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Published in: Journal of Materials Science 1/2012

01-01-2012

Glass reactive sintering as an alternative route for the synthesis of NZP glass–ceramics

Authors: Sébastien Chenu, Ronan Lebullenger, Patricia Bénard-Rocherullé, Guillaume Calvez, Olivier Guillou, Jean Rocherullé, Abdessamad Kidari, Mickael J. Pomeroy, Stuart Hampshire

Published in: Journal of Materials Science | Issue 1/2012

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Abstract

The NZP-type crystal structure allows a large number of ionic substitutions which leads to ceramics with adjustable thermal expansion properties or interesting ionic conductivity. However, NZP is difficult to fabricate into monoliths because it requires both high temperatures and long sintering times. An alternative low temperature route to obtain a tungsten (IV) and tin (IV) containing NZP crystalline phase uses a process of glass reactive sintering of a phosphate glass. Using a microwave oven, a glass with the appropriate composition in the NaPO3–Sn(II)O–W(VI)O3 ternary diagram is prepared by a conventional melting and casting technique. After crushing, the glass powder is pressed at room temperature. The green pellet is cured during various times at temperatures where glass reactive sintering takes place. From XRD and DTA experiments, we have shown that different parameters influence the achievement of NZP phase. Consequently, specific conditions, such as (i) initial glass composition, (ii) equimolar quantities of SnO and WO3, (iii) glass particle size lower than 100 μm, and (iv) curing conducted under air, are required to obtain a glass–ceramic with a single crystalline phase with the NZP-type crystal structure.

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Metadata
Title
Glass reactive sintering as an alternative route for the synthesis of NZP glass–ceramics
Authors
Sébastien Chenu
Ronan Lebullenger
Patricia Bénard-Rocherullé
Guillaume Calvez
Olivier Guillou
Jean Rocherullé
Abdessamad Kidari
Mickael J. Pomeroy
Stuart Hampshire
Publication date
01-01-2012
Publisher
Springer US
Published in
Journal of Materials Science / Issue 1/2012
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-011-5824-x

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