A well known perovskite-type material, LaFeO3, was prepared by citrate-nitrate auto-combustion synthesis and used to formulate a new in situ approach for the analytical evaluation of the redox properties of this class of material. Carbon monoxide was used as a reducing agent-probe, while molecular oxygen was used as an oxidizing agent-probe. In situ FTIR spectroscopy was applied for a qualitative characterization of the interaction probe-material, and microgravimetry was used in order to quantify the extent of the interaction. The results obtained indicated that simple molecules, such as CO and O-2, are able to define the redox properties of the material without inducing any important modification as in the case of the more classical temperature-programmed reduction and oxidation methods. The described procedure can be successfully applied for the evaluation of the oxygen mobility/availability and storage potential of other perovskite-type materials.

A new in situ methodology for the quantification of the oxygen storage potential in perovskite-type materials

MAGNACCA, Giuliana;
2013-01-01

Abstract

A well known perovskite-type material, LaFeO3, was prepared by citrate-nitrate auto-combustion synthesis and used to formulate a new in situ approach for the analytical evaluation of the redox properties of this class of material. Carbon monoxide was used as a reducing agent-probe, while molecular oxygen was used as an oxidizing agent-probe. In situ FTIR spectroscopy was applied for a qualitative characterization of the interaction probe-material, and microgravimetry was used in order to quantify the extent of the interaction. The results obtained indicated that simple molecules, such as CO and O-2, are able to define the redox properties of the material without inducing any important modification as in the case of the more classical temperature-programmed reduction and oxidation methods. The described procedure can be successfully applied for the evaluation of the oxygen mobility/availability and storage potential of other perovskite-type materials.
2013
Inglese
Esperti anonimi
3
26352
26360
9
http://pubs.rsc.org/en/content/articlelanding/2013/ra/c3ra44930k#!divAbstract
LaFeO3; CO adsorption; photocatalyst; CO oxidation; FTIR spectroscopy
no
1 – prodotto con file in versione Open Access (allegherò il file al passo 6 - Carica)
262
4
Giuliana Magnacca;Giulia Spezzati;Francesca Deganello;Maria Luisa Testa
info:eu-repo/semantics/article
partially_open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/146153
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