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  4. Synthesis, structure and oxygen thermally programmed desorption spectra of La1−xCaxAlyFe1−yO3−δ perovskites
 
research article

Synthesis, structure and oxygen thermally programmed desorption spectra of La1−xCaxAlyFe1−yO3−δ perovskites

Cihlar, Jaroslav
•
DelFavero, David
•
Cihlar, Jaroslav Jr.
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2006
Journal of the European Ceramic Society

Perovskites La1−xCaxAlyFe1−yO3−δ (x, y = 0 to 1) were prepared by high-temperature solid-state synthesis based on mixtures of oxides produced by colloidal milling. The XRD analysis showed that perovskites La0.5Ca0.5AlyFe1−yO3−δ with a high Fe content (1−y = 0.8–1.0) were of orthorhombic structure, perovskites with a medium Fe content (1−y = 0.8–0.5) were of rhombohedral structure, and perovskite with the lowest Fe content (1−y = 0.2) were of cubic structure. Thermally programmed desorption (TPD) of oxygen revealed that chemical desorption of oxygen in the temperature range from 200 to 1000 ◦C had proceeded in the two desorption peaks. The low-temperature -peak (in the 200–550 ◦C temperature range) was brought about by oxygen liberated from oxygen vacancies; the high-temperature -peak (in the 550–1000 ◦C temperature range) corresponded to the reduction of Fe4+ to Fe3+. The chemidesorption oxygen capacity increased with increasing Ca content and decreased with increasing Al content in the perovskites. The Al3+ ions restricted, probably for kinetic reasons, the reduction of Fe4+ and the high-temperature oxygen desorption associated with it.

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Type
research article
DOI
10.1016/j.jeurceramsoc.2006.02.018
Web of Science ID

WOS:000240165200023

Author(s)
Cihlar, Jaroslav
DelFavero, David
Cihlar, Jaroslav Jr.
Buchal, Antonın
Van herle, Jan  
Date Issued

2006

Published in
Journal of the European Ceramic Society
Volume

26

Issue

14

Start page

2999

End page

3004

Subjects

Perovskites

•

Membranes

•

X-ray methods

•

Powders-solid state reaction

•

Chemisorption

Note

doi:10.1016/j.jeuceramsoc.2006.02.018

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LENI  
Available on Infoscience
January 9, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/33388
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