High temperature phase stabilities and electrochemical properties of InBaCo4−xZnxO7 cathodes for intermediate temperature solid oxide fuel cells
Author:
Publisher
Elsevier BV
Subject
Electrochemistry,General Chemical Engineering
Reference18 articles.
1. Formation of Co3+ octahedra and tetrahedra in YBaCo4O8.1
2. Structural and magnetic properties of the Kagomé antiferromagnet YbBaCo4O7
3. Spin, charge, and lattice coupling in triangular and Kagomé sublattices ofCoO4tetrahedra:YbBaCo4O7+δ(δ=0,1)
4. Oxygen Nonstoichiometry in YBaCo4O7+δ: Large Low-Temperature Oxygen Absorption/Desorption Capability
5. Uncommon oxygen intake/release capability of layered cobalt oxides, REBaCo4O7+δ: Novel oxygen-storage materials
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1. Basic properties of low thermal expansion coefficient (Y0.5Ca0.5)1−xInxBaCo3ZnO7+δ (x=0, 0.1, 0.2, 0.3) solid solutions for solid oxide fuel cell cathode materials;Materials Research Bulletin;2022-12
2. Phase Stability, Oxygen-Storage Capability, and Electrocatalytic Activity in Solid Oxide Fuel Cells of (Y, In, Ca)BaCo4–yGayO7+δ;Chemistry of Materials;2016-12-12
3. Phase stability and electrochemical performance of Y0.5Ca0.5−xInxBaCo3.2Ga0.8O7+δ (x = 0 and 0.1) as cathodes for intermediate temperature solid oxide fuel cells;Journal of Alloys and Compounds;2016-09
4. Cobalt-free quintuple perovskite Sm 1.875 Ba 3.125 Fe 5 O 15−δ as a novel cathode for intermediate temperature solid oxide fuel cells;Ceramics International;2016-06
5. Evaluation of double perovskite Sr2FeTiO6−δ as potential cathode or anode materials for intermediate-temperature solid oxide fuel cells;Ceramics International;2015-11
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