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Operando Study of Ethanol Oxidation on Pt(1 1 1) by Infrared Spectroscopy at Near-Ambient Pressure Full article

Journal Applied Surface Science
ISSN: 0169-4332
Output data Year: 2023, Volume: 615, Article number : 156373, Pages count : 8 DOI: 10.1016/j.apsusc.2023.156373
Tags Heterogeneous catalysis; Reaction mechanism; Ethanol oxidation; Platinum; Surface carbonate
Authors Selivanova Aleksandra V. 1 , Saraev Andrey A. 1 , Kaichev Vasily V. 1
Affiliations
1 Boreskov Institute of Catalysis, Novosibirsk, Russia

Funding (1)

1 Ministry of Science and Higher Education of the Russian Federation 0239-2021-0003

Abstract: The oxidation of ethanol on the surface of a Pt(1 1 1) single crystal was studied at near-ambient pressures using polarization-modulation reflection absorption infrared spectroscopy (PM-IRRAS). Reaction intermediates adsorbed on the platinum surface as well as ethanol and the main reaction products in the gas phase were followed by PM-IRRAS simultaneously in a batch reactor during stepwise heating from room temperature to 600 K. The experiments were carried out at two different ethanol/oxygen molar ratios, modeling stoichiometric and oxygen-rich conditions. It was shown that the oxidation of ethanol begins already at 330 K. Acetaldehyde, acetic acid, CO2, and water were detected as products in the gas phase. Adsorbed acetaldehyde and ethoxy-groups were distinguished as reaction intermediates on the platinum surface at low temperatures. At higher temperatures between 450 and 600 K, the only surface intermediates were carbonates, indicating their stability and ability to block the catalyst surface. No adsorbed CO was detected in the whole temperature range. The overall mechanism of the oxidation of ethanol on platinum is discussed.
Cite: Selivanova A.V. , Saraev A.A. , Kaichev V.V.
Operando Study of Ethanol Oxidation on Pt(1 1 1) by Infrared Spectroscopy at Near-Ambient Pressure
Applied Surface Science. 2023. V.615. 156373 :1-8. DOI: 10.1016/j.apsusc.2023.156373 WOS Scopus РИНЦ AN OpenAlex
Dates:
Submitted: Nov 9, 2022
Accepted: Jan 6, 2023
Published online: Jan 9, 2023
Published print: Apr 1, 2023
Identifiers:
Web of science: WOS:000996507700001
Scopus: 2-s2.0-85146049331
Elibrary: 54036221
Chemical Abstracts: 2023:92336
OpenAlex: W4313897616
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Scopus 2
Web of science 2
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