Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels

Plasmonic Au/Ag alloy NPs supported on TiO2 nanowires (TiO2 NWs) have been designed and synthesized through a facile hydrothermal and photo-deposition method. The samples were characterized by XRD, FE-SEM, TEM, N2-adsorption-desorption, XPS, Raman, UV–vis and PL spectroscopy. Bimetallic Au/Ag NPs we...

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Main Authors: Tahir, M., Tahir, B., Amin, N. A. S.
Format: Article
Published: Elsevier B.V. 2017
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author Tahir, M.
Tahir, B.
Amin, N. A. S.
author_facet Tahir, M.
Tahir, B.
Amin, N. A. S.
author_sort Tahir, M.
collection ePrints
description Plasmonic Au/Ag alloy NPs supported on TiO2 nanowires (TiO2 NWs) have been designed and synthesized through a facile hydrothermal and photo-deposition method. The samples were characterized by XRD, FE-SEM, TEM, N2-adsorption-desorption, XPS, Raman, UV–vis and PL spectroscopy. Bimetallic Au/Ag NPs were presented over the TiO2 NWs as an alloy, thus exhibited strong absorption of visible light due to the localized surface plasmon resonance (LSPR) excitation. The synergistic effect in plasmonic Au/Ag alloy NPs for selective photocatalytic CO2 reduction with H2 to CO and hydrocarbons under visible light irradiation was investigated. The present design of plasmonic Au/Ag NPs co-decorated TiO2 NWs leads to remarkably enhanced photoactivity of CO2 reduction to CO. The CO evolution rate as a main product over the Au-Ag alloy NPs coated TiO2 NWs was 1813 μmole-g-catal.−1 h−1 at selectivity 98%. This amount was approximately 1.72 time larger comparing to Au-NPs/TiO2 NWs, 1.84 fold more than the Ag-NPs/TiO2 NWs, 72.52 fold than the TiO2 NWs and 201 fold more than the amount of CO produced over the bare TiO2-NPs. This great enhancement can be attributed to synergistic effects in Au/Ag-NPs, enhanced visible light absorption due to Au-Ag alloy formation and improved charge separation in LSPR-excited TiO2 NWs. In addition, turnover productivity is introduced to investigate the effect of operating parameters on the performance of photocatalysts. The plasmonic reaction mechanism of Au-Ag NPs in conjunction with LSPR excitation and charge transport to understand the reaction pathway is described.
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spelling utm.eprints-753142018-03-27T06:12:20Z http://eprints.utm.my/75314/ Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels Tahir, M. Tahir, B. Amin, N. A. S. TP Chemical technology Plasmonic Au/Ag alloy NPs supported on TiO2 nanowires (TiO2 NWs) have been designed and synthesized through a facile hydrothermal and photo-deposition method. The samples were characterized by XRD, FE-SEM, TEM, N2-adsorption-desorption, XPS, Raman, UV–vis and PL spectroscopy. Bimetallic Au/Ag NPs were presented over the TiO2 NWs as an alloy, thus exhibited strong absorption of visible light due to the localized surface plasmon resonance (LSPR) excitation. The synergistic effect in plasmonic Au/Ag alloy NPs for selective photocatalytic CO2 reduction with H2 to CO and hydrocarbons under visible light irradiation was investigated. The present design of plasmonic Au/Ag NPs co-decorated TiO2 NWs leads to remarkably enhanced photoactivity of CO2 reduction to CO. The CO evolution rate as a main product over the Au-Ag alloy NPs coated TiO2 NWs was 1813 μmole-g-catal.−1 h−1 at selectivity 98%. This amount was approximately 1.72 time larger comparing to Au-NPs/TiO2 NWs, 1.84 fold more than the Ag-NPs/TiO2 NWs, 72.52 fold than the TiO2 NWs and 201 fold more than the amount of CO produced over the bare TiO2-NPs. This great enhancement can be attributed to synergistic effects in Au/Ag-NPs, enhanced visible light absorption due to Au-Ag alloy formation and improved charge separation in LSPR-excited TiO2 NWs. In addition, turnover productivity is introduced to investigate the effect of operating parameters on the performance of photocatalysts. The plasmonic reaction mechanism of Au-Ag NPs in conjunction with LSPR excitation and charge transport to understand the reaction pathway is described. Elsevier B.V. 2017 Article PeerReviewed Tahir, M. and Tahir, B. and Amin, N. A. S. (2017) Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels. Applied Catalysis B: Environmental, 204 . pp. 548-560. ISSN 0926-3373 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85003009429&doi=10.1016%2fj.apcatb.2016.11.062&partnerID=40&md5=b9b2015391dffaace6b886ce01464b17 DOI:10.1016/j.apcatb.2016.11.062
spellingShingle TP Chemical technology
Tahir, M.
Tahir, B.
Amin, N. A. S.
Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels
title Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels
title_full Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels
title_fullStr Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels
title_full_unstemmed Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels
title_short Synergistic effect in plasmonic Au/Ag alloy NPs co-coated TiO2 NWs toward visible-light enhanced CO2 photoreduction to fuels
title_sort synergistic effect in plasmonic au ag alloy nps co coated tio2 nws toward visible light enhanced co2 photoreduction to fuels
topic TP Chemical technology
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AT tahirb synergisticeffectinplasmonicauagalloynpscocoatedtio2nwstowardvisiblelightenhancedco2photoreductiontofuels
AT aminnas synergisticeffectinplasmonicauagalloynpscocoatedtio2nwstowardvisiblelightenhancedco2photoreductiontofuels