Ceramic coatings for metallic interconnects play a key role in limiting corrosion and chromium evaporation in solid oxide cells. This study presents the upscaling of the electrophoretic deposition (EPD) technique to process Mn-Co spinels on real-dimension Crofer 22 APU interconnects and the test in a SOFC stack. Area specific resistance of long-term test conducted for 5000 h at 850 °C demonstrated that two-steps sintering has a significant influence on the coating performance; an area specific resistance degradation rate of 0.5 mΩ cm2 kh−1 is recorded. Stack test, operated in fuel cell mode at 850 °C for 3000 h under application of 227 mA/cm², including 5 thermal cycles, demonstrated the effectiveness of the electrophoretically deposited Mn...
Solid oxide fuel cells (SOFC) are one of the most effective ways to produce electrical energy and ar...
Modern solid oxide fuel cells (SOFCs) operate at sufficiently low temperatures to allow the use of a...
Metallic interconnects in intermediate temperature solid oxide fuel cells (IT-SOFC) stacks form Cr2O...
Ceramic coatings for metallic interconnects play a key role in limiting corrosion and chromium evapo...
We report a systematic microstructural and electrical characterization of iron doped Mn–Co spinel co...
Cr-containing stainless steels are widely used as metallic interconnects for SOFCs. Volatile Cr-cont...
Fe-doped Mn1,5Co1,5O4 coatings on Crofer22APU were processed by an electrophoretic co-deposition met...
Manganese cobalt spinel oxides are promising materials for protective coatings for solid oxide fuel ...
The Cu doping of the Mn–Co spinel is obtained “in-situ” by electrophoretic co-deposition of CuO and ...
Manganese cobalt spinel oxides are promising materials for protective coatings for solid oxide fuel ...
Manganese cobalt spinel oxides are promising materials for protective coatings for solid oxide fuel ...
The interconnect that is applied with protective coating which is (MnCO)3O4 spinel coated stainless ...
The major degradation issues of solid oxide fuel cells (SOFC) are associated with the oxide scale gr...
MnCo2O4, MnCo1.7Cu0.3O4 and MnCo1.7Fe0.3O4 are investigated as coatings for corrosion protection of ...
Manganese cobaltite-based spinel coatings have been reported to effectively limit oxidation and Cr-e...
Solid oxide fuel cells (SOFC) are one of the most effective ways to produce electrical energy and ar...
Modern solid oxide fuel cells (SOFCs) operate at sufficiently low temperatures to allow the use of a...
Metallic interconnects in intermediate temperature solid oxide fuel cells (IT-SOFC) stacks form Cr2O...
Ceramic coatings for metallic interconnects play a key role in limiting corrosion and chromium evapo...
We report a systematic microstructural and electrical characterization of iron doped Mn–Co spinel co...
Cr-containing stainless steels are widely used as metallic interconnects for SOFCs. Volatile Cr-cont...
Fe-doped Mn1,5Co1,5O4 coatings on Crofer22APU were processed by an electrophoretic co-deposition met...
Manganese cobalt spinel oxides are promising materials for protective coatings for solid oxide fuel ...
The Cu doping of the Mn–Co spinel is obtained “in-situ” by electrophoretic co-deposition of CuO and ...
Manganese cobalt spinel oxides are promising materials for protective coatings for solid oxide fuel ...
Manganese cobalt spinel oxides are promising materials for protective coatings for solid oxide fuel ...
The interconnect that is applied with protective coating which is (MnCO)3O4 spinel coated stainless ...
The major degradation issues of solid oxide fuel cells (SOFC) are associated with the oxide scale gr...
MnCo2O4, MnCo1.7Cu0.3O4 and MnCo1.7Fe0.3O4 are investigated as coatings for corrosion protection of ...
Manganese cobaltite-based spinel coatings have been reported to effectively limit oxidation and Cr-e...
Solid oxide fuel cells (SOFC) are one of the most effective ways to produce electrical energy and ar...
Modern solid oxide fuel cells (SOFCs) operate at sufficiently low temperatures to allow the use of a...
Metallic interconnects in intermediate temperature solid oxide fuel cells (IT-SOFC) stacks form Cr2O...