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Electrochemical study of the Nd1.95NiO4 + δ/oxide electrolyte interface
Authors:F Mauvy  C Lalanne  J-M Bassat  J-C Grenier  A Brisse  A-L Sauvet  C Barthet  J Fouletier  
Institution:aICMC Bordeaux-CNRS UPR 9048 87 Avenue du Dr. A. Schweitzer, Université de Bordeaux 1, 33608 Pessac-Cedex, France;bEuropean Institute for Energy Research (EIFER), Emmy-Noether-Strasse 11, 76131 Karlsruhe, Germany;cC.E.A./Le Ripault, BP 16, 37 320 Monts, France;dUniversity of Grenoble, LEPMI, PHELMA, BP 75, 38402 Saint Martin d'Hères, France
Abstract:Nickelate-based oxides are potential cathodes in Solid Oxide Fuel Cells operating at intermediate temperatures. The chemical compatibility between apatite electrolyte, i.e., La9Sr1Si6O26.5, and Nd-deficient nickelate, i.e., Nd1.95NiO4 + δ, has been characterized. The equilibrium between the nickelate material and the gas phase has been studied as functions of temperature and oxygen partial pressure, using potentiometric measurements with microelectrodes, i.e., metallic or ceramic point electrodes. Two solid electrolytes were used, i.e., apatite and yttria-stabilized zirconia. The response of the nickelate is discussed in terms of oxygen stoichiometry.
Keywords:SOFC  Nickelate  Apatite  Potentiometric measurements  Microelectrodes  Zirconia
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