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Flake-like InVO(4) modified TiO(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts

Highly efficient solar light absorption capabilities and quantum yields in photocatalysts are key to their application in photocatalytic fields. Towards this end, TiO(2)/InVO(4) nanofibers (NFs) have been designed and fabricated successfully by a one-pot electrospinning process. The resulting TiO(2)...

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Detalles Bibliográficos
Autores principales: Zhou, Yun, Liu, Lixin, Wu, Tao, Yuan, Guolong, Li, Junyu, Ding, Qiujie, Qi, Fugang, Zhu, Wenjun, OuYang, Xiaoping, Wang, Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083276/
https://www.ncbi.nlm.nih.gov/pubmed/35539980
http://dx.doi.org/10.1039/c8ra04344b
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author Zhou, Yun
Liu, Lixin
Wu, Tao
Yuan, Guolong
Li, Junyu
Ding, Qiujie
Qi, Fugang
Zhu, Wenjun
OuYang, Xiaoping
Wang, Yuan
author_facet Zhou, Yun
Liu, Lixin
Wu, Tao
Yuan, Guolong
Li, Junyu
Ding, Qiujie
Qi, Fugang
Zhu, Wenjun
OuYang, Xiaoping
Wang, Yuan
author_sort Zhou, Yun
collection PubMed
description Highly efficient solar light absorption capabilities and quantum yields in photocatalysts are key to their application in photocatalytic fields. Towards this end, TiO(2)/InVO(4) nanofibers (NFs) have been designed and fabricated successfully by a one-pot electrospinning process. The resulting TiO(2)/InVO(4) NFs display excellent visible-light photocatalytic activity, owing to their prominent visible-light absorption and electron–hole separation properties. Time-resolved transient PL spectroscopy demonstrated that the TiO(2)/InVO(4) NFs display longer emission decay times (22.0 ns) compared with TiO(2) NFs (15.5 ns), implying that the heterojunction can remarkably suppress the electron–hole recombination and promote the carrier transfer efficiency. With tailored heterostructure features, TiO(2)/InVO(4) NFs exhibit superior visible-light photodegradation activity, and after 80 min of visible-light irradiation, almost 95% of RhB molecules can be decomposed by TiO(2)/InVO(4) NFs, while only 18% of RhB molecules can be decomposed by pure TiO(2) NFs.
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spelling pubmed-90832762022-05-09 Flake-like InVO(4) modified TiO(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts Zhou, Yun Liu, Lixin Wu, Tao Yuan, Guolong Li, Junyu Ding, Qiujie Qi, Fugang Zhu, Wenjun OuYang, Xiaoping Wang, Yuan RSC Adv Chemistry Highly efficient solar light absorption capabilities and quantum yields in photocatalysts are key to their application in photocatalytic fields. Towards this end, TiO(2)/InVO(4) nanofibers (NFs) have been designed and fabricated successfully by a one-pot electrospinning process. The resulting TiO(2)/InVO(4) NFs display excellent visible-light photocatalytic activity, owing to their prominent visible-light absorption and electron–hole separation properties. Time-resolved transient PL spectroscopy demonstrated that the TiO(2)/InVO(4) NFs display longer emission decay times (22.0 ns) compared with TiO(2) NFs (15.5 ns), implying that the heterojunction can remarkably suppress the electron–hole recombination and promote the carrier transfer efficiency. With tailored heterostructure features, TiO(2)/InVO(4) NFs exhibit superior visible-light photodegradation activity, and after 80 min of visible-light irradiation, almost 95% of RhB molecules can be decomposed by TiO(2)/InVO(4) NFs, while only 18% of RhB molecules can be decomposed by pure TiO(2) NFs. The Royal Society of Chemistry 2018-07-30 /pmc/articles/PMC9083276/ /pubmed/35539980 http://dx.doi.org/10.1039/c8ra04344b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhou, Yun
Liu, Lixin
Wu, Tao
Yuan, Guolong
Li, Junyu
Ding, Qiujie
Qi, Fugang
Zhu, Wenjun
OuYang, Xiaoping
Wang, Yuan
Flake-like InVO(4) modified TiO(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts
title Flake-like InVO(4) modified TiO(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts
title_full Flake-like InVO(4) modified TiO(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts
title_fullStr Flake-like InVO(4) modified TiO(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts
title_full_unstemmed Flake-like InVO(4) modified TiO(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts
title_short Flake-like InVO(4) modified TiO(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts
title_sort flake-like invo(4) modified tio(2) nanofibers with longer carrier lifetimes for visible-light photocatalysts
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083276/
https://www.ncbi.nlm.nih.gov/pubmed/35539980
http://dx.doi.org/10.1039/c8ra04344b
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