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BaCe1-x-yZrxYyO3-d proton conductors: the role of the synthetic route on their properties

Academic Article
Publication Date:
2008
abstract:
Proton conducting electrolyte materials are promising candidates for the development of low temperature solid oxide fuel cells. Among them, various doped barium cerate compounds, such as BaCe1-xYxO3-?, have been intensively investigated because of their high proton conductivity. As a drawback, cerates are chemically unstable in CO2-containing atmospheres, such as in case of hydrocarbon or syngas fuelled fuel cells. Conversely, doped barium zirconates electrolyte materials exhibit high chemical stability but lower proton conductivity. A goal of this work was to obtain full-density proton conducting materials having both high conductivity and good chemical stability. In particular, the compositions investigated in this work were BaCe1-x-yZrxYyO3-? (x=0, 0.1, 0.2, 0.3, 0.4; y=0.15, 0.20). The partial substitution of Ce by Zr in doped barium cerate considerably increased their chemical stability in CO2 atmosphere without sensibly affecting the conductivity.
Iris type:
01.01 Articolo in rivista
Keywords:
BaCe1-x-yZrxYyO3-d; Cerates; proton conductors
List of contributors:
Malavasi, Lorenzo; Boldrini, Stefano; Chiodelli, Gaetano; Doubova, Lioudmila; Fabrizio, Monica; Gerbasi, Rosalba; Battagliarin, Marino; Barison, Simona; Mortalo', Cecilia
Authors of the University:
BARISON SIMONA
BOLDRINI STEFANO
FABRIZIO MONICA
MORTALO' CECILIA
Handle:
https://iris.cnr.it/handle/20.500.14243/146763
Published in:
ECS TRANSACTIONS (ONLINE)
Journal
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