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Visible and Near‐Infrared Photothermal Catalyzed Hydrogenation of Gaseous CO(2) over Nanostructured Pd@Nb(2)O(5)

The reverse water gas shift (RWGS) reaction driven by Nb(2)O(5) nanorod‐supported Pd nanocrystals without external heating using visible and near infrared (NIR) light is demonstrated. By measuring the dependence of the RWGS reaction rates on the intensity and spectral power distribution of filtered...

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Autores principales: Jia, Jia, O'Brien, Paul G., He, Le, Qiao, Qiao, Fei, Teng, Reyes, Laura M., Burrow, Timothy E., Dong, Yuchan, Liao, Kristine, Varela, Maria, Pennycook, Stephen J., Hmadeh, Mohamad, Helmy, Amr S., Kherani, Nazir P., Perovic, Doug D., Ozin, Geoffrey A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5095794/
https://www.ncbi.nlm.nih.gov/pubmed/27840802
http://dx.doi.org/10.1002/advs.201600189
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author Jia, Jia
O'Brien, Paul G.
He, Le
Qiao, Qiao
Fei, Teng
Reyes, Laura M.
Burrow, Timothy E.
Dong, Yuchan
Liao, Kristine
Varela, Maria
Pennycook, Stephen J.
Hmadeh, Mohamad
Helmy, Amr S.
Kherani, Nazir P.
Perovic, Doug D.
Ozin, Geoffrey A.
author_facet Jia, Jia
O'Brien, Paul G.
He, Le
Qiao, Qiao
Fei, Teng
Reyes, Laura M.
Burrow, Timothy E.
Dong, Yuchan
Liao, Kristine
Varela, Maria
Pennycook, Stephen J.
Hmadeh, Mohamad
Helmy, Amr S.
Kherani, Nazir P.
Perovic, Doug D.
Ozin, Geoffrey A.
author_sort Jia, Jia
collection PubMed
description The reverse water gas shift (RWGS) reaction driven by Nb(2)O(5) nanorod‐supported Pd nanocrystals without external heating using visible and near infrared (NIR) light is demonstrated. By measuring the dependence of the RWGS reaction rates on the intensity and spectral power distribution of filtered light incident onto the nanostructured Pd@Nb(2)O(5) catalyst, it is determined that the RWGS reaction is activated photothermally. That is the RWGS reaction is initiated by heat generated from thermalization of charge carriers in the Pd nanocrystals that are excited by interband and intraband absorption of visible and NIR light. Taking advantage of this photothermal effect, a visible and NIR responsive Pd@Nb(2)O(5) hybrid catalyst that efficiently hydrogenates CO(2) to CO at an impressive rate as high as 1.8 mmol gcat(−1) h(−1) is developed. The mechanism of this photothermal reaction involves H(2) dissociation on Pd nanocrystals and subsequent spillover of H to the Nb(2)O(5) nanorods whereupon adsorbed CO(2) is hydrogenated to CO. This work represents a significant enhancement in our understanding of the underlying mechanism of photothermally driven CO(2) reduction and will help guide the way toward the development of highly efficient catalysts that exploit the full solar spectrum to convert gas‐phase CO(2) to valuable chemicals and fuels.
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spelling pubmed-50957942016-11-09 Visible and Near‐Infrared Photothermal Catalyzed Hydrogenation of Gaseous CO(2) over Nanostructured Pd@Nb(2)O(5) Jia, Jia O'Brien, Paul G. He, Le Qiao, Qiao Fei, Teng Reyes, Laura M. Burrow, Timothy E. Dong, Yuchan Liao, Kristine Varela, Maria Pennycook, Stephen J. Hmadeh, Mohamad Helmy, Amr S. Kherani, Nazir P. Perovic, Doug D. Ozin, Geoffrey A. Adv Sci (Weinh) Full Papers The reverse water gas shift (RWGS) reaction driven by Nb(2)O(5) nanorod‐supported Pd nanocrystals without external heating using visible and near infrared (NIR) light is demonstrated. By measuring the dependence of the RWGS reaction rates on the intensity and spectral power distribution of filtered light incident onto the nanostructured Pd@Nb(2)O(5) catalyst, it is determined that the RWGS reaction is activated photothermally. That is the RWGS reaction is initiated by heat generated from thermalization of charge carriers in the Pd nanocrystals that are excited by interband and intraband absorption of visible and NIR light. Taking advantage of this photothermal effect, a visible and NIR responsive Pd@Nb(2)O(5) hybrid catalyst that efficiently hydrogenates CO(2) to CO at an impressive rate as high as 1.8 mmol gcat(−1) h(−1) is developed. The mechanism of this photothermal reaction involves H(2) dissociation on Pd nanocrystals and subsequent spillover of H to the Nb(2)O(5) nanorods whereupon adsorbed CO(2) is hydrogenated to CO. This work represents a significant enhancement in our understanding of the underlying mechanism of photothermally driven CO(2) reduction and will help guide the way toward the development of highly efficient catalysts that exploit the full solar spectrum to convert gas‐phase CO(2) to valuable chemicals and fuels. John Wiley and Sons Inc. 2016-07-05 /pmc/articles/PMC5095794/ /pubmed/27840802 http://dx.doi.org/10.1002/advs.201600189 Text en © 2016 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Jia, Jia
O'Brien, Paul G.
He, Le
Qiao, Qiao
Fei, Teng
Reyes, Laura M.
Burrow, Timothy E.
Dong, Yuchan
Liao, Kristine
Varela, Maria
Pennycook, Stephen J.
Hmadeh, Mohamad
Helmy, Amr S.
Kherani, Nazir P.
Perovic, Doug D.
Ozin, Geoffrey A.
Visible and Near‐Infrared Photothermal Catalyzed Hydrogenation of Gaseous CO(2) over Nanostructured Pd@Nb(2)O(5)
title Visible and Near‐Infrared Photothermal Catalyzed Hydrogenation of Gaseous CO(2) over Nanostructured Pd@Nb(2)O(5)
title_full Visible and Near‐Infrared Photothermal Catalyzed Hydrogenation of Gaseous CO(2) over Nanostructured Pd@Nb(2)O(5)
title_fullStr Visible and Near‐Infrared Photothermal Catalyzed Hydrogenation of Gaseous CO(2) over Nanostructured Pd@Nb(2)O(5)
title_full_unstemmed Visible and Near‐Infrared Photothermal Catalyzed Hydrogenation of Gaseous CO(2) over Nanostructured Pd@Nb(2)O(5)
title_short Visible and Near‐Infrared Photothermal Catalyzed Hydrogenation of Gaseous CO(2) over Nanostructured Pd@Nb(2)O(5)
title_sort visible and near‐infrared photothermal catalyzed hydrogenation of gaseous co(2) over nanostructured pd@nb(2)o(5)
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5095794/
https://www.ncbi.nlm.nih.gov/pubmed/27840802
http://dx.doi.org/10.1002/advs.201600189
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