On the link between bulk structure and surface activity of double perovskite based SOFC cathodes
The surface oxygen exchange rates for NdBaCo2O5+d (NBCO), PrBaCo2O5+d (PBCO), and GdBaCo2O5+d (GBCO) were measured between 573K and 973K using an isotopic pulse exchange technique. Impedance spectroscopy was utilized to compare these surface rates with electrode performance. Both experiments showed...
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Veröffentlicht in: | Solid state ionics 2014-07, Vol.260, p.55-59 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The surface oxygen exchange rates for NdBaCo2O5+d (NBCO), PrBaCo2O5+d (PBCO), and GdBaCo2O5+d (GBCO) were measured between 573K and 973K using an isotopic pulse exchange technique. Impedance spectroscopy was utilized to compare these surface rates with electrode performance. Both experiments showed NBCO to be the most active material, with both PBCO and GBCO approximately equal but with lower surface exchange rates and higher electrode area specific resistance. A discontinuity in both data sets was linked to a crystal phase transition in GBCO. It is proposed that the electrode performance is limited by the oxygen exchange rate.
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•Surface oxygen exchange rate was measured for double perovskite SOFC cathodes.•The electrochemical performance was characterized by impedance spectroscopy.•SOFC cathode performance was linked to both surface and bulk properties. |
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ISSN: | 0167-2738 1872-7689 |
DOI: | 10.1016/j.ssi.2014.03.015 |