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Preparation of ZnO/two-layer self-doped black TiO(2) nanotube arrays and their enhanced photochemical properties

Highly efficient TiO(2) photoanodes can be achieved by enhancing electrical conductivity and improving charge separation and transfer. In this paper, Ti foils were used to fabricate TiO(2) nanotubes by anodic oxidation and ZnO/two-layer self-doped black TiO(2) nanotubes were prepared by electrochemi...

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Detalles Bibliográficos
Autores principales: Yu, Dengji, Zhang, Yunfang, Wang, Fang, Dai, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8693676/
https://www.ncbi.nlm.nih.gov/pubmed/35424155
http://dx.doi.org/10.1039/d0ra09099a
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author Yu, Dengji
Zhang, Yunfang
Wang, Fang
Dai, Jun
author_facet Yu, Dengji
Zhang, Yunfang
Wang, Fang
Dai, Jun
author_sort Yu, Dengji
collection PubMed
description Highly efficient TiO(2) photoanodes can be achieved by enhancing electrical conductivity and improving charge separation and transfer. In this paper, Ti foils were used to fabricate TiO(2) nanotubes by anodic oxidation and ZnO/two-layer self-doped black TiO(2) nