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Enhanced Photocatalytic Properties of Restacked Unilamellar [SrTa(2)O(7)](2–) Nanosheets of Aurivillius Phase Layered Perovskites

[Image: see text] In the present work, unilamellar [SrTa(2)O(7)](2–) perovskite nanosheets with variable lateral dimensions were synthesized via a high-yield, three-step liquid exfoliation route from layered Bi(2)SrTa(2)O(9). The photocatalytic activity of the parent and exfoliated layered perovskit...

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Autores principales: Khodabakhsh, Mohammadreza, Yilmaz, Bengisu, Firoozi, Sadegh, Fatmehsari Haghshenas, Davoud, Unal, Ugur
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10034980/
https://www.ncbi.nlm.nih.gov/pubmed/36969431
http://dx.doi.org/10.1021/acsomega.3c00593
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author Khodabakhsh, Mohammadreza
Yilmaz, Bengisu
Firoozi, Sadegh
Fatmehsari Haghshenas, Davoud
Unal, Ugur
author_facet Khodabakhsh, Mohammadreza
Yilmaz, Bengisu
Firoozi, Sadegh
Fatmehsari Haghshenas, Davoud
Unal, Ugur
author_sort Khodabakhsh, Mohammadreza
collection PubMed
description [Image: see text] In the present work, unilamellar [SrTa(2)O(7)](2–) perovskite nanosheets with variable lateral dimensions were synthesized via a high-yield, three-step liquid exfoliation route from layered Bi(2)SrTa(2)O(9). The photocatalytic activity of the parent and exfoliated layered perovskites was evaluated for the photocatalytic dye degradation of Rhodamine B under UV light (254 nm) and reduction of water to H(2) under the full solar spectrum. A comparative study of the photocatalytic behavior of unilamellar [SrTa(2)O(7)](2–) perovskite nanosheets and parent layered structure showed a significant improvement in both hydrogen evolution (98.20 vs 3 μmol g(–1)) and Rhodamine B degradation time (180 vs 30 min), with the restacked nanosheets. The exfoliation of layered perovskites not only increases their specific surface area, providing more active sites, but also reduces the recombination probability of electrons and holes due to their unilamellar structure and reduced charge transport pathways. The synthesis and preparation of strong acid solids such as [SrTa(2)O(7)](2–) perovskite nanosheets can be a promising approach for effective adsorption of pollutants with cationic nature and more efficient electron transfer between the dye and catalyst. Finally, the photocatalytic characteristics of the restacked unilamellar [SrTa(2)O(7)](2–) nanosheets remained unchanged after three successive cycles of recycling–reusing.
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spelling pubmed-100349802023-03-24 Enhanced Photocatalytic Properties of Restacked Unilamellar [SrTa(2)O(7)](2–) Nanosheets of Aurivillius Phase Layered Perovskites Khodabakhsh, Mohammadreza Yilmaz, Bengisu Firoozi, Sadegh Fatmehsari Haghshenas, Davoud Unal, Ugur ACS Omega [Image: see text] In the present work, unilamellar [SrTa(2)O(7)](2–) perovskite nanosheets with variable lateral dimensions were synthesized via a high-yield, three-step liquid exfoliation route from layered Bi(2)SrTa(2)O(9). The photocatalytic activity of the parent and exfoliated layered perovskites was evaluated for the photocatalytic dye degradation of Rhodamine B under UV light (254 nm) and reduction of water to H(2) under the full solar spectrum. A comparative study of the photocatalytic behavior of unilamellar [SrTa(2)O(7)](2–) perovskite nanosheets and parent layered structure showed a significant improvement in both hydrogen evolution (98.20 vs 3 μmol g(–1)) and Rhodamine B degradation time (180 vs 30 min), with the restacked nanosheets. The exfoliation of layered perovskites not only increases their specific surface area, providing more active sites, but also reduces the recombination probability of electrons and holes due to their unilamellar structure and reduced charge transport pathways. The synthesis and preparation of strong acid solids such as [SrTa(2)O(7)](2–) perovskite nanosheets can be a promising approach for effective adsorption of pollutants with cationic nature and more efficient electron transfer between the dye and catalyst. Finally, the photocatalytic characteristics of the restacked unilamellar [SrTa(2)O(7)](2–) nanosheets remained unchanged after three successive cycles of recycling–reusing. American Chemical Society 2023-03-09 /pmc/articles/PMC10034980/ /pubmed/36969431 http://dx.doi.org/10.1021/acsomega.3c00593 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 Khodabakhsh, Mohammadreza
Yilmaz, Bengisu
Firoozi, Sadegh
Fatmehsari Haghshenas, Davoud
Unal, Ugur
Enhanced Photocatalytic Properties of Restacked Unilamellar [SrTa(2)O(7)](2–) Nanosheets of Aurivillius Phase Layered Perovskites
title Enhanced Photocatalytic Properties of Restacked Unilamellar [SrTa(2)O(7)](2–) Nanosheets of Aurivillius Phase Layered Perovskites
title_full Enhanced Photocatalytic Properties of Restacked Unilamellar [SrTa(2)O(7)](2–) Nanosheets of Aurivillius Phase Layered Perovskites
title_fullStr Enhanced Photocatalytic Properties of Restacked Unilamellar [SrTa(2)O(7)](2–) Nanosheets of Aurivillius Phase Layered Perovskites
title_full_unstemmed Enhanced Photocatalytic Properties of Restacked Unilamellar [SrTa(2)O(7)](2–) Nanosheets of Aurivillius Phase Layered Perovskites
title_short Enhanced Photocatalytic Properties of Restacked Unilamellar [SrTa(2)O(7)](2–) Nanosheets of Aurivillius Phase Layered Perovskites
title_sort enhanced photocatalytic properties of restacked unilamellar [srta(2)o(7)](2–) nanosheets of aurivillius phase layered perovskites
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10034980/
https://www.ncbi.nlm.nih.gov/pubmed/36969431
http://dx.doi.org/10.1021/acsomega.3c00593
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