2016
DOI: 10.1021/acsami.5b10844
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High-Performanced Cathode with a Two-Layered R–P Structure for Intermediate Temperature Solid Oxide Fuel Cells

Abstract: Driven by the mounting concerns on global warming and energy crisis, intermediate temperature solid-oxide fuel cells (IT-SOFCs) have attracted special attention for their high fuel efficiency, low toxic gas emission, and great fuel flexibility. A key obstacle to the practical operation of IT-SOFCs is their sluggish oxygen reduction reaction (ORR) kinetics. In this work, we applied a new two-layered Ruddlesden-Popper (R-P) oxide, Sr3Fe2O7-δ (SFO), as the material for oxygen ion conducting IT-SOFCs. Density func… Show more

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Cited by 64 publications
(22 citation statements)
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References 43 publications
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“…2(a)) in SFO bulk, 12 suggesting that protons are more easily to locate at rock-salt layer while oxygen vacancies at the central of perovskite layers. Moreover, compared with those in Sr 3 Fe 2 O 7 bulk model, 12,16 values of E vac and E hyrd are much lower for surfaces, suggesting that oxygen vacancies and protons are more easily to form at surface than in bulk.…”
Section: Properties Of Sr 3 Fe 2 Omentioning
confidence: 78%
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“…2(a)) in SFO bulk, 12 suggesting that protons are more easily to locate at rock-salt layer while oxygen vacancies at the central of perovskite layers. Moreover, compared with those in Sr 3 Fe 2 O 7 bulk model, 12,16 values of E vac and E hyrd are much lower for surfaces, suggesting that oxygen vacancies and protons are more easily to form at surface than in bulk.…”
Section: Properties Of Sr 3 Fe 2 Omentioning
confidence: 78%
“…The relatively lower oxygen vacancies form energy and lower energy barrier for oxygen diffusion makes SFO have a better oxygen ion conduction than LSCF, which is good agreement with experimental investigations. 16 In conclusion, compared with perovskite oxides, SFO cathode has low oxygen vacancies formation energies and low ion diffusion energy barriers, which can bring forth excellent oxygen ion conduction. Nevertheless, its high energy barrier for O 2 dissociation may restrict its application as an excellent cathode in O-SOFCs.…”
Section: O 2 Reduction On the Sro-1 Terminal Surface In O-sofcsmentioning
confidence: 88%
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