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Structural investigations of La0.6Sr0.4FeO3-δ under reducing conditions: kinetic and thermodynamic limitations for phase transformations and iron exsolution phenomena.
Götsch, Thomas; Schlicker, Lukas; Bekheet, Maged F; Doran, Andrew; Grünbacher, Matthias; Praty, Corsin; Tada, Mizuki; Matsui, Hirosuke; Ishiguro, Nozomu; Gurlo, Aleksander; Klötzer, Bernhard; Penner, Simon.
Afiliação
  • Götsch T; Institute of Physical Chemistry, University of Innsbruck A-6020 Innsbruck Austria simon.penner@uibk.ac.at +43 512 507 58003.
  • Schlicker L; Fachgebiet Keramische Werkstoffe, Institut für Werkstoffwissenschaften und technologien, Technical University Berlin 10623 Berlin Germany.
  • Bekheet MF; Fachgebiet Keramische Werkstoffe, Institut für Werkstoffwissenschaften und technologien, Technical University Berlin 10623 Berlin Germany.
  • Doran A; Advanced Light Source, Lawrence Berkeley National Laboratory Berkeley California 94720 USA.
  • Grünbacher M; Institute of Physical Chemistry, University of Innsbruck A-6020 Innsbruck Austria simon.penner@uibk.ac.at +43 512 507 58003.
  • Praty C; Institute of Physical Chemistry, University of Innsbruck A-6020 Innsbruck Austria simon.penner@uibk.ac.at +43 512 507 58003.
  • Tada M; Department of Chemistry, Graduate School of Science, Nagoya University Furo-cho, Chikusa-ku Nagoya 464-8601 Japan.
  • Matsui H; Department of Chemistry, Graduate School of Science, Nagoya University Furo-cho, Chikusa-ku Nagoya 464-8601 Japan.
  • Ishiguro N; RIKEN SPring-8 Center Sayo Hyogo 679-5148 Japan.
  • Gurlo A; Fachgebiet Keramische Werkstoffe, Institut für Werkstoffwissenschaften und technologien, Technical University Berlin 10623 Berlin Germany.
  • Klötzer B; Institute of Physical Chemistry, University of Innsbruck A-6020 Innsbruck Austria simon.penner@uibk.ac.at +43 512 507 58003.
  • Penner S; Institute of Physical Chemistry, University of Innsbruck A-6020 Innsbruck Austria simon.penner@uibk.ac.at +43 512 507 58003.
RSC Adv ; 8(6): 3120-3131, 2018 Jan 12.
Article em En | MEDLINE | ID: mdl-35541190
ABSTRACT
The crystal structure changes and iron exsolution behavior of a series of oxygen-deficient lanthanum strontium ferrite (La0.6Sr0.4FeO3-δ , LSF) samples under various inert and reducing conditions up to a maximum temperature of 873 K have been investigated to understand the role of oxygen and iron deficiencies in both processes. Iron exsolution occurs in reductive environments at higher temperatures, leading to the formation of Fe rods or particles at the surface. Utilizing multiple ex situ and in situ methods (in situ X-ray diffraction (XRD), in situ thermogravimetric analysis (TGA), and scanning X-ray absorption near-edge spectroscopy (XANES)), the thermodynamic and kinetic limitations are accordingly assessed. Prior to the iron exsolution, the perovskite undergoes a nonlinear shift of the diffraction peaks to smaller 2θ angles, which can be attributed to a rhombohedral-to-cubic (R3̄c to Pm3̄m) structural transition. In reducing atmospheres, the cubic structure is stabilized upon cooling to room temperature, whereas the transition is suppressed under oxidizing conditions. This suggests that an accumulation of oxygen vacancies in the lattice stabilize the cubic phase. The exsolution itself is shown to exhibit a diffusion-limited Avrami-like behavior, where the transport of iron to the Fe-depleted surface-near region is the rate-limiting step.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2018 Tipo de documento: Article