This paper shows the developments of an equivalent circuit model adopted to interpret the deconvoluted electrochemical impedance spectra of an Ni-YSZ/YSZ/GDC/LSCF solid oxide fuel cell obtained by varying the operating temperature and the oxygen partial pressure under a fixed load. This allowed to unfold the physicochemical processes occurring within the anode supported cell and to identify which elements are responsible for major polarization losses. Furthermore, this model has proved to be effective even in the high frequency region, which is often beset by the onset of troublesome artifacts, as underlined by the comparison with the galvanic current interruption technique
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
Solid oxide fuel cells (SOFCs) have demonstrated higher fuel-to-electricity conversion efficiency th...
The energy sector is undergoing several transformations in an effort to tackle climate change, drivi...
Solid Oxide Cells are potentially one of the most efficient energy conversion systems, yet unfavoura...
Solid Oxide Cells are potentially one of the most efficient energy conversion systems, yet unfavoura...
Solid Oxide Cells are potentially one of the most efficient energy conversion systems, yet unfavoura...
Electrochemical Impedance Spectroscopy (EIS) is one of the most common techniques to characterize So...
A finite element model of the impact of diverse degradation mechanisms on the impedance spectrum of ...
Impedance measurements were conducted under practical load conditions in solid oxide fuel cells of d...
A numerical model of the steady state and alternating current behaviour of a solid-oxide fuel cell i...
In this paper, the behavior of an anode-supported solid oxide fuel cell is studied by using voltage-...
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
Electrochemical Impedance Spectroscopy (EIS) is a frequently used measurement technique toinvestigat...
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
Solid oxide fuel cells (SOFCs) have demonstrated higher fuel-to-electricity conversion efficiency th...
The energy sector is undergoing several transformations in an effort to tackle climate change, drivi...
Solid Oxide Cells are potentially one of the most efficient energy conversion systems, yet unfavoura...
Solid Oxide Cells are potentially one of the most efficient energy conversion systems, yet unfavoura...
Solid Oxide Cells are potentially one of the most efficient energy conversion systems, yet unfavoura...
Electrochemical Impedance Spectroscopy (EIS) is one of the most common techniques to characterize So...
A finite element model of the impact of diverse degradation mechanisms on the impedance spectrum of ...
Impedance measurements were conducted under practical load conditions in solid oxide fuel cells of d...
A numerical model of the steady state and alternating current behaviour of a solid-oxide fuel cell i...
In this paper, the behavior of an anode-supported solid oxide fuel cell is studied by using voltage-...
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
Electrochemical Impedance Spectroscopy (EIS) is a frequently used measurement technique toinvestigat...
International audienceThis paper deals with the monitoring of the internal condition of a 6-cell sol...
Solid oxide fuel cells (SOFCs) have demonstrated higher fuel-to-electricity conversion efficiency th...
The energy sector is undergoing several transformations in an effort to tackle climate change, drivi...