Ideas, tested and shared.
Selected journal articles on electrochemical materials, protective coatings, and high-temperature degradation.
Long-term stability and oxidation behavior of Mn₂CuO₄, Mn₁.₉Fe₀.₁CuO₄, Mn₁.₇Fe₀.₃CuO₄ coatings on SOFC interconnects: summary of a 10,000-h oxidation test
Journal of Power Sources · 674, 239785
Modeling of microstructure evolution during high-temperature oxidation of porous Fe-Cr steels
Materials & Design · 249, 113536
Development and evaluation of interconnect protective coatings based on commercial Mn₁.₉CuFe₀.₁O₄ spinel powder
Journal of the European Ceramic Society · 45 (7), 117259
Electrophoretic deposition of novel hybrid MnCo₂O₄: Mn₁.₇CuFe₀.₃O₄ spinel protective coating on stainless-steel metallic interconnects for SOFCs application
International Journal of Hydrogen Energy · 158
Effect of process parameters on properties of Mn₁.₅CuFe₀.₅O₄ spinel oxide coatings deposited by spray pyrolysis method
International Journal of Hydrogen Energy · 130, 213–229
Oxidation kinetics and electrical properties of oxide scales formed under exposure to air and Ar–H₂–H₂O atmospheres on the Crofer 22 H ferritic steel for high-temperature applications such as interconnects in solid oxide cell stacks
International Journal of Hydrogen Energy · 94, 209–222
Degradation mechanisms and protective coatings for ferritic stainless-steel interconnects of solid oxide fuel cells: A review
Materials Today Communications · 41, 110802
Developing high-performance oxygen electrodes for intermediate solid oxide cells (SOC) prepared by Ce₀.₈Gd₀.₂O₂−δ backbone infiltration
Applied Physics A · 130, 779
Preparation of MnCo₂O₄ and Mn₁.₇CuFe₀.₃O₄ single-layer, and novel MnCo₂O₄/Mn₁.₇CuFe₀.₃O₄ dual-layer spinel protective coatings on complex-shaped metallic interconnects by EPD method
International Journal of Hydrogen Energy · 83, 563–576
CuMn₁.₇Fe₀.₃O₄–RE₂O₃ (RE = Y, Gd) bilayers as protective interconnect coatings for solid oxide cells
Journal of the European Ceramic Society · 44 (15)
Pre-oxidation of porous ferritic Fe22Cr alloys for lifespan extension at high-temperature
Corrosion Science · 234, 112129
High-temperature Corrosion of ~30 Pct Porous FeCr Stainless Steels in Air: Long-Term Evaluation Up to Breakaway
Metallurgical and Materials Transactions A · 54, 2244–2258
Morphology changes in Fe-Cr porous alloys upon high-temperature oxidation quantified by X-ray tomographic microscopy
Materials & Design · 215, 110492
High temperature corrosion evaluation and lifetime prediction of porous Fe22Cr stainless steel in air in temperature range 700–900°C
Corrosion Science · 189, 109589