The formation mechanism of praseodymium-doped zircon, a market leader ceramic pigment in the high temperature color range, has been mainly studied by Rietveld-R.I.R. analysis of the X-ray diffraction data, SEM analysis and color measurements. The obtained results put in evidence the reaction between SiO2, praseodymium oxide (Pr2O3) and mineralizers which produces a viscous and successively, as the temperature is increased, a volatile phase that reacts with ZrO2 at the ZrO2 sites, confirming the hypothesis made by the authors in a previous work.

Synthesis of (Pr,Zr)SiO4 Ceramic Pigment: Role of Mineralizers and Reaction Mechanism Determination / Bondioli, Federica; T., Manfredini; A., Ferrari; G., Baldi. - In: INTERNATIONAL CERAMICS JOURNAL. - ISSN 1123-8216. - 8:(2006), pp. 53-56.

Synthesis of (Pr,Zr)SiO4 Ceramic Pigment: Role of Mineralizers and Reaction Mechanism Determination

BONDIOLI, Federica;
2006-01-01

Abstract

The formation mechanism of praseodymium-doped zircon, a market leader ceramic pigment in the high temperature color range, has been mainly studied by Rietveld-R.I.R. analysis of the X-ray diffraction data, SEM analysis and color measurements. The obtained results put in evidence the reaction between SiO2, praseodymium oxide (Pr2O3) and mineralizers which produces a viscous and successively, as the temperature is increased, a volatile phase that reacts with ZrO2 at the ZrO2 sites, confirming the hypothesis made by the authors in a previous work.
2006
Synthesis of (Pr,Zr)SiO4 Ceramic Pigment: Role of Mineralizers and Reaction Mechanism Determination / Bondioli, Federica; T., Manfredini; A., Ferrari; G., Baldi. - In: INTERNATIONAL CERAMICS JOURNAL. - ISSN 1123-8216. - 8:(2006), pp. 53-56.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2673197
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