In this review paper, a critical assessment of the main degradation processes in three key components of solid oxide fuel cells and electrolysers (negative and positive electrodes and the interconnect) is undertaken, attempting prioritization of respective degradation effects and recommendation of the best approaches in their experimental ascertainment and numerical modeling. Besides different approaches to quantifying the degradation rate of an operating solid oxide cell (SOC), the latest advancements in microstructural representation (3D imaging and reconstruction) of SOC electrodes are reviewed, applied to the quantification of triple-phase boundary (TPB) lengths and morphology evolution over time. The intrinsic degradation processes in ...
The development of decarbonised systems is being fostered by the increasing demand for technological...
High temperature electrolysis has a high potential for the efficient production of hydrogen or synga...
Renewable energy sources such as solar and wind power are important for the future energy supply cha...
In this review paper, a critical assessment of the main degradation processes in three key component...
Electrode microstructure is one of the main factors determining the performance and durability of so...
In recent years extended focus has been placed on monitoring and understanding degradation mechanism...
International audienceSolid Oxide Cells (SOCs) are electrochemical devices working at high temperatu...
Degradation-related issues are among the main limitations to make solid oxide electrolysis cells (SO...
Mitigating degradation is essential for extending the lifetime of solid oxide electrochemical cells ...
Ce travail a été dédié à l’étude de la dégradation des piles à oxyde solide fonctionnant en mode éle...
Despite the high efficiency and flexibility of fuel cells, which make them an attractive technology ...
Solid oxide cells are electrochemical devices used for the conversion of chemical energy to electric...
Solid oxide fuel cells (SOFC) are highly efficient electrochemical conversion devices for the produc...
Solid oxide electrochemical systems, such as solid oxide fuel cells (SOFC), solid oxide electrolysis...
Solid oxide fuel cells are characterized by very high efficiency, low emissions level, and large fue...
The development of decarbonised systems is being fostered by the increasing demand for technological...
High temperature electrolysis has a high potential for the efficient production of hydrogen or synga...
Renewable energy sources such as solar and wind power are important for the future energy supply cha...
In this review paper, a critical assessment of the main degradation processes in three key component...
Electrode microstructure is one of the main factors determining the performance and durability of so...
In recent years extended focus has been placed on monitoring and understanding degradation mechanism...
International audienceSolid Oxide Cells (SOCs) are electrochemical devices working at high temperatu...
Degradation-related issues are among the main limitations to make solid oxide electrolysis cells (SO...
Mitigating degradation is essential for extending the lifetime of solid oxide electrochemical cells ...
Ce travail a été dédié à l’étude de la dégradation des piles à oxyde solide fonctionnant en mode éle...
Despite the high efficiency and flexibility of fuel cells, which make them an attractive technology ...
Solid oxide cells are electrochemical devices used for the conversion of chemical energy to electric...
Solid oxide fuel cells (SOFC) are highly efficient electrochemical conversion devices for the produc...
Solid oxide electrochemical systems, such as solid oxide fuel cells (SOFC), solid oxide electrolysis...
Solid oxide fuel cells are characterized by very high efficiency, low emissions level, and large fue...
The development of decarbonised systems is being fostered by the increasing demand for technological...
High temperature electrolysis has a high potential for the efficient production of hydrogen or synga...
Renewable energy sources such as solar and wind power are important for the future energy supply cha...