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  4. Heat treatment induced phase transformations in zirconia and yttria-stabilized zirconia monolithic aerogels
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Heat treatment induced phase transformations in zirconia and yttria-stabilized zirconia monolithic aerogels

Journal
Journal of Supercritical Fluids
Date Issued
July 1, 2019
Author(s)
Torres-Rodríguez, Jorge Alberto  
Kalmár, József  
Menelaou, Melita  
Čelko, Ladislav  
Dvořak, Karel  
Cihlář, Jaroslav  
Kaiser, Jozef  
Győri, Enikő  
Veres, Péter  
Fabian, Istvan  
Lázár, István  
DOI
10.1016/j.supflu.2019.02.011
Abstract
Monolithic, structurally stable zirconia (ZrO2) aerogels can be used in high temperature applications and as medical implants. The macroscopic properties of these solids can be fine-tuned by the appropriate thermal treatment of the amorphous aerogels. Herein, we investigate the thermally induced phase transitions of ZrO2 and yttria-stabilized zirconia (YSZ) monolithic aerogels. All aerogels were produced by an acid-catalyzed sol-gel technique and subsequent supercritical drying (SCD). A complete reaction mechanism is proposed for the formation of the wet gel network. Also, the phase transformations taking place during calcination were followed as function of temperature by in-situ X-ray diffraction measurements. Composition and size of the forming crystallites were calculated from the XRD data. Phase transition is controlled by the temperature-dependent growth of crystallite size during calcination up to 1200 °C. Both tetragonal and monoclinic zirconia form in pure ZrO2 aerogels, and a single tetragonal phase forms in YSZ aerogels.
Subjects

Aerogel

Heat treatment

Phase transformation

Yttria-stabilized zir...

Zirconia

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