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Apatite type rare earth silicates are being extensively studied as electrolyte material for intermediate temperature solid oxide fuel cells (SOFC).
A cubic perovskite oxide SrFe0.7Cu0.3O3-δ (SFC) is investigated as a novel cathode material for intermediate temperature solid oxide fuel cells (IT-SOFCs).
La0.8Sr0.2Ga0.8Mg0.2O3-δ (LSGM), a promising electrolyte material for intermediate temperature solid oxide fuel cells, can be sintered to a fully dense state by a flash-sintering technique.
The A-site-ordered layered perovskite PrBa0.5Sr0.5Co2O5+δ (PBSC) was evaluated as new cathode material for intermediate temperature solid oxide fuel cells (IT-SOFCs).
A promising perovskite oxide, Pr0.4Sr0.6Co0.19Fe0.76Mo0.05O3-σ (PSCFM), is developed as cathode material for intermediate temperature solid oxide fuel cells (IT-SOFCs).
These values are considerably lower than that of a LSM82-8YSZ cathode, suggesting that the SSM55 is a promising cathode material for intermediate temperature solid oxide fuel cells operated at 750 °C and above.
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The Ni Cu LSGM is not thought to be a suitable anode material for intermediate-temperature LaGaO3-based solid oxide fuel cells operating below 800 °C.
This paper reports on synthesis and evaluation of an intergrowth oxide, GdSrCoO4+δ (GSCO), as a new cathode material for intermediate-temperature solid oxide fuel cells.
Our results not only provide one new promising composite electrolyte material for intermediate-temperature SOFCs but the composition dependence can actually provide a guide for the material design, optimization.
The effects of Sr doping on the Ba-site of SmBaCo2O5+δ in term of structure characteristics, thermal expansion coefficients (TECs), electrical properties and electrochemical performance have been investigated as cathode material for intermediate-temperature solid oxide fuel cells (IT-SOFCs).
Pr-deficient Pr1−xBaCo2O5+δ (P1−xBCoxidesdes are evaluated as cathode materials for intermediate temperature solid oxide fuel cells (IT-SOFCs).
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