The mechanism whereby structural modification on the mesoscale order (10–100 μm) improves the electrochemical performance of anode-supported solid oxide fuel cells (SOFCs) is elucidated. After preparing two types of anode-supported SOFC having different electrode–electrolyte interfacial areas, we carry out their structural analyses and electrochemical characterization. Next, we develop a two-dimensional (2D) numerical model in which the structures of the cells are implemented and then verify its validity by comparing experimental and simulation results. It is found that the structural features in the mesoscale-modified cell, such as interfacial area enlargement and thickness inhomogeneity, cause nonuniform distributions of physicochemical q...
2014-2015 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
Their reliability, fuel-flexibility, and high specific power make solid oxide fuel cells (SOFCs) pro...
A mathematical model was developed for modelling the performance of solid oxide fuel cell (SOFC) wit...
Research in the field of solid oxide fuel cells in recent years has primarily focused on the improve...
International audienceIncreasing the SOFC performances is many-fold: i/ at low current density, thro...
A simple, approximate analysis of the effect of differing cathode and anode areas on the measurement...
© 2016 Hydrogen Energy Publications LLCIn order to address the shortcomings of the solid oxide fuel ...
A novel approach of fabricating SOFC anode comprising graded compositions in constituent phases havi...
Performance of the solid oxide fuel cell (SOFC) is significantly affected by ohmic and concentration...
We studied the surface morphology of a modified anode structure that is capable of increasing the tr...
AbstractSolid oxide fuel cells (SOFCs) are becoming one of the main competitors among environmental ...
Solid Oxide Fuel Cells are high temperature, solid-state, electrochemical devices that can convert f...
The recent growth of 3D printing has opened the scope for designing microstructures for solid oxide ...
The solid oxide cell is a basis for highly efficient and reversible electrochemical energy conversio...
In this study, the effects of electrode microstructure and electrolyte parameters on intermediate te...
2014-2015 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
Their reliability, fuel-flexibility, and high specific power make solid oxide fuel cells (SOFCs) pro...
A mathematical model was developed for modelling the performance of solid oxide fuel cell (SOFC) wit...
Research in the field of solid oxide fuel cells in recent years has primarily focused on the improve...
International audienceIncreasing the SOFC performances is many-fold: i/ at low current density, thro...
A simple, approximate analysis of the effect of differing cathode and anode areas on the measurement...
© 2016 Hydrogen Energy Publications LLCIn order to address the shortcomings of the solid oxide fuel ...
A novel approach of fabricating SOFC anode comprising graded compositions in constituent phases havi...
Performance of the solid oxide fuel cell (SOFC) is significantly affected by ohmic and concentration...
We studied the surface morphology of a modified anode structure that is capable of increasing the tr...
AbstractSolid oxide fuel cells (SOFCs) are becoming one of the main competitors among environmental ...
Solid Oxide Fuel Cells are high temperature, solid-state, electrochemical devices that can convert f...
The recent growth of 3D printing has opened the scope for designing microstructures for solid oxide ...
The solid oxide cell is a basis for highly efficient and reversible electrochemical energy conversio...
In this study, the effects of electrode microstructure and electrolyte parameters on intermediate te...
2014-2015 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
Their reliability, fuel-flexibility, and high specific power make solid oxide fuel cells (SOFCs) pro...
A mathematical model was developed for modelling the performance of solid oxide fuel cell (SOFC) wit...