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Plasmonic Nanodomains Decorated on Two-Dimensional Oxide Semiconductors for Photonic-Assisted CO(2) Conversion

Plasmonic nanostructures ensure the reception and harvesting of visible lights for novel photonic applications. In this area, plasmonic crystalline nanodomains decorated on the surface of two-dimensional (2D) semiconductor materials represent a new class of hybrid nanostructures. These plasmonic nan...

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Autores principales: Karbalaei Akbari, Mohammad, Siraj Lopa, Nasrin, Park, Jihae, Zhuiykov, Serge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10223193/
https://www.ncbi.nlm.nih.gov/pubmed/37241301
http://dx.doi.org/10.3390/ma16103675
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author Karbalaei Akbari, Mohammad
Siraj Lopa, Nasrin
Park, Jihae
Zhuiykov, Serge
author_facet Karbalaei Akbari, Mohammad
Siraj Lopa, Nasrin
Park, Jihae
Zhuiykov, Serge
author_sort Karbalaei Akbari, Mohammad
collection PubMed
description Plasmonic nanostructures ensure the reception and harvesting of visible lights for novel photonic applications. In this area, plasmonic crystalline nanodomains decorated on the surface of two-dimensional (2D) semiconductor materials represent a new class of hybrid nanostructures. These plasmonic nanodomains activate supplementary mechanisms at material heterointerfaces, enabling the transfer of photogenerated charge carriers from plasmonic antennae into adjacent 2D semiconductors and therefore activate a wide range of visible-light assisted applications. Here, the controlled growth of crystalline plasmonic nanodomains on 2D Ga(2)O(3) nanosheets was achieved by sonochemical-assisted synthesis. In this technique, Ag and Se nanodomains grew on 2D surface oxide films of gallium-based alloy. The multiple contribution of plasmonic nanodomains enabled the visible-light-assisted hot-electron generation at 2D plasmonic hybrid interfaces, and therefore considerably altered the photonic properties of the 2D Ga(2)O(3) nanosheets. Specifically, the multiple contribution of semiconductor–plasmonic hybrid 2D heterointerfaces enabled efficient CO(2) conversion through combined photocatalysis and triboelectric-activated catalysis. The solar-powered acoustic-activated conversion approach of the present study enabled us to achieve the CO(2) conversion efficiency of more than 94% in the reaction chambers containing 2D Ga(2)O(3)-Ag nanosheets.
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spelling pubmed-102231932023-05-28 Plasmonic Nanodomains Decorated on Two-Dimensional Oxide Semiconductors for Photonic-Assisted CO(2) Conversion Karbalaei Akbari, Mohammad Siraj Lopa, Nasrin Park, Jihae Zhuiykov, Serge Materials (Basel) Article Plasmonic nanostructures ensure the reception and harvesting of visible lights for novel photonic applications. In this area, plasmonic crystalline nanodomains decorated on the surface of two-dimensional (2D) semiconductor materials represent a new class of hybrid nanostructures. These plasmonic nanodomains activate supplementary mechanisms at material heterointerfaces, enabling the transfer of photogenerated charge carriers from plasmonic antennae into adjacent 2D semiconductors and therefore activate a wide range of visible-light assisted applications. Here, the controlled growth of crystalline plasmonic nanodomains on 2D Ga(2)O(3) nanosheets was achieved by sonochemical-assisted synthesis. In this technique, Ag and Se nanodomains grew on 2D surface oxide films of gallium-based alloy. The multiple contribution of plasmonic nanodomains enabled the visible-light-assisted hot-electron generation at 2D plasmonic hybrid interfaces, and therefore considerably altered the photonic properties of the 2D Ga(2)O(3) nanosheets. Specifically, the multiple contribution of semiconductor–plasmonic hybrid 2D heterointerfaces enabled efficient CO(2) conversion through combined photocatalysis and triboelectric-activated catalysis. The solar-powered acoustic-activated conversion approach of the present study enabled us to achieve the CO(2) conversion efficiency of more than 94% in the reaction chambers containing 2D Ga(2)O(3)-Ag nanosheets. MDPI 2023-05-11 /pmc/articles/PMC10223193/ /pubmed/37241301 http://dx.doi.org/10.3390/ma16103675 Text en © 2023 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
Karbalaei Akbari, Mohammad
Siraj Lopa, Nasrin
Park, Jihae
Zhuiykov, Serge
Plasmonic Nanodomains Decorated on Two-Dimensional Oxide Semiconductors for Photonic-Assisted CO(2) Conversion
title Plasmonic Nanodomains Decorated on Two-Dimensional Oxide Semiconductors for Photonic-Assisted CO(2) Conversion
title_full Plasmonic Nanodomains Decorated on Two-Dimensional Oxide Semiconductors for Photonic-Assisted CO(2) Conversion
title_fullStr Plasmonic Nanodomains Decorated on Two-Dimensional Oxide Semiconductors for Photonic-Assisted CO(2) Conversion
title_full_unstemmed Plasmonic Nanodomains Decorated on Two-Dimensional Oxide Semiconductors for Photonic-Assisted CO(2) Conversion
title_short Plasmonic Nanodomains Decorated on Two-Dimensional Oxide Semiconductors for Photonic-Assisted CO(2) Conversion
title_sort plasmonic nanodomains decorated on two-dimensional oxide semiconductors for photonic-assisted co(2) conversion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10223193/
https://www.ncbi.nlm.nih.gov/pubmed/37241301
http://dx.doi.org/10.3390/ma16103675
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AT parkjihae plasmonicnanodomainsdecoratedontwodimensionaloxidesemiconductorsforphotonicassistedco2conversion
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