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dc.contributor.author
Panchal, Vinod
dc.contributor.author
Pampillo, Laura Gabriela
dc.contributor.author
Ferrari, Sergio
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Bilovol, Vitaliy
dc.contributor.author
Popescu, Catalin
dc.contributor.author
Errandonea, Daniel
dc.date.available
2024-02-21T15:30:15Z
dc.date.issued
2023-05
dc.identifier.citation
Panchal, Vinod; Pampillo, Laura Gabriela; Ferrari, Sergio; Bilovol, Vitaliy; Popescu, Catalin; et al.; Pressure-Induced Structural Phase Transition of Co-Doped SnO2 Nanocrystals; MDPI; Crystals; 13; 6; 5-2023; 1-11
dc.identifier.issn
2073-4352
dc.identifier.uri
http://hdl.handle.net/11336/227878
dc.description.abstract
Co-doped SnO2 nanocrystals (with a particle size of 10 nm) with a tetragonal rutile-type (space group P42/mnm) structure have been investigated for their use in in situ high-pressure synchrotron angle dispersive powder X-ray diffraction up to 20.9 GPa and at an ambient temperature. An analysis of experimental results based on Rietveld refinements suggests that rutile-type Co-doped SnO2 undergoes a structural phase transition at 14.2 GPa to an orthorhombic CaCl2-type phase (space group Pnnm), with no phase coexistence during the phase transition. No further phase transition is observed until 20.9 GPa, which is the highest pressure covered by the experiments. The low-pressure and high-pressure phases are related via a group/subgroup relationship. However, a discontinuous change in the unit-cell volume is detected at the phase transition; thus, the phase transition can be classified as a first-order type. Upon decompression, the transition has been found to be reversible. The results are compared with previous high-pressure studies on doped and un-doped SnO2. The compressibility of different phases will be discussed.
dc.format
application/pdf
dc.language.iso
eng
dc.publisher
MDPI
dc.rights
info:eu-repo/semantics/openAccess
dc.rights.uri
https://creativecommons.org/licenses/by/2.5/ar/
dc.subject
HIGH PRESSURE
dc.subject
PHASE TRANSITION
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SYNCHROTRON RADIATION
dc.subject
X-RAY DIFFRACTION
dc.subject.classification
Física de los Materiales Condensados
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Ciencias Físicas
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CIENCIAS NATURALES Y EXACTAS
dc.title
Pressure-Induced Structural Phase Transition of Co-Doped SnO2 Nanocrystals
dc.type
info:eu-repo/semantics/article
dc.type
info:ar-repo/semantics/artículo
dc.type
info:eu-repo/semantics/publishedVersion
dc.date.updated
2024-02-20T12:56:27Z
dc.journal.volume
13
dc.journal.number
6
dc.journal.pagination
1-11
dc.journal.pais
Suiza
dc.journal.ciudad
Basilea
dc.description.fil
Fil: Panchal, Vinod. No especifíca;
dc.description.fil
Fil: Pampillo, Laura Gabriela. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Houssay. Instituto de Tecnologías y Ciencias de la Ingeniería "Hilario Fernández Long". Universidad de Buenos Aires. Facultad de Ingeniería. Instituto de Tecnologías y Ciencias de la Ingeniería "Hilario Fernández Long"; Argentina
dc.description.fil
Fil: Ferrari, Sergio. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Houssay. Instituto de Tecnologías y Ciencias de la Ingeniería "Hilario Fernández Long". Universidad de Buenos Aires. Facultad de Ingeniería. Instituto de Tecnologías y Ciencias de la Ingeniería "Hilario Fernández Long"; Argentina
dc.description.fil
Fil: Bilovol, Vitaliy. Consejo Nacional de Investigaciones Científicas y Técnicas. Oficina de Coordinación Administrativa Houssay. Instituto de Tecnologías y Ciencias de la Ingeniería "Hilario Fernández Long". Universidad de Buenos Aires. Facultad de Ingeniería. Instituto de Tecnologías y Ciencias de la Ingeniería "Hilario Fernández Long"; Argentina
dc.description.fil
Fil: Popescu, Catalin. No especifíca;
dc.description.fil
Fil: Errandonea, Daniel. Universidad de Valencia; España
dc.journal.title
Crystals
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/https://www.mdpi.com/2073-4352/13/6/900
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.3390/cryst13060900
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