## Abstract The electrochemical performance of La~2~NiO~4~‐Ce~0.8~Sm~0.2~O~1.9~ composite cathode material with Ce~0.8~Sm~0.2~O~1.9~ electrolyte and Ni‐Ce~0.8~Sm~0.2~O~1.9~ anode has been studied. Powders of La~2~NiO~4~ were prepared by a nitrate‐citrate route whereas commercial Ce~0.8~Sm~0.2~O~1.9
Preparation and investigation of electrical and electrochemical properties of lanthanum-based cathode for solid oxide fuel cell
✍ Scribed by Amin Pakzad; Hadi Salamati; Parviz Kameli; Zahra Talaei
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 509 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0360-3199
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✦ Synopsis
In this paper, electrical and electrochemical properties of La 0.6 Sr 0.4 Co 0.2 Fe 0.8 O 3Àd (LSCF) cathode have been studied. The sample is prepared by solid-state reaction method. The results of the X-ray diffraction have been analyzed by FullProf software and it has been found that LSCF phase has been formed. Resistance of the sample versus temperature in air atmosphere has been measured and the results show that, it decreases by increasing temperature. Activation energy for electrical conductivity has been calculated by fitting the Arrhenius plot with experimental data. Also, resistance of sample has been measured at the different temperature ranges and in the presence of Oxygen/Argon atmosphere. Using electrical relaxation technique and some approximations, ionic diffusion coefficient and activation energy for ionic conductivity have been calculated.
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## Abstract The electrochemical properties of mixed conducing ceramic–ceramic composites for proton conducting fuel cells have been investigated. Different ratios of Pr~0.58~Sr~0.4~Fe~0.8~Co~0.2~O~3–δ~–BaCe~0.9~Yb~0.1~O~3–δ~ composites have been tested as cathodes in symmetrical cells based on BaCe