOF...
This article presents a numerical framework for the computation of the effective transport propertie...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
A Monte Carlo percolation model has been developed and utilized to characterize the factors controll...
International audienceThe composite anode and cathode of solid oxide fuel cells (SOFC) are modelled ...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
A mechanistic model for the prediction of total and active three phase boundary density (TPB), in co...
A percolation model, accounting for polydispersion of powders and presence of pore formers (i.e. por...
Percolation theory is generalized to predict the effective properties of specific solid oxide fuel c...
A modelling framework for the prediction of effective properties in porous SOFC electrodes is presen...
A previously developed microstructure model of a solid oxide fuel cell (SOFC) electrode-electrolyte ...
A Monte Carlo percolation model previously used to characterize Triple Phase Boundary (TPB) formatio...
Solid oxide fuel cells with graded electrodes consisting of multiple composite layers yield generall...
The effective conductivity (σeff) of solid oxide fuel cell (SOFC) electrode is an important paramete...
International audienceA solid oxide fuel cell (SOFC) composite electrode exhibits a superior perform...
A model for the description of transport and electrochemical processes in solid oxide fuel cell (SOF...
This article presents a numerical framework for the computation of the effective transport propertie...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
A Monte Carlo percolation model has been developed and utilized to characterize the factors controll...
International audienceThe composite anode and cathode of solid oxide fuel cells (SOFC) are modelled ...
This paper presents a mathematical model of mass and charge transport and electrochemical reaction i...
A mechanistic model for the prediction of total and active three phase boundary density (TPB), in co...