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A stable and thin BaCe0.7Nb0.1Gd0.2O3−δ membrane prepared by simple all-solid-state process for SOFC

✍ Scribed by Kui Xie; Ruiqiang Yan; Xiaoxiang Xu; Xingqin Liu; Guangyao Meng


Book ID
104025446
Publisher
Elsevier Science
Year
2009
Tongue
English
Weight
627 KB
Volume
187
Category
Article
ISSN
0378-7753

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✦ Synopsis


BaCe 0.7 Nb 0.1 Gd 0.2 O 3-ı (BCNG) and BaCe 0.8 Gd 0.2 O 3-ı (BCG) were synthesized by solid-state reaction method. The samples obtained were exposed in 3% CO 2 + 3% H 2 O + 94% N 2 at 700 • C for 20 h in order to evaluate their chemical stability. It was found that BCNG exhibited adequate chemical stability while BCG decomposed and impurities were observed in the final products. Additionally, the BCNG demonstrated similar behavior as BCG in high-temperature thermal stability and in TEC and displayed a conductivity of 0.007 S cm -1 at 700 • C in humid hydrogen which was slightly lower than BCG (0.009 S cm -1 ) at the same conditions. Fuel cells with BCNG as electrolyte were successfully fabricated and the thickness of BCNG layer can be easily adjusted as lower as 10 m by a simple all-solid-state process. The fuel cells exhibited OCV as high as 1.0 V at 700 • C with maximum output power 340 mW cm -2 and interfacial resistance as low as 0.51 cm 2 .


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