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Pyropheophorbide-a/(001) TiO(2) Nanocomposites with Enhanced Charge Separation and O(2) Adsorption for High-Efficiency Visible-Light Degradation of Ametryn

It is highly desired to enhance charge separation and O(2) adsorption of the pyropheophorbide-a (Ppa) to promote visible-light activity and stability. Herein, Ppa modified 001-facet-exposed TiO(2) nanosheets (Ppa/001T) nanocomposites with different weight ratios were fabricated via the self-assembly...

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Autores principales: Liu, Songtao, Yan, Rui, Humayun, Muhammad, Zhang, Huanli, Qu, Yang, Jin, Yingxue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9458040/
https://www.ncbi.nlm.nih.gov/pubmed/36080345
http://dx.doi.org/10.3390/molecules27175576
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author Liu, Songtao
Yan, Rui
Humayun, Muhammad
Zhang, Huanli
Qu, Yang
Jin, Yingxue
author_facet Liu, Songtao
Yan, Rui
Humayun, Muhammad
Zhang, Huanli
Qu, Yang
Jin, Yingxue
author_sort Liu, Songtao
collection PubMed
description It is highly desired to enhance charge separation and O(2) adsorption of the pyropheophorbide-a (Ppa) to promote visible-light activity and stability. Herein, Ppa modified 001-facet-exposed TiO(2) nanosheets (Ppa/001T) nanocomposites with different weight ratios were fabricated via the self-assembly approach by OH induced. Compared with the bare Ppa, the 8% amount optimized 8Ppa/001T sample displayed 41-fold enhanced activity for degradation of Ametryn (AME) under visible-light irradiation. The promoted photoactivities could be attributed to the accelerated charge carrier’s separation by coupling TiO(2) as thermodynamic platform for accepting the photoelectrons with high energy from Ppa and the promoted O(2) adsorption because of the residual fluoride on TiO(2). As for this, a distinctive two radicals (•O(2)(−) and •OH) involved pathway of AME degradation is carried out, which is different from the radical pathway dominated by •O(2)(−) for the bare Ppa. This work is of utmost importance since it gives us detailed information regarding the charge carrier’s separation and the impact of the radical pathway that will pave a new approach toward the design of high activity visible-light driven photocatalysts.
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spelling pubmed-94580402022-09-09 Pyropheophorbide-a/(001) TiO(2) Nanocomposites with Enhanced Charge Separation and O(2) Adsorption for High-Efficiency Visible-Light Degradation of Ametryn Liu, Songtao Yan, Rui Humayun, Muhammad Zhang, Huanli Qu, Yang Jin, Yingxue Molecules Article It is highly desired to enhance charge separation and O(2) adsorption of the pyropheophorbide-a (Ppa) to promote visible-light activity and stability. Herein, Ppa modified 001-facet-exposed TiO(2) nanosheets (Ppa/001T) nanocomposites with different weight ratios were fabricated via the self-assembly approach by OH induced. Compared with the bare Ppa, the 8% amount optimized 8Ppa/001T sample displayed 41-fold enhanced activity for degradation of Ametryn (AME) under visible-light irradiation. The promoted photoactivities could be attributed to the accelerated charge carrier’s separation by coupling TiO(2) as thermodynamic platform for accepting the photoelectrons with high energy from Ppa and the promoted O(2) adsorption because of the residual fluoride on TiO(2). As for this, a distinctive two radicals (•O(2)(−) and •OH) involved pathway of AME degradation is carried out, which is different from the radical pathway dominated by •O(2)(−) for the bare Ppa. This work is of utmost importance since it gives us detailed information regarding the charge carrier’s separation and the impact of the radical pathway that will pave a new approach toward the design of high activity visible-light driven photocatalysts. MDPI 2022-08-30 /pmc/articles/PMC9458040/ /pubmed/36080345 http://dx.doi.org/10.3390/molecules27175576 Text en © 2022 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
Liu, Songtao
Yan, Rui
Humayun, Muhammad
Zhang, Huanli
Qu, Yang
Jin, Yingxue
Pyropheophorbide-a/(001) TiO(2) Nanocomposites with Enhanced Charge Separation and O(2) Adsorption for High-Efficiency Visible-Light Degradation of Ametryn
title Pyropheophorbide-a/(001) TiO(2) Nanocomposites with Enhanced Charge Separation and O(2) Adsorption for High-Efficiency Visible-Light Degradation of Ametryn
title_full Pyropheophorbide-a/(001) TiO(2) Nanocomposites with Enhanced Charge Separation and O(2) Adsorption for High-Efficiency Visible-Light Degradation of Ametryn
title_fullStr Pyropheophorbide-a/(001) TiO(2) Nanocomposites with Enhanced Charge Separation and O(2) Adsorption for High-Efficiency Visible-Light Degradation of Ametryn
title_full_unstemmed Pyropheophorbide-a/(001) TiO(2) Nanocomposites with Enhanced Charge Separation and O(2) Adsorption for High-Efficiency Visible-Light Degradation of Ametryn
title_short Pyropheophorbide-a/(001) TiO(2) Nanocomposites with Enhanced Charge Separation and O(2) Adsorption for High-Efficiency Visible-Light Degradation of Ametryn
title_sort pyropheophorbide-a/(001) tio(2) nanocomposites with enhanced charge separation and o(2) adsorption for high-efficiency visible-light degradation of ametryn
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9458040/
https://www.ncbi.nlm.nih.gov/pubmed/36080345
http://dx.doi.org/10.3390/molecules27175576
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