4.5 Article

Structural stability and oxygen permeability of cerium lightly doped BaFeO3-δ ceramic membranes

期刊

SOLID STATE IONICS
卷 177, 期 33-34, 页码 2917-2921

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.ssi.2006.08.027

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oxygen permeation; ceramic membranes; stability; perovskite

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The structural stability under reducing environment and oxygen permeation fluxes of perovskite-type BaCexCFe1-xO3-delta (0 <= x <= 0.15) ceramic membranes were investigated. The XRD results showed that 5% of cerium doping into the perovskite B-site can make the BaFeO3-delta transform from the hexagonal structure to the cubic structure, and make the structure stable under 10% H-2-Ar mixed gas at 900 degrees C for 1 h, but breaks down after 5 h. Lattice parameters and oxygen non-stoichiometry of the as-prepared and reduced samples were measured. Oxygen permeation fluxes of the membranes were measured between 700 and 950 degrees C. Oxygen permeation during the cooling and heating circles showed that 5% of cerium doping into the perovskite B-site can avoid the phase transformation. The optimum cerium-doped amount on the B-sites was found to be 10%. (c) 2006 Elsevier B.V. All rights reserved.

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