Cargando…

Structural and Lattice-Dynamical Properties of Tb(2)O(3) under Compression: A Comparative Study with Rare Earth and Related Sesquioxides

[Image: see text] We report a joint experimental and theoretical investigation of the high pressure structural and vibrational properties of terbium sesquioxide (Tb(2)O(3)). Powder X-ray diffraction and Raman scattering measurements show that cubic Ia3̅ (C-type) Tb(2)O(3) undergoes two phase transit...

Descripción completa

Detalles Bibliográficos
Autores principales: Ibáñez, Jordi, Sans, Juan Ángel, Cuenca-Gotor, Vanesa, Oliva, Robert, Gomis, Óscar, Rodríguez-Hernández, Plácida, Muñoz, Alfonso, Rodríguez-Mendoza, Ulises, Velázquez, Matías, Veber, Philippe, Popescu, Catalin, Manjón, Francisco Javier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7588034/
https://www.ncbi.nlm.nih.gov/pubmed/32584569
http://dx.doi.org/10.1021/acs.inorgchem.0c00834
_version_ 1783600297015246848
author Ibáñez, Jordi
Sans, Juan Ángel
Cuenca-Gotor, Vanesa
Oliva, Robert
Gomis, Óscar
Rodríguez-Hernández, Plácida
Muñoz, Alfonso
Rodríguez-Mendoza, Ulises
Velázquez, Matías
Veber, Philippe
Popescu, Catalin
Manjón, Francisco Javier
author_facet Ibáñez, Jordi
Sans, Juan Ángel
Cuenca-Gotor, Vanesa
Oliva, Robert
Gomis, Óscar
Rodríguez-Hernández, Plácida
Muñoz, Alfonso
Rodríguez-Mendoza, Ulises
Velázquez, Matías
Veber, Philippe
Popescu, Catalin
Manjón, Francisco Javier
author_sort Ibáñez, Jordi
collection PubMed
description [Image: see text] We report a joint experimental and theoretical investigation of the high pressure structural and vibrational properties of terbium sesquioxide (Tb(2)O(3)). Powder X-ray diffraction and Raman scattering measurements show that cubic Ia3̅ (C-type) Tb(2)O(3) undergoes two phase transitions up to 25 GPa. We observe a first irreversible reconstructive transition to the monoclinic C2/m (B-type) phase at ∼7 GPa and a subsequent reversible displacive transition from the monoclinic to the trigonal P3̅m1 (A-type) phase at ∼1(2) GPa. Thus, Tb(2)O(3) is found to follow the well-known C → B → A phase transition sequence found in other cubic rare earth sesquioxides with cations of larger atomic mass than Tb. Our ab initio theoretical calculations predict phase transition pressures and bulk moduli for the three phases in rather good agreement with experimental results. Moreover, Raman-active modes of the three phases have been monitored as a function of pressure, while lattice-dynamics calculations have allowed us to confirm the assignment of the experimental phonon modes in the C- and A-type phases as well as to make a tentative assignment of the symmetry of most vibrational modes in the B-type phase. Finally, we extract the bulk moduli and the Raman-active mode frequencies together with their pressure coefficients for the three phases of Tb(2)O(3). These results are thoroughly compared and discussed in relation to those reported for rare earth and other related sesquioxides as well as with new calculations for selected sesquioxides. It is concluded that the evolution of the volume and bulk modulus of all the three phases of these technologically relevant compounds exhibit a nearly linear trend with respect to the third power of the ionic radii of the cations and that the values of the bulk moduli for the three phases depend on the filling of the f orbitals.
format Online
Article
Text
id pubmed-7588034
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-75880342020-10-27 Structural and Lattice-Dynamical Properties of Tb(2)O(3) under Compression: A Comparative Study with Rare Earth and Related Sesquioxides Ibáñez, Jordi Sans, Juan Ángel Cuenca-Gotor, Vanesa Oliva, Robert Gomis, Óscar Rodríguez-Hernández, Plácida Muñoz, Alfonso Rodríguez-Mendoza, Ulises Velázquez, Matías Veber, Philippe Popescu, Catalin Manjón, Francisco Javier Inorg Chem [Image: see text] We report a joint experimental and theoretical investigation of the high pressure structural and vibrational properties of terbium sesquioxide (Tb(2)O(3)). Powder X-ray diffraction and Raman scattering measurements show that cubic Ia3̅ (C-type) Tb(2)O(3) undergoes two phase transitions up to 25 GPa. We observe a