Nanocrystalline Cubic Phase Scandium-Stabilized Zirconia Thin Films

Author:

Danchuk Victor12ORCID,Shatalov Mykola13ORCID,Zinigrad Michael1,Kossenko Alexey1,Brider Tamara4,Le Luc5ORCID,Johnson Dustin5ORCID,Strzhemechny Yuri M.5,Musin Albina6ORCID

Affiliation:

1. Department of Chemical Engineering, Biotechnology and Materials, Faculty of Engineering, Ariel University, Ariel 40700, Israel

2. CEITEC BUT, Brno University of Technology, 61200 Brno, Czech Republic

3. Raicol Crystals Ltd., Rosh Ha’Ayin 4809162, Israel

4. Technology and Engineering Unit, Electronic Microscopy Lab, Ariel University, Ariel 40700, Israel

5. Department of Physics and Astronomy, Texas Christian University, Fort Worth, TX 76109, USA

6. Physics Department, Faculty of Natural Sciences, Ariel University, Ariel 40700, Israel

Abstract

The cubic zirconia (ZrO2) is attractive for a broad range of applications. However, at room temperature, the cubic phase needs to be stabilized. The most studied stabilization method is the addition of the oxides of trivalent metals, such as Sc2O3. Another method is the stabilization of the cubic phase in nanostructures—nanopowders or nanocrystallites of pure zirconia. We studied the relationship between the size factor and the dopant concentration range for the formation and stabilization of the cubic phase in scandium-stabilized zirconia (ScSZ) films. The thin films of (ZrO2)1−x(Sc2O3)x, with x from 0 to 0.2, were deposited on room-temperature substrates by reactive direct current magnetron co-sputtering. The crystal structure of films with an average crystallite size of 85 Å was cubic at Sc2O3 content from 6.5 to 17.5 mol%, which is much broader than the range of 8–12 mol.% of the conventional deposition methods. The sputtering of ScSZ films on hot substrates resulted in a doubling of crystallite size and a decrease in the cubic phase range to 7.4–11 mol% of Sc2O3 content. This confirmed that the size of crystallites is one of the determining factors for expanding the concentration range for forming and stabilizing the cubic phase of ScSZ films.

Publisher

MDPI AG

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