The structure evolution in the CeO2-Sm2O3 system is revisited by combining high resolution synchrotron powder diffraction with pair distribution function (PDF) to inquire about local, mesoscopic, and average structure. The CeO2 fluorite structure undergoes two phase transformations by Sm doping, first to a cubic (C-type) and then to a monoclinic (B-type) phase. Whereas the C to B-phase separation occurs completely and on a long-range scale, no miscibility gap is detected between fluorite and. C-type phases. The transformation rather occurs by growth of C-type nanodomains embedded in the fluorite matrix, without any longrange phase separation. A side effect of this mechanism is the ordering of the oxygen vacancies, which is detrimental for the application of doped ceria as an electrolyte in fuel cells. The results are discussed in the framework of other Y and Gd dopants, and the relationship between nanostructuring and the above equilibria is also investigated.

Phase Transformations in the CeO2-Sm2O3 System: A Multiscale Powder Diffraction Investigation

Biffi CA;
2018

Abstract

The structure evolution in the CeO2-Sm2O3 system is revisited by combining high resolution synchrotron powder diffraction with pair distribution function (PDF) to inquire about local, mesoscopic, and average structure. The CeO2 fluorite structure undergoes two phase transformations by Sm doping, first to a cubic (C-type) and then to a monoclinic (B-type) phase. Whereas the C to B-phase separation occurs completely and on a long-range scale, no miscibility gap is detected between fluorite and. C-type phases. The transformation rather occurs by growth of C-type nanodomains embedded in the fluorite matrix, without any longrange phase separation. A side effect of this mechanism is the ordering of the oxygen vacancies, which is detrimental for the application of doped ceria as an electrolyte in fuel cells. The results are discussed in the framework of other Y and Gd dopants, and the relationship between nanostructuring and the above equilibria is also investigated.
2018
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
Istituto di Scienze e Tecnologie Molecolari - ISTM - Sede Milano
PAIR DISTRIBUTION FUNCTION
GD-DOPED CERIA
LATTICE THERMAL-EXPANSION
X-RAY-DIFFRACTION
OXIDE FUEL-CELLS
File in questo prodotto:
File Dimensione Formato  
prod_394241-doc_136503.pdf

accesso aperto

Descrizione: Phase Transformations in the CeO2-Sm2O3 System: A Multiscale Powder Diffraction Investigation
Tipologia: Versione Editoriale (PDF)
Dimensione 5.51 MB
Formato Adobe PDF
5.51 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/357230
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 35
  • ???jsp.display-item.citation.isi??? 34
social impact