first irreversible reconstructive transition to the monoclinic C2/m (B-type) phase at ∼7 GPa and a subsequent reversible displacive transition from the monoclinic to the trigonal P3̅m1 (A-type) phase at ∼1(2) GPa. Thus, Tb(2)O(3) is found to follow the well-known C → B → A phase transition sequence found in other cubic rare earth sesquioxides with cations of larger atomic mass than Tb. Our ab initio theoretical calculations predict phase transition pressures and bulk moduli for the three phases in rather good agreement with experimental results. Moreover, Raman-active modes of the three phases have been monitored as a function of pressure, while lattice-dynamics calculations have allowed us to confirm the assignment of the experimental phonon modes in the C- and A-type phases as well as to make a tentative assignment of the symmetry of most vibrational modes in the B-type phase. Finally, we extract the bulk moduli and the Raman-active mode frequencies together with their pressure coefficients for the three phases of Tb(2)O(3). These results are thoroughly compared and discussed in relation to those reported for rare earth and other related sesquioxides as well as with new calculations for selected sesquioxides. It is concluded that the evolution of the volume and bulk modulus of all the three phases of these technologically relevant compounds exhibit a nearly linear trend with respect to the third power of the ionic radii of the cations and that the values of the bulk moduli for the three phases depend on the filling of the f orbitals. American Chemical Society 2020-06-25 2020-07-20 /pmc/articles/PMC7588034/ /pubmed/32584569 http://dx.doi.org/10.1021/acs.inorgchem.0c00834 Text en This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Ibáñez, Jordi
Sans, Juan Ángel
Cuenca-Gotor, Vanesa
Oliva, Robert
Gomis, Óscar
Rodríguez-Hernández, Plácida
Muñoz, Alfonso
Rodríguez-Mendoza, Ulises
Velázquez, Matías
Veber, Philippe
Popescu, Catalin
Manjón, Francisco Javier
Structural and Lattice-Dynamical Properties of Tb(2)O(3) under Compression: A Comparative Study with Rare Earth and Related Sesquioxides
title Structural and Lattice-Dynamical Properties of Tb(2)O(3) under Compression: A Comparative Study with Rare Earth and Related Sesquioxides
title_full Structural and Lattice-Dynamical Properties of Tb(2)O(3) under Compression: A Comparative Study with Rare Earth and Related Sesquioxides
title_fullStr Structural and Lattice-Dynamical Properties of Tb(2)O(3) under Compression: A Comparative Study with Rare Earth and Related Sesquioxides
title_full_unstemmed Structural and Lattice-Dynamical Properties of Tb(2)O(3) under Compression: A Comparative Study with Rare Earth and Related Sesquioxides
title_short Structural and Lattice-Dynamical Properties of Tb(2)O(3) under Compression: A Comparative Study with Rare Earth and Related Sesquioxides
title_sort structural and lattice-dynamical properties of tb(2)o(3) under compression: a comparative study with rare earth and related sesquioxides
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7588034/
https://www.ncbi.nlm.nih.gov/pubmed/32584569
http://dx.doi.org/10.1021/acs.inorgchem.0c00834
work_keys_str_mv AT ibanezjordi structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT sansjuanangel structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT cuencagotorvanesa structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT olivarobert structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT gomisoscar structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT rodriguezhernandezplacida structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT munozalfonso structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT rodriguezmendozaulises structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT velazquezmatias structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT veberphilippe structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT popescucatalin structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides
AT manjonfranciscojavier structuralandlatticedynamicalpropertiesoftb2o3undercompressionacomparativestudywithrareearthandrelatedsesquioxides