Electrochemical promotion of propane deep oxidation on doped lanthanum manganites
Electrochemical catalysts based on LSM deposited on YSZ were used for propane deep oxidation. Electrochemical characterizations such as impedance spectroscopy and current–overpotential measurements were performed. Different thicknesses of LSM films were catalytically characterized and EPOC experimen...
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Published in | Ionics Vol. 14; no. 3; pp. 235 - 241 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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Berlin/Heidelberg
Springer-Verlag
01.06.2008
Springer Verlag |
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Abstract | Electrochemical catalysts based on LSM deposited on YSZ were used for propane deep oxidation. Electrochemical characterizations such as impedance spectroscopy and current–overpotential measurements were performed. Different thicknesses of LSM films were catalytically characterized and EPOC experiments were carried out on those electrochemical catalysts. It was found that the reaction rates can be in situ tuned by applying an anodic polarization but with weak promotional effects. The faradaic efficiency decreased as the applied potential, the temperature, and the thickness of the catalyst increased. |
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AbstractList | Electrochemical catalysts based on LSM deposited on YSZ were used for propane deep oxidation. Electrochemical characterizations such as impedance spectroscopy and current–overpotential measurements were performed. Different thicknesses of LSM films were catalytically characterized and EPOC experiments were carried out on those electrochemical catalysts. It was found that the reaction rates can be in situ tuned by applying an anodic polarization but with weak promotional effects. The faradaic efficiency decreased as the applied potential, the temperature, and the thickness of the catalyst increased. |
Author | Pagnier, T. Roux, C. Deloume, J. P. Revel, R. Vernoux, P. Siebert, E. Steil, M. C. Roche, V. |
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Keywords | Catalytic combustion Electrochemical catalyst C Propane oxidation LSM Yttria-stabilized zirconia H Impedance spectroscopy EPOC NEMCA electrochemical catalyst impedance spectroscopy catalytic combustion propane oxidation yttria-stabilized zirconia C3H8 |
Language | English |
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PublicationSubtitle | International Journal of IonicsThe Science and Technology of Ionic Motion |
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SubjectTerms | Chemical Sciences Chemistry Chemistry and Materials Science Condensed Matter Physics Electrochemistry Energy Storage Material chemistry Optical and Electronic Materials Original Paper Renewable and Green Energy |
Title | Electrochemical promotion of propane deep oxidation on doped lanthanum manganites |
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