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Article 2023

Joint experimental and theoretical study of bulk Y2O3 at high pressure

Authors

Pereira, A. L.J.
Sans, J. A.
Gomis, O.
Santamaría-Pérez, D.
Ray, S.
Godoy-Jr, A.
Rodríguez-Hernández, P.
Muñoz, A.
Popescu, C.
Manjón, F. J.

Results in Physics , vol. 49 , Article 106499

4
Citations
11
Authors

Abstract

© 2023 The Author(s)We report a joint experimental and theoretical study of the structural and vibrational properties of C-type bulk Y2O3 under hydrostatic compression. The combination of high-pressure X-ray diffraction and Raman scattering experimental measurements with ab initio theoretical calculations on bulk Y2O3 allows us to confirm the cubic (C-type) – monoclinic (B-type) – trigonal (A-type) phase transition sequence on the upstroke and the trigonal-monoclinic phase transition on the downstroke. This result reconciles with the results already found in related rare-earth sesquioxides of cations with similar ionic radii as Y, such as Ho2O3 and Dy2O3, and ends with the controversy regarding the existence of the intermediate monoclinic phase between the cubic and trigonal phases in pure bulk Y2O3 on the upstroke. As a byproduct, the good agreement between experimental and calculated results allows us to use extensive theoretical data to discuss the structural and vibrational behavior of the three phases of Y2O3 under compression, thus allowing a more detailed understanding of the effect of pressure on rare-earth sesquioxides than previous studies.

Keywords

Ab initio calculations High-pressure Raman scattering Rare-earth sesquioxides X-ray diffraction Yttrium oxide

Physics and Astronomy (all) (PHYS)
: Scopus
Last Update: 2026-06-25
: 2-s2.0-85159311577
PII: S2211379723002929