Percolation theory is generalized to predict the effective properties of specific solid oxide fuel cell composite electrodes, which consist of a pure ion conducting material (e.g., YSZ or GDC) and a mixed electron and ion conducting material (e.g., LSCF, LSCM or CeO2). The investigated properties include the probabilities of an LSCF particle belonging to the electron and ion conducting paths, percolated three-phase-boundary electrochemical reaction sites, which are based on different assumptions, the exposed LSCF surface electrochemical reaction sites and the revised expressions for the inter-particle ionic conductivities among LSCF and YSZ materials. The effects of the microstructure parameters, such as the volume fraction of the LSCF mate...
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...
International audienceThe performances of Solid Oxide Cells (SOCs) are controlled by key microstruct...
A percolation model, accounting for polydispersion of powders and presence of pore formers (i.e. por...
2012-2013 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
A previously developed microstructure model of a solid oxide fuel cell (SOFC) electrode-electrolyte ...
International audienceA solid oxide fuel cell (SOFC) composite electrode exhibits a superior perform...
A Monte Carlo percolation model previously used to characterize Triple Phase Boundary (TPB) formatio...
© 2015 Elsevier B.V. All rights reserved. H+ based solid oxide fuel cell (SOFC) composite cathodes a...
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...
A Monte Carlo percolation model has been developed and utilized to characterize the factors controll...
In the studies of solid oxide carbonate composite fuel cell, percolation behaviour of the two phases...
We present a mechanistic modeling methodology to predict both the percolation threshold and effectiv...
International audienceThe composite anode and cathode of solid oxide fuel cells (SOFC) are modelled ...
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...
International audienceThe performances of Solid Oxide Cells (SOCs) are controlled by key microstruct...
A percolation model, accounting for polydispersion of powders and presence of pore formers (i.e. por...
2012-2013 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
A previously developed microstructure model of a solid oxide fuel cell (SOFC) electrode-electrolyte ...
International audienceA solid oxide fuel cell (SOFC) composite electrode exhibits a superior perform...
A Monte Carlo percolation model previously used to characterize Triple Phase Boundary (TPB) formatio...
© 2015 Elsevier B.V. All rights reserved. H+ based solid oxide fuel cell (SOFC) composite cathodes a...
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...
A Monte Carlo percolation model has been developed and utilized to characterize the factors controll...
In the studies of solid oxide carbonate composite fuel cell, percolation behaviour of the two phases...
We present a mechanistic modeling methodology to predict both the percolation threshold and effectiv...
International audienceThe composite anode and cathode of solid oxide fuel cells (SOFC) are modelled ...
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...
International audienceThe performances of Solid Oxide Cells (SOCs) are controlled by key microstruct...