Cathode poisoning, associated with Cr evaporation from interconnect material, is one of the most important degradation mechanisms in Solid Oxide Fuel Cells when Cr<inf>2</inf>O<inf>3</inf>-forming steels are used as the interconnect material. Coating these steels with a thin Co layer has proven to decrease Cr vaporization. To reduce production costs, it is suggested that thin metallic PVD coatings be applied to each steel strip before pressing the material into interconnect shape. This process would enable high volume production without the need for an extra post-coating step. However, when the pre-coated material is mechanically deformed, cracks may form and lower the quality of the coating. In the present study, Chromium volatilization is...
Chromium evaporation and oxide scale growth are two important degradation mechanisms in SOFCs when c...
Two important degradation mechanisms in Solid Oxide Fuel Cells (SOFC) are directly related to the me...
Two important degradation mechanisms in Solid Oxide Fuel Cells (SOFC) are directly related to the me...
AbstractCathode poisoning, associated with Cr evaporation from interconnect material, is one of the ...
AbstractCathode poisoning, associated with Cr evaporation from interconnect material, is one of the ...
Cathode poisoning, associated with Cr evaporation from interconnect material, is one of the most imp...
The vaporization of Cr(VI) species and the greater electrical resistance caused by a growing oxide s...
The vaporization of Cr(VI) species and the greater electrical resistance caused by a growing oxide s...
Cr evaporation of the metallic interconnects and the resulting poisoning of the cathode continues to...
The interconnects used in solid oxide fuel cells (SOFC) are usually shaped into a corrugated form th...
High electrical efficiency, clean emissions, and the possibility to operate on a great variety of fu...
Chromium evaporation from metallic interconnects in SOFCs is commonly poisoning the cathode of SOFCs...
Cr vaporization and oxide scale growth are probably the two most detrimental degradation mechanisms ...
High electrical efficiency, clean emissions, and the possibility to operate on a great variety of fu...
Chromium evaporation and oxide scale growth are two important degradation mechanisms in SOFCs when c...
Chromium evaporation and oxide scale growth are two important degradation mechanisms in SOFCs when c...
Two important degradation mechanisms in Solid Oxide Fuel Cells (SOFC) are directly related to the me...
Two important degradation mechanisms in Solid Oxide Fuel Cells (SOFC) are directly related to the me...
AbstractCathode poisoning, associated with Cr evaporation from interconnect material, is one of the ...
AbstractCathode poisoning, associated with Cr evaporation from interconnect material, is one of the ...
Cathode poisoning, associated with Cr evaporation from interconnect material, is one of the most imp...
The vaporization of Cr(VI) species and the greater electrical resistance caused by a growing oxide s...
The vaporization of Cr(VI) species and the greater electrical resistance caused by a growing oxide s...
Cr evaporation of the metallic interconnects and the resulting poisoning of the cathode continues to...
The interconnects used in solid oxide fuel cells (SOFC) are usually shaped into a corrugated form th...
High electrical efficiency, clean emissions, and the possibility to operate on a great variety of fu...
Chromium evaporation from metallic interconnects in SOFCs is commonly poisoning the cathode of SOFCs...
Cr vaporization and oxide scale growth are probably the two most detrimental degradation mechanisms ...
High electrical efficiency, clean emissions, and the possibility to operate on a great variety of fu...
Chromium evaporation and oxide scale growth are two important degradation mechanisms in SOFCs when c...
Chromium evaporation and oxide scale growth are two important degradation mechanisms in SOFCs when c...
Two important degradation mechanisms in Solid Oxide Fuel Cells (SOFC) are directly related to the me...
Two important degradation mechanisms in Solid Oxide Fuel Cells (SOFC) are directly related to the me...