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Synthesis, densification and electrical properties of strontium cerate ceramics
Authors:Paul Inge Dahl  Reidar Haugsrud  Hilde Lea Lein  Tor Grande  Truls Norby  Mari-Ann Einarsrud  
Affiliation:

aDepartment of Materials Science and Engineering, Norwegian University of Science and Technology, NTNU, NO-7491 Trondheim, Norway

bCentre for Materials Science and Nanotechnology, Department of Chemistry, University of Oslo, NO-0349 Oslo, Norway

Abstract:Powders of pure and 5% ytterbium substituted strontium cerate (SrCeO3/SrCe0.95Yb0.05O3?δ) were prepared by spray pyrolysis of nitrate salt solutions. The powders were single phase after calcination in nitrogen atmosphere at 1100 °C (SrCeO3) and 1200 °C (SrCe0.95Yb0.05O3?δ). Dense SrCeO3 and SrCe0.95Yb0.05O3?δ materials were obtained by sintering at 1350–1400 °C in air. Heat treatment at 850 and 1000 °C, respectively, was necessary prior to sintering to obtain high density. The dense materials had homogenous microstructures with grain size in the range 6–10 μm for SrCeO3 and 1–2 μm for SrCe0.95Yb0.05O3?δ. The electrical conductivity of SrCe0.95Yb0.05O3?δ was in good agreement with reported data, showing mixed ionic–electronic conduction. The ionic contribution was dominated by protons below 1000 °C and the proton conductivity reached a maximum of not, vert, similar0.005 S/cm above 900 °C. In oxidizing atmosphere the p-type electronic conduction was dominating above not, vert, similar700 °C, while the contribution from n-type electronic conduction only was significant above not, vert, similar1000 °C in reducing atmosphere.
Keywords:SrCeO3  Sintering  Electrical conductivity
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