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volume 11 issue 12 pages 3292

Near-Ambient Pressure XPS and MS Study of CO Oxidation over Model Pd-Au/HOPG Catalysts: The Effect of the Metal Ratio

A Yu Fedorov 2, 3
Alexander Yu Klyushin 4, 5
Axel Knop-Gericke 4, 6
Valery I Bukhtiyarov 2
Publication typeJournal Article
Publication date2021-12-04
scimago Q1
wos Q2
SJR0.811
CiteScore9.2
Impact factor4.3
ISSN20794991
PubMed ID:  34947641
General Chemical Engineering
General Materials Science
Abstract

In this study, the dependence of the catalytic activity of highly oriented pyrolytic graphite (HOPG)-supported bimetallic Pd-Au catalysts towards the CO oxidation based on the Pd/Au atomic ratio was investigated. The activities of two model catalysts differing from each other in the initial Pd/Au atomic ratios appeared as distinctly different in terms of their ignition temperatures. More specifically, the PdAu-2 sample with a lower Pd/Au surface ratio (~0.75) was already active at temperatures less than 150 °C, while the PdAu-1 sample with a higher Pd/Au surface ratio (~1.0) became active only at temperatures above 200 °C. NAP XPS revealed that the exposure of the catalysts to a reaction mixture at RT induces the palladium surface segregation accompanied by an enrichment of the near-surface regions of the two-component Pd-Au alloy nanoparticles with Pd due to adsorption of CO on palladium atoms. The segregation extent depends on the initial Pd/Au surface ratio. The difference in activity between these two catalysts is determined by the presence or higher concentration of specific active Pd sites on the surface of bimetallic particles, i.e., by the ensemble effect. Upon cooling the sample down to room temperature, the reverse redistribution of the atomic composition within near-surface regions occurs, which switches the catalyst back into inactive state. This observation strongly suggests that the optimum active sites emerge under reaction conditions exclusively, involving both high temperature and a reactive atmosphere.

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Bukhtiyarov A. V. et al. Near-Ambient Pressure XPS and MS Study of CO Oxidation over Model Pd-Au/HOPG Catalysts: The Effect of the Metal Ratio // Nanomaterials. 2021. Vol. 11. No. 12. p. 3292.
GOST all authors (up to 50) Copy
Bukhtiyarov A. V., Prosvirin I. P., Panafidin M. A., Fedorov A. Yu., Klyushin A. Yu., Knop-Gericke A., Zubavichus Y. V., Bukhtiyarov V. I. Near-Ambient Pressure XPS and MS Study of CO Oxidation over Model Pd-Au/HOPG Catalysts: The Effect of the Metal Ratio // Nanomaterials. 2021. Vol. 11. No. 12. p. 3292.
RIS |
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RIS Copy
TY - JOUR
DO - 10.3390/nano11123292
UR - https://doi.org/10.3390/nano11123292
TI - Near-Ambient Pressure XPS and MS Study of CO Oxidation over Model Pd-Au/HOPG Catalysts: The Effect of the Metal Ratio
T2 - Nanomaterials
AU - Bukhtiyarov, Andrey V
AU - Prosvirin, Igor P.
AU - Panafidin, Maxim A
AU - Fedorov, A Yu
AU - Klyushin, Alexander Yu
AU - Knop-Gericke, Axel
AU - Zubavichus, Yan V.
AU - Bukhtiyarov, Valery I
PY - 2021
DA - 2021/12/04
PB - MDPI
SP - 3292
IS - 12
VL - 11
PMID - 34947641
SN - 2079-4991
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2021_Bukhtiyarov,
author = {Andrey V Bukhtiyarov and Igor P. Prosvirin and Maxim A Panafidin and A Yu Fedorov and Alexander Yu Klyushin and Axel Knop-Gericke and Yan V. Zubavichus and Valery I Bukhtiyarov},
title = {Near-Ambient Pressure XPS and MS Study of CO Oxidation over Model Pd-Au/HOPG Catalysts: The Effect of the Metal Ratio},
journal = {Nanomaterials},
year = {2021},
volume = {11},
publisher = {MDPI},
month = {dec},
url = {https://doi.org/10.3390/nano11123292},
number = {12},
pages = {3292},
doi = {10.3390/nano11123292}
}
MLA
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MLA Copy
Bukhtiyarov, Andrey V., et al. “Near-Ambient Pressure XPS and MS Study of CO Oxidation over Model Pd-Au/HOPG Catalysts: The Effect of the Metal Ratio.” Nanomaterials, vol. 11, no. 12, Dec. 2021, p. 3292. https://doi.org/10.3390/nano11123292.
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