This paper deals with the phase stability of an aqueous suspension of tetragonal Zr0.9Pr0.1O2 (20 wt%/vol%) at room temperature as a function of the aging time. The suspension is investigated in situ using the highly localized Perturbed Angular Correlations technique. The results indicate that an almost fully reversible degradation process toward monoclinic zirconia takes place through a first-order reaction of rate constant k = 0.7-1day. Two successive diffusion mechanisms are observed that are interpreted as OH ions’ migration in the grain surface and then, as proton defects’ diffusion into the bulk.
Room-Temperature Degradation of t-Zr(Pr)O2 in an Aqueous Suspension Revealed by Perturbed Angular Correlations / Caracoche, Mc; MARTINEZ J., A; RIVAS P., C; Andreola, Nora Maria; F., Bondioli; Ferrari, Anna Maria; Manfredini, Tiziano. - In: JOURNAL OF THE AMERICAN CERAMIC SOCIETY. - ISSN 0002-7820. - STAMPA. - 91:7(2008), pp. 2357-2359. [10.1111/j.1551-2916.2007.02074.x]
Room-Temperature Degradation of t-Zr(Pr)O2 in an Aqueous Suspension Revealed by Perturbed Angular Correlations
ANDREOLA, Nora Maria;FERRARI, Anna Maria;MANFREDINI, Tiziano
2008
Abstract
This paper deals with the phase stability of an aqueous suspension of tetragonal Zr0.9Pr0.1O2 (20 wt%/vol%) at room temperature as a function of the aging time. The suspension is investigated in situ using the highly localized Perturbed Angular Correlations technique. The results indicate that an almost fully reversible degradation process toward monoclinic zirconia takes place through a first-order reaction of rate constant k = 0.7-1day. Two successive diffusion mechanisms are observed that are interpreted as OH ions’ migration in the grain surface and then, as proton defects’ diffusion into the bulk.File | Dimensione | Formato | |
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