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Structural stability and high-temperature electrical properties of cation-ordered/disordered perovskite LaBaCoO

Release Time:2019-03-09  Hits:

Indexed by: Journal Article

Date of Publication: 2012-01-05

Journal: MATERIALS CHEMISTRY AND PHYSICS

Included Journals: EI、SCIE

Volume: 131

Issue: 3

Page Number: 642-646

ISSN: 0254-0584

Key Words: Ceramics; Sol-gel growth; Crystal structure; Electrical properties

Abstract: A-site cation-disordered/ordered perovskite oxide LaBaCoO was synthesized by sol-gel method. Disordered LaBaCoO has higher conductivities than the ordered counterpart due to higher concentration of charge carriers, and is more stable at temperatures up to 850 degrees C and in argon, air and oxygen. Different conduction behavior in air/oxygen and argon suggests a p-type to n-type conduction transition caused by changes in chemical defects and charge compensation mode. Two conduction transitions associated with thermal-driven reduction of Co4+ to Co3+ and Co3+ to Co2+ were observed in air and oxygen. High conductivities and long-term structural stabilities suggested that LaBaCoO is a promising material as solid oxide fuel cell cathode or oxygen permeation membrane. (C) 2011 Elsevier B.V. All rights reserved.

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