Article ID Journal Published Year Pages File Type
5150340 Solid State Ionics 2017 7 Pages PDF
Abstract
When increasing calcination temperature, it was observed an improved specific surface and crystallite diameter conservation for La and Zr-doped samples. Oxygen vacancy generated by doping, observed both by Raman and OSC-OSCC, decreased with higher calcination temperatures for every solid. Ce0.95Pr0.05O2 − δ showed a maximum oxygen storage capacity for 750 °C calcination temperature consistent with Raman spectroscopy and hydrogen reduction profiles.
Related Topics
Physical Sciences and Engineering Chemistry Electrochemistry
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