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Insights into the Effect of Metal Ratio on Cooperative Redox Enhancement Effects over Au- and Pd-Mediated Alcohol Oxidation

[Image: see text] The aerobic oxidation of alcohols and aldehydes over supported heterogeneous catalysts can be considered as comprising two complementary and linked processes: dehydrogenation and oxygen reduction. Significant rate enhancements can be observed when these processes are catalyzed by i...

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Autores principales: Zhao, Liang, Akdim, Ouardia, Huang, Xiaoyang, Wang, Kai, Douthwaite, Mark, Pattisson, Samuel, Lewis, Richard J., Lin, Runjia, Yao, Bingqing, Morgan, David J., Shaw, Greg, He, Qian, Bethell, Donald, McIntosh, Steven, Kiely, Christopher J., Hutchings, Graham J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9990151/
https://www.ncbi.nlm.nih.gov/pubmed/36910870
http://dx.doi.org/10.1021/acscatal.2c06284
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author Zhao, Liang
Akdim, Ouardia
Huang, Xiaoyang
Wang, Kai
Douthwaite, Mark
Pattisson, Samuel
Lewis, Richard J.
Lin, Runjia
Yao, Bingqing
Morgan, David J.
Shaw, Greg
He, Qian
Bethell, Donald
McIntosh, Steven
Kiely, Christopher J.
Hutchings, Graham J.
author_facet Zhao, Liang
Akdim, Ouardia
Huang, Xiaoyang
Wang, Kai
Douthwaite, Mark
Pattisson, Samuel
Lewis, Richard J.
Lin, Runjia
Yao, Bingqing
Morgan, David J.
Shaw, Greg
He, Qian
Bethell, Donald
McIntosh, Steven
Kiely, Christopher J.
Hutchings, Graham J.
author_sort Zhao, Liang
collection PubMed
description [Image: see text] The aerobic oxidation of alcohols and aldehydes over supported heterogeneous catalysts can be considered as comprising two complementary and linked processes: dehydrogenation and oxygen reduction. Significant rate enhancements can be observed when these processes are catalyzed by independent active sites, coupled by electron transport between the two catalysts. This effect, termed cooperative redox enhancement (CORE), could significantly influence how researchers approach catalyst design, but a greater understanding of the factors which influence it is required. Herein, we demonstrate that the Au/Pd ratio used in physical mixtures of monometallic catalysts and phase-separated Au and Pd bimetallic catalysts dramatically influences the degree to which CORE effects can promote alcohol oxidation. Perhaps more interestingly, the roles of Au and Pd in this coupled system are determined to be interchangeable. Preliminarily, we hypothesize that this is attributed to the relative rates of the coupled reactions and demonstrate how physical properties can influence this. This deeper understanding of the factors which influence CORE is an important development in bimetallic catalysis.
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spelling pubmed-99901512023-03-08 Insights into the Effect of Metal Ratio on Cooperative Redox Enhancement Effects over Au- and Pd-Mediated Alcohol Oxidation Zhao, Liang Akdim, Ouardia Huang, Xiaoyang Wang, Kai Douthwaite, Mark Pattisson, Samuel Lewis, Richard J. Lin, Runjia Yao, Bingqing Morgan, David J. Shaw, Greg He, Qian Bethell, Donald McIntosh, Steven Kiely, Christopher J. Hutchings, Graham J. ACS Catal [Image: see text] The aerobic oxidation of alcohols and aldehydes over supported heterogeneous catalysts can be considered as comprising two complementary and linked processes: dehydrogenation and oxygen reduction. Significant rate enhancements can be observed when these processes are catalyzed by independent active sites, coupled by electron transport between the two catalysts. This effect, termed cooperative redox enhancement (CORE), could significantly influence how researchers approach catalyst design, but a greater understanding of the factors which influence it is required. Herein, we demonstrate that the Au/Pd ratio used in physical mixtures of monometallic catalysts and phase-separated Au and Pd bimetallic catalysts dramatically influences the degree to which CORE effects can promote alcohol oxidation. Perhaps more interestingly, the roles of Au and Pd in this coupled system are determined to be interchangeable. Preliminarily, we hypothesize that this is attributed to the relative rates of the coupled reactions and demonstrate how physical properties can influence this. This deeper understanding of the factors which influence CORE is an important development in bimetallic catalysis. American Chemical Society 2023-02-10 /pmc/articles/PMC9990151/ /pubmed/36910870 http://dx.doi.org/10.1021/acscatal.2c06284 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 Zhao, Liang
Akdim, Ouardia
Huang, Xiaoyang
Wang, Kai
Douthwaite, Mark
Pattisson, Samuel
Lewis, Richard J.
Lin, Runjia
Yao, Bingqing
Morgan, David J.
Shaw, Greg
He, Qian
Bethell, Donald
McIntosh, Steven
Kiely, Christopher J.
Hutchings, Graham J.
Insights into the Effect of Metal Ratio on Cooperative Redox Enhancement Effects over Au- and Pd-Mediated Alcohol Oxidation
title Insights into the Effect of Metal Ratio on Cooperative Redox Enhancement Effects over Au- and Pd-Mediated Alcohol Oxidation
title_full Insights into the Effect of Metal Ratio on Cooperative Redox Enhancement Effects over Au- and Pd-Mediated Alcohol Oxidation
title_fullStr Insights into the Effect of Metal Ratio on Cooperative Redox Enhancement Effects over Au- and Pd-Mediated Alcohol Oxidation
title_full_unstemmed Insights into the Effect of Metal Ratio on Cooperative Redox Enhancement Effects over Au- and Pd-Mediated Alcohol Oxidation
title_short Insights into the Effect of Metal Ratio on Cooperative Redox Enhancement Effects over Au- and Pd-Mediated Alcohol Oxidation
title_sort insights into the effect of metal ratio on cooperative redox enhancement effects over au- and pd-mediated alcohol oxidation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9990151/
https://www.ncbi.nlm.nih.gov/pubmed/36910870
http://dx.doi.org/10.1021/acscatal.2c06284
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