We report a systematic microstructural and electrical characterization of iron doped Mn–Co spinel coatings processed by electrophoretic co-deposition of Mn1.5Co1.5O4 and Fe2O3 powders on Crofer 22 APU and AISI 441 steel substrates. Iron addition to Mn–Co spinel coating leads to a reduction of the area specific resistance on both substrates, after 3200 h at 750 °C. The Fe doped Mn–Co coating both leads to a thinner oxide scale and reduces the sub scale oxidation for the Crofer 22 APU substrate. Fe doped Mn–Co on AISI 441 shows both a thicker oxide scale and low area specific resistance values, likely due to a doping effect of the oxide scale by minor alloying elements. The different mechanisms by which iron doping of Mn–Co spinels can influe...
To prevent Cr poisoning of the cathode and to retain high conductivity during solid oxide fuel cell ...
Mn-Co and Cu-Mn based alloy coatings are deposited on 430 SS by high energy micro-arc alloying proce...
To prevent Cr poisoning of the cathode and to retain high conductivity during solid oxide fuel cell ...
Manganese cobaltite-based spinel coatings have been reported to effectively limit oxidation and Cr-e...
Fe-doped Mn1,5Co1,5O4 coatings on Crofer22APU were processed by an electrophoretic co-deposition met...
Ceramic coatings for metallic interconnects play a key role in limiting corrosion and chromium evapo...
The Cu doping of the Mn–Co spinel is obtained “in-situ” by electrophoretic co-deposition of CuO and ...
MnCo2O4, MnCo1.7Cu0.3O4 and MnCo1.7Fe0.3O4 are investigated as coatings for corrosion protection of ...
This paper seeks to examine how the Mn–Co spinel interconnect coating microstructure can influence C...
Ceramic coatings for metallic interconnects play a key role in limiting corrosion and chromium evapo...
The major degradation issues of solid oxide fuel cells (SOFC) are associated with the oxide scale gr...
The application of ceramic coatings has been demonstrated as an effective technique to suppress the ...
With the reduction of solid oxide fuel cell (SOFC) operation temperature from 1000°C to 800°C, it ...
Manganese cobalt oxide spinel doped with Fe2O3 was studied as a protective coating on ferritic stain...
Manganese cobalt oxide spinel doped with Fe2O3 was studied as a protective coating on ferritic stain...
To prevent Cr poisoning of the cathode and to retain high conductivity during solid oxide fuel cell ...
Mn-Co and Cu-Mn based alloy coatings are deposited on 430 SS by high energy micro-arc alloying proce...
To prevent Cr poisoning of the cathode and to retain high conductivity during solid oxide fuel cell ...
Manganese cobaltite-based spinel coatings have been reported to effectively limit oxidation and Cr-e...
Fe-doped Mn1,5Co1,5O4 coatings on Crofer22APU were processed by an electrophoretic co-deposition met...
Ceramic coatings for metallic interconnects play a key role in limiting corrosion and chromium evapo...
The Cu doping of the Mn–Co spinel is obtained “in-situ” by electrophoretic co-deposition of CuO and ...
MnCo2O4, MnCo1.7Cu0.3O4 and MnCo1.7Fe0.3O4 are investigated as coatings for corrosion protection of ...
This paper seeks to examine how the Mn–Co spinel interconnect coating microstructure can influence C...
Ceramic coatings for metallic interconnects play a key role in limiting corrosion and chromium evapo...
The major degradation issues of solid oxide fuel cells (SOFC) are associated with the oxide scale gr...
The application of ceramic coatings has been demonstrated as an effective technique to suppress the ...
With the reduction of solid oxide fuel cell (SOFC) operation temperature from 1000°C to 800°C, it ...
Manganese cobalt oxide spinel doped with Fe2O3 was studied as a protective coating on ferritic stain...
Manganese cobalt oxide spinel doped with Fe2O3 was studied as a protective coating on ferritic stain...
To prevent Cr poisoning of the cathode and to retain high conductivity during solid oxide fuel cell ...
Mn-Co and Cu-Mn based alloy coatings are deposited on 430 SS by high energy micro-arc alloying proce...
To prevent Cr poisoning of the cathode and to retain high conductivity during solid oxide fuel cell ...