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Synthesis, calcination and characterization of Nanosized ceria powders by self-propagating room temperature method

Authors :
Matović, Branko
Dukić, Jelena
Babić, Biljana
Bučevac, Dušan
Dohčević-Mitrović, Zorana
Radović, Marko
Bošković, Snežana
Source :
Ceramics International. Jul2013, Vol. 39 Issue 5, p5007-5012. 6p.
Publication Year :
2013

Abstract

Abstract: Nanometric ceria powders with fluorite-type structure were obtained by applying self-propagating room temperature method. The obtained powders were subsequently thermally treated (calcined) at different temperatures for different times. Powder properties such as specific surface area, crystallite size, particle size and lattice parameter have been studied. Roentgen diffraction analysis (XRD), BET and Raman scattering measurements were used to characterize the as-obtained (uncalcined) powder as well as powders calcined at different temperatures. It was found that the average diameter of the as-obtained crystallites is in the range of 3–5nm whereas the specific surface area is about 70m2/g. The subsequent, 15min long, calcination of as-obtained powder at different temperatures gradually increased crystallite size up to ∼60nm and reduced specific surface down to 6m2/g. Raman spectra of synthesized CeO2−y depicts a strong red shift of active triply degenerate F2g mode as well as additional peak at 600cm−1. The frequency of F2g mode increased while its line width decreased with an increase in calcination temperature. Such a behavior is considered to be the result of particle size increase and agglomeration during the calcination. After the heat treatment at 800°C crystallite size reached value larger than 50nm. Second order Raman mode, which originates from intrinsic oxygen vacancies, disappeared after calcination. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
02728842
Volume :
39
Issue :
5
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
86421350
Full Text :
https://doi.org/10.1016/j.ceramint.2012.11.098