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Oxidation of Aqueous Phosphorous Acid Electrolyte in Contact with Pt Studied by X-ray Photoemission Spectroscopy

[Image: see text] The oxidation of the aqueous H(3)PO(3) in contact with Pt was investigated for a fundamental understanding of the Pt/aqueous H(3)PO(3) interaction with the goal of providing a comprehensive basis for the further optimization of high-temperature polymer electrolyte membrane fuel cel...

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Autores principales: Wibowo, Romualdus Enggar, Garcia-Diez, Raul, Bystron, Tomas, Prokop, Martin, van der Merwe, Marianne, Arce, Mauricio D., Jiménez, Catalina E., Hsieh, Tzung-En, Frisch, Johannes, Steigert, Alexander, Favaro, Marco, Starr, David E., Wilks, Regan G., Bouzek, Karel, Bär, Marcus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10636727/
https://www.ncbi.nlm.nih.gov/pubmed/37890003
http://dx.doi.org/10.1021/acsami.3c12557
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author Wibowo, Romualdus Enggar
Garcia-Diez, Raul
Bystron, Tomas
Prokop, Martin
van der Merwe, Marianne
Arce, Mauricio D.
Jiménez, Catalina E.
Hsieh, Tzung-En
Frisch, Johannes
Steigert, Alexander
Favaro, Marco
Starr, David E.
Wilks, Regan G.
Bouzek, Karel
Bär, Marcus
author_facet Wibowo, Romualdus Enggar
Garcia-Diez, Raul
Bystron, Tomas
Prokop, Martin
van der Merwe, Marianne
Arce, Mauricio D.
Jiménez, Catalina E.
Hsieh, Tzung-En
Frisch, Johannes
Steigert, Alexander
Favaro, Marco
Starr, David E.
Wilks, Regan G.
Bouzek, Karel
Bär, Marcus
author_sort Wibowo, Romualdus Enggar
collection PubMed
description [Image: see text] The oxidation of the aqueous H(3)PO(3) in contact with Pt was investigated for a fundamental understanding of the Pt/aqueous H(3)PO(3) interaction with the goal of providing a comprehensive basis for the further optimization of high-temperature polymer electrolyte membrane fuel cells (HT-PEMFCs). Ion-exchange chromatography (IEC) experiments suggested that in ambient conditions, Pt catalyzes H(3)PO(3) oxidation to H(3)PO(4) with H(2)O. X-ray photoelectron spectroscopy (XPS) on different substrates, including Au and Pt, previously treated in H(3)PO(3) solutions was conducted to determine the catalytic abilities of selected metals toward H(3)PO(3) oxidation. In situ ambient pressure hard X-ray photoelectron spectroscopy (AP-HAXPES) combined with the “dip-and-pull” method was performed to investigate the state of H(3)PO(3) at the Pt|H(3)PO(3) interface and in the bulk solution. It was shown that whereas H(3)PO(3) remains stable in the bulk solution, the catalyzed oxidation of H(3)PO(3) by H(2)O to H(3)PO(4) accompanied by H(2) generation occurs in contact with the Pt surface. This catalytic process likely involves H(3)PO(3) adsorption at the Pt surface in a highly reactive pyramidal tautomeric configuration.
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spelling pubmed-106367272023-11-15 Oxidation of Aqueous Phosphorous Acid Electrolyte in Contact with Pt Studied by X-ray Photoemission Spectroscopy Wibowo, Romualdus Enggar Garcia-Diez, Raul Bystron, Tomas Prokop, Martin van der Merwe, Marianne Arce, Mauricio D. Jiménez, Catalina E. Hsieh, Tzung-En Frisch, Johannes Steigert, Alexander Favaro, Marco Starr, David E. Wilks, Regan G. Bouzek, Karel Bär, Marcus ACS Appl Mater Interfaces [Image: see text] The oxidation of the aqueous H(3)PO(3) in contact with Pt was investigated for a fundamental understanding of the Pt/aqueous H(3)PO(3) interaction with the goal of providing a comprehensive basis for the further optimization of high-temperature polymer electrolyte membrane fuel cells (HT-PEMFCs). Ion-exchange chromatography (IEC) experiments suggested that in ambient conditions, Pt catalyzes H(3)PO(3) oxidation to H(3)PO(4) with H(2)O. X-ray photoelectron spectroscopy (XPS) on different substrates, including Au and Pt, previously treated in H(3)PO(3) solutions was conducted to determine the catalytic abilities of selected metals toward H(3)PO(3) oxidation. In situ ambient pressure hard X-ray photoelectron spectroscopy (AP-HAXPES) combined with the “dip-and-pull” method was performed to investigate the state of H(3)PO(3) at the Pt|H(3)PO(3) interface and in the bulk solution. It was shown that whereas H(3)PO(3) remains stable in the bulk solution, the catalyzed oxidation of H(3)PO(3) by H(2)O to H(3)PO(4) accompanied by H(2) generation occurs in contact with the Pt surface. This catalytic process likely involves H(3)PO(3) adsorption at the Pt surface in a highly reactive pyramidal tautomeric configuration. American Chemical Society 2023-10-27 /pmc/articles/PMC10636727/ /pubmed/37890003 http://dx.doi.org/10.1021/acsami.3c12557 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Wibowo, Romualdus Enggar
Garcia-Diez, Raul
Bystron, Tomas
Prokop, Martin
van der Merwe, Marianne
Arce, Mauricio D.
Jiménez, Catalina E.
Hsieh, Tzung-En
Frisch, Johannes
Steigert, Alexander
Favaro, Marco
Starr, David E.
Wilks, Regan G.
Bouzek, Karel
Bär, Marcus
Oxidation of Aqueous Phosphorous Acid Electrolyte in Contact with Pt Studied by X-ray Photoemission Spectroscopy
title Oxidation of Aqueous Phosphorous Acid Electrolyte in Contact with Pt Studied by X-ray Photoemission Spectroscopy
title_full Oxidation of Aqueous Phosphorous Acid Electrolyte in Contact with Pt Studied by X-ray Photoemission Spectroscopy
title_fullStr Oxidation of Aqueous Phosphorous Acid Electrolyte in Contact with Pt Studied by X-ray Photoemission Spectroscopy
title_full_unstemmed Oxidation of Aqueous Phosphorous Acid Electrolyte in Contact with Pt Studied by X-ray Photoemission Spectroscopy
title_short Oxidation of Aqueous Phosphorous Acid Electrolyte in Contact with Pt Studied by X-ray Photoemission Spectroscopy
title_sort oxidation of aqueous phosphorous acid electrolyte in contact with pt studied by x-ray photoemission spectroscopy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10636727/
https://www.ncbi.nlm.nih.gov/pubmed/37890003
http://dx.doi.org/10.1021/acsami.3c12557
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