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Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play?

The effect of the nature of the catalyst on the performance and mechanism of the hydrogen oxidation reaction (HOR) is discussed for the first time in this work. HOR is an anodic reaction that takes place in anionic exchange membrane fuel cells (AEMFCs) and hydrogen pumps (HPs). Among the investigate...

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Autores principales: Anaya-Castro, Felipe de Jesús, Beltrán-Gastélum, Mara, Morales Soto, Omar, Pérez-Sicairos, Sergio, Lin, Shui Wai, Trujillo-Navarrete, Balter, Paraguay-Delgado, Francisco, Salazar-Gastélum, Luis Javier, Romero-Castañón, Tatiana, Reynoso-Soto, Edgar, Félix-Navarro, Rosa María, Salazar-Gastélum, Moisés Israel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8625230/
https://www.ncbi.nlm.nih.gov/pubmed/34835920
http://dx.doi.org/10.3390/nano11113156
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author Anaya-Castro, Felipe de Jesús
Beltrán-Gastélum, Mara
Morales Soto, Omar
Pérez-Sicairos, Sergio
Lin, Shui Wai
Trujillo-Navarrete, Balter
Paraguay-Delgado, Francisco
Salazar-Gastélum, Luis Javier
Romero-Castañón, Tatiana
Reynoso-Soto, Edgar
Félix-Navarro, Rosa María
Salazar-Gastélum, Moisés Israel
author_facet Anaya-Castro, Felipe de Jesús
Beltrán-Gastélum, Mara
Morales Soto, Omar
Pérez-Sicairos, Sergio
Lin, Shui Wai
Trujillo-Navarrete, Balter
Paraguay-Delgado, Francisco
Salazar-Gastélum, Luis Javier
Romero-Castañón, Tatiana
Reynoso-Soto, Edgar
Félix-Navarro, Rosa María
Salazar-Gastélum, Moisés Israel
author_sort Anaya-Castro, Felipe de Jesús
collection PubMed
description The effect of the nature of the catalyst on the performance and mechanism of the hydrogen oxidation reaction (HOR) is discussed for the first time in this work. HOR is an anodic reaction that takes place in anionic exchange membrane fuel cells (AEMFCs) and hydrogen pumps (HPs). Among the investigated catalysts, Pt exhibited the best performance in the HOR. However, the cost and the availability limit the usage. Co is incorporated as a co-catalyst due to its oxophylic nature. Five different PtCo catalysts with different Pt loading values were synthesized in order to decrease Pt loading. The catalytic activities and the reaction mechanism were studied via electrochemical techniques, and it was found that both features are a function of Pt loading; low-Pt-loading catalysts (Pt loading < 2.7%) led to a high half-wave potential in the hydrogen oxidation reaction, which is related to higher activation energy and an intermediate Tafel slope value, related to a mixed HOR mechanism. However, catalysts with moderate Pt loading (Pt loading > 3.1%) exhibited lower E(1/2) than the other catalysts and exhibited a mechanism similar to that of commercial Pt catalysts. Our results demonstrate that Co plays an active role in the HOR, facilitating H(ads) desorption, which is the rate-determining step (RDS) in the mechanism of the HOR.
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spelling pubmed-86252302021-11-27 Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play? Anaya-Castro, Felipe de Jesús Beltrán-Gastélum, Mara Morales Soto, Omar Pérez-Sicairos, Sergio Lin, Shui Wai Trujillo-Navarrete, Balter Paraguay-Delgado, Francisco Salazar-Gastélum, Luis Javier Romero-Castañón, Tatiana Reynoso-Soto, Edgar Félix-Navarro, Rosa María Salazar-Gastélum, Moisés Israel Nanomaterials (Basel) Article The effect of the nature of the catalyst on the performance and mechanism of the hydrogen oxidation reaction (HOR) is discussed for the first time in this work. HOR is an anodic reaction that takes place in anionic exchange membrane fuel cells (AEMFCs) and hydrogen pumps (HPs). Among the investigated catalysts, Pt exhibited the best performance in the HOR. However, the cost and the availability limit the usage. Co is incorporated as a co-catalyst due to its oxophylic nature. Five different PtCo catalysts with different Pt loading values were synthesized in order to decrease Pt loading. The catalytic activities and the reaction mechanism were studied via electrochemical techniques, and it was found that both features are a function of Pt loading; low-Pt-loading catalysts (Pt loading < 2.7%) led to a high half-wave potential in the hydrogen oxidation reaction, which is related to higher activation energy and an intermediate Tafel slope value, related to a mixed HOR mechanism. However, catalysts with moderate Pt loading (Pt loading > 3.1%) exhibited lower E(1/2) than the other catalysts and exhibited a mechanism similar to that of commercial Pt catalysts. Our results demonstrate that Co plays an active role in the HOR, facilitating H(ads) desorption, which is the rate-determining step (RDS) in the mechanism of the HOR. MDPI 2021-11-22 /pmc/articles/PMC8625230/ /pubmed/34835920 http://dx.doi.org/10.3390/nano11113156 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Anaya-Castro, Felipe de Jesús
Beltrán-Gastélum, Mara
Morales Soto, Omar
Pérez-Sicairos, Sergio
Lin, Shui Wai
Trujillo-Navarrete, Balter
Paraguay-Delgado, Francisco
Salazar-Gastélum, Luis Javier
Romero-Castañón, Tatiana
Reynoso-Soto, Edgar
Félix-Navarro, Rosa María
Salazar-Gastélum, Moisés Israel
Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play?
title Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play?
title_full Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play?
title_fullStr Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play?
title_full_unstemmed Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play?
title_short Ultra-Low Pt Loading in PtCo Catalysts for the Hydrogen Oxidation Reaction: What Role Do Co Nanoparticles Play?
title_sort ultra-low pt loading in ptco catalysts for the hydrogen oxidation reaction: what role do co nanoparticles play?
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8625230/
https://www.ncbi.nlm.nih.gov/pubmed/34835920
http://dx.doi.org/10.3390/nano11113156
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