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New synthesis of nanopowders of proton conducting materials. A route to densified proton ceramics
Authors:Zohreh Khani  Gilles Taillades  Deborah J Jones  Jacques Rozière
Institution:a Institut Charles Gerhardt Montpellier, UMR 5253, Laboratoire des Agrégats, Interfaces et Matériaux pour l’Energie, Université Montpellier II, 34095 Montpellier, France
b European Institute for Energy Research, Emmy-Noether Strasse 11, 76131 Karlsruhe, Germany
Abstract:Low temperature routes have been developed for the preparation of BaCe0.9Y0.1O2.95 (BCY10) and BaZr0.9Y0.1O2.95 (BZY10) in the form of nanoparticulate powders for use after densification as ceramic membranes for a proton ceramic fuel cell. These methods make use on the one hand of the chelation of metal (II), (III) and (IV) ions by acrylates (hydrogelation route) and on the other of the destabilisation and precipitation of micro-emulsions. Both routes lead to single phase yttrium doped barium cerate or zirconate perovskites, as observed by X-ray diffraction, after thermal treatment at 900 °C for 4 h for BCY10 and 800 °C for BZY10. These temperatures, lower than those usually used for preparation of barium cerate or zirconate, lead to oxide nanoparticles of size <40 nm. Dense ceramics (?95%) are obtained by sintering BCY10 pellets at 1350 °C and BZY10 pellets at 1500 °C for 10 h. The water uptake of compacted samples at 500 °C is 0.14 wt% for BCY10 and 0.26 wt% for BZY10. Total conductivities in the range 300-600 °C were determined using impedance spectroscopy in a humidified nitrogen atmosphere. The total conductivity was 1.8×10−2 S/cm for BCY10 and 2×10−3 S/cm for BZY10 at 600 °C. The smallest perovskite nanoparticles and highest conductivities were obtained by hydrogelation of precursor barium, zirconium, cerium and yttrium acrylates.
Keywords:Barium yttrium cerate  Barium yttrium zirconate  Nanopowders  Reverse micelles  Acrylate hydrogelation  High density ceramic membrane  Proton conductivity  Proton ceramic fuel cell
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