Cargando…

Doped metal clusters as bimetallic AuCo nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy

Co-doped Au(25) nanoclusters with different numbers of doping atoms were synthesized and supported on CeO(2). The catalytic properties were studied in the CO oxidation reaction. In all cases, an enhancement in catalytic activity was observed compared to the pure Au(25) nanocluster catalyst. Interest...

Descripción completa

Detalles Bibliográficos
Autores principales: Barrabés, Noelia, Ostolaza, Jon, Reindl, Sarah, Mähr, Martin, Schrenk, Florian, Drexler, Hedda, Rameshan, Christoph, Olszewski, Wojciech, Rupprechter, Günther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9890489/
https://www.ncbi.nlm.nih.gov/pubmed/36330869
http://dx.doi.org/10.1039/d2fd00120a
_version_ 1784880954220740608
author Barrabés, Noelia
Ostolaza, Jon
Reindl, Sarah
Mähr, Martin
Schrenk, Florian
Drexler, Hedda
Rameshan, Christoph
Olszewski, Wojciech
Rupprechter, Günther
author_facet Barrabés, Noelia
Ostolaza, Jon
Reindl, Sarah
Mähr, Martin
Schrenk, Florian
Drexler, Hedda
Rameshan, Christoph
Olszewski, Wojciech
Rupprechter, Günther
author_sort Barrabés, Noelia
collection PubMed
description Co-doped Au(25) nanoclusters with different numbers of doping atoms were synthesized and supported on CeO(2). The catalytic properties were studied in the CO oxidation reaction. In all cases, an enhancement in catalytic activity was observed compared to the pure Au(25) nanocluster catalyst. Interestingly, a different catalytic performance was obtained depending on the number of Co atoms within the cluster. This was related to the mobility of atoms within the cluster’s structure under pretreatment and reaction conditions, resulting in active CoAu nanoalloy sites. The evolution of the doped Au clusters into nanoalloys with well-distributed Co atoms within the Au cluster structure was revealed by combined XAFS, DRIFTS, and XPS studies. Overall, these studies contribute to a better understanding of the dynamics of doped nanoclusters on supports upon pretreatment and reaction, which is key information for the future development and application of bimetallic nanocluster (nanoalloy) catalysts.
format Online
Article
Text
id pubmed-9890489
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-98904892023-02-02 Doped metal clusters as bimetallic AuCo nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy Barrabés, Noelia Ostolaza, Jon Reindl, Sarah Mähr, Martin Schrenk, Florian Drexler, Hedda Rameshan, Christoph Olszewski, Wojciech Rupprechter, Günther Faraday Discuss Chemistry Co-doped Au(25) nanoclusters with different numbers of doping atoms were synthesized and supported on CeO(2). The catalytic properties were studied in the CO oxidation reaction. In all cases, an enhancement in catalytic activity was observed compared to the pure Au(25) nanocluster catalyst. Interestingly, a different catalytic performance was obtained depending on the number of Co atoms within the cluster. This was related to the mobility of atoms within the cluster’s structure under pretreatment and reaction conditions, resulting in active CoAu nanoalloy sites. The evolution of the doped Au clusters into nanoalloys with well-distributed Co atoms within the Au cluster structure was revealed by combined XAFS, DRIFTS, and XPS studies. Overall, these studies contribute to a better understanding of the dynamics of doped nanoclusters on supports upon pretreatment and reaction, which is key information for the future development and application of bimetallic nanocluster (nanoalloy) catalysts. The Royal Society of Chemistry 2022-07-13 /pmc/articles/PMC9890489/ /pubmed/36330869 http://dx.doi.org/10.1039/d2fd00120a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Barrabés, Noelia
Ostolaza, Jon
Reindl, Sarah
Mähr, Martin
Schrenk, Florian
Drexler, Hedda
Rameshan, Christoph
Olszewski, Wojciech
Rupprechter, Günther
Doped metal clusters as bimetallic AuCo nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy
title Doped metal clusters as bimetallic AuCo nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy
title_full Doped metal clusters as bimetallic AuCo nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy
title_fullStr Doped metal clusters as bimetallic AuCo nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy
title_full_unstemmed Doped metal clusters as bimetallic AuCo nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy
title_short Doped metal clusters as bimetallic AuCo nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy
title_sort doped metal clusters as bimetallic auco nanocatalysts: insights into structural dynamics and correlation with catalytic activity by in situ spectroscopy
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9890489/
https://www.ncbi.nlm.nih.gov/pubmed/36330869
http://dx.doi.org/10.1039/d2fd00120a
work_keys_str_mv AT barrabesnoelia dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy
AT ostolazajon dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy
AT reindlsarah dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy
AT mahrmartin dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy
AT schrenkflorian dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy
AT drexlerhedda dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy
AT rameshanchristoph dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy
AT olszewskiwojciech dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy
AT rupprechtergunther dopedmetalclustersasbimetallicauconanocatalystsinsightsintostructuraldynamicsandcorrelationwithcatalyticactivitybyinsituspectroscopy