Cathodes based on (La, Sr)MnO3 modified with PrO2 − x

The electrochemical characteristics of composite cathodes made of (La, Sr) MnO 3 -(Zr, Sc)O 2 (LSM-SSZ), modified with PrO 2 − x additive, and designed for application in solid oxide fuel cells at moderately high temperatures were studied. The relationship between activity of catalytically modified...

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Veröffentlicht in:Russian journal of electrochemistry 2009-08, Vol.45 (8), p.875-880
Hauptverfasser: Yaroslavtsev, I. Yu, Kuzin, B. L., Bronin, D. I., Vdovin, G. K., Bogdanovich, N. M.
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Sprache:eng
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Zusammenfassung:The electrochemical characteristics of composite cathodes made of (La, Sr) MnO 3 -(Zr, Sc)O 2 (LSM-SSZ), modified with PrO 2 − x additive, and designed for application in solid oxide fuel cells at moderately high temperatures were studied. The relationship between activity of catalytically modified composite LSM-SSZ cathodes and dispersity of electrocatalyst was revealed. The boundaries of the temperature range with the maximum dispersity of electrocatalyst and electrochemical activity of cathodes were found. The composite LSM-SSZ cathodes modified with PrO 2 − x were shown inert with respect to oxidation reactions of hydrocarbon fuel (methane) and highly active electrochemically with respect to oxygen reaction in non-equilibrium gas mixture of CH 4 and O 2 . In cells with (Ce, Sm)O 2 (SDC) and (Zr, Y)O 2 (YSZ) electrolytes, their overvoltage is below 80 mV at the current density about 0.5 A/cm 2 and temperature of 600°C. These electrodes can be used as cathodes in single-chamber fuel cells. Long-term experiments were carried out to study time stability of characteristics of the said composite cathodes. The studied electrodes show parabolic or damped exponential time curves of polarization resistance if contacting with YSZ or SDC electrolyte, respectively. According to the forecast based on the experimental regularities, the polarization resistance of LSM-SSZ cathodes in 10,000 h will not exceed 0.4 or 0.13 Ohm cm 2 , respectively, if YSZ or SDC electrolyte is used.
ISSN:1023-1935
1608-3342
DOI:10.1134/S1023193509080060