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Medium-Entropy SrV1/3Fe1/3Mo1/3O3 with High Conductivity and Strong Stability as SOFCs High-Performance Anode.


ABSTRACT: Perovskite oxides using solid oxide fuel cells (SOFCs) anodes should possess high chemical stability, adequate electronic conductivity and excellent catalytic oxidation for fuel gas. In this work, the medium-entropy SrV1/3Fe1/3Mo1/3O3 (SVFMO) with Fe, V and Mo co-existing in the B site of a perovskite structure was fabricated in reducing 5% H2/Ar mixed gas: (1) SVFMO demonstrates more stable physicochemical properties when using SOFCs anodes in a reducing environment; (2) the co-existence of Fe, V and Mo in SVFMO forms more small-polaron couples, demonstrating greatly enhanced electronic conductivity. With SVFMO in a porous structure (simulating the porous anode layer), its electronic conductivity can also reach 70 S cm-1 when testing at 800 °C in an H2 atmosphere; (3) SVFMO with more oxygen vacancies achieves higher catalytic ability for fuel gas, as an SOFCs anode layer demonstrates 720 mW cm-2 at 850 °C.

SUBMITTER: Ma G 

PROVIDER: S-EPMC8953221 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Medium-Entropy SrV<sub>1/3</sub>Fe<sub>1/3</sub>Mo<sub>1/3</sub>O<sub>3</sub> with High Conductivity and Strong Stability as SOFCs High-Performance Anode.

Ma Guanjun G   Chen Dezhi D   Ji Shuaijing S   Bai Xinyun X   Wang Xinjian X   Huan Yu Y   Dong Dehua D   Hu Xun X   Wei Tao T  

Materials (Basel, Switzerland) 20220320 6


Perovskite oxides using solid oxide fuel cells (SOFCs) anodes should possess high chemical stability, adequate electronic conductivity and excellent catalytic oxidation for fuel gas. In this work, the medium-entropy SrV<sub>1/3</sub>Fe<sub>1/3</sub>Mo<sub>1/3</sub>O<sub>3</sub> (SVFMO) with Fe, V and Mo co-existing in the B site of a perovskite structure was fabricated in reducing 5% H<sub>2</sub>/Ar mixed gas: (1) SVFMO demonstrates more stable physicochemical properties when using SOFCs anodes  ...[more]

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