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LaFeO3 thin films as relevant models for the surface investigation of 3‐way catalysts

Lanthanum orthoferrite, a highly potential 3‐way catalyst, shaped as a polycrystalline thin film has been comprehensively analysed by combining bulk and surface characterization techniques. The possibility to accomplish unprecedented surface information has been presented, thanks to the combined use...

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Published in:Surface and interface analysis 2018-11, Vol.50 (11), p.1018-1024
Main Authors: Nandi, Shreya, Blanck, Dimitri, Carlier, Thomas, Chambrier, Marie‐Hélène, Mamede, Anne‐Sophie, Trentesaux, Martine, Simon, Pardis, Nuns, Nicolas, Roussel, Pascal, Ferri, Anthony, Paul, Jean‐Francois, Berrier, Elise
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container_issue 11
container_start_page 1018
container_title Surface and interface analysis
container_volume 50
creator Nandi, Shreya
Blanck, Dimitri
Carlier, Thomas
Chambrier, Marie‐Hélène
Mamede, Anne‐Sophie
Trentesaux, Martine
Simon, Pardis
Nuns, Nicolas
Roussel, Pascal
Ferri, Anthony
Paul, Jean‐Francois
Berrier, Elise
description Lanthanum orthoferrite, a highly potential 3‐way catalyst, shaped as a polycrystalline thin film has been comprehensively analysed by combining bulk and surface characterization techniques. The possibility to accomplish unprecedented surface information has been presented, thanks to the combined use of LEIS, XPS, and ToF‐SIMS. The structural, morphological, and surface properties at nanometric scale make such thin films indistinguishable from powdered solids. Thus, the relevance of using such model materials for advanced surface investigations of LaFeO3±δ‐based 3‐way catalysts has been demonstrated.
doi_str_mv 10.1002/sia.6450
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subjects Catalysis
Catalysts
Ferrites
LaFeO3
Lanthanum
Lanthanum compounds
LEIS
perovskite
Raman
Surface properties
Thin films
ToF‐SIMS
XPS
title LaFeO3 thin films as relevant models for the surface investigation of 3‐way catalysts
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