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Comparative study of nanocrystalline Zr0.85Ce0.15O2 powders synthesised by spray-pyrolysis and gel-combustion methods
Authors:G.E. Lascalea,E. Djurado,N.E. Walsö  e de Reca
Affiliation:a Centro de Investigaciones en Sólidos (CINSO), CITEFA-CONICET, J.B. de La Salle 4397, B1603ALO Villa Martelli, Pcia. de Buenos Aires, Argentina
b Laboratoire d?Electrochimie et de Physico-chimie des Matériaux et des Interfaces (LEPMI), INPG-CNRS. ENSEEG, 1130 Rue de la Piscine, BP 75, Domaine Universitaire, 38402 Saint Martin d?Hères, Cedex, France
c Centro Atómico Constituyentes, Comisión Nacional de Energía Atómica, Gral. Paz 1499, (1650) San Martín, Pcia. de Buenos Aires, Argentina
Abstract:Zr0.85Ce0.15O2 nanopowders synthesised by gel-combustion and spray-pyrolysis methods were comparatively studied by means of X-ray diffraction, Raman spectroscopy, thermogravimetric and differential thermal analyses, specific surface area measurements, scanning and transmission electron microscopies and chemical analysis. Fully tetragonal powders were obtained by both methods, as determined by X-ray diffraction and Raman spectroscopy. Both materials exhibited extremely small crystallite sizes (about 6 nm) and high specific surface areas (93 m2/g and 42 m2/g for gel-combustion and spray-pyrolysis powders, respectively). In both cases, no tetragonal-to-monoclinic transition was observed in the whole temperature range up to 1300 °C by differential thermal analysis. The amounts of the expected impurities (Si, B, C) were acceptable and comparable in both cases.
Keywords:A. Oxides   B. Chemical synthesis   C. X-ray diffraction   C. Raman spectroscopy
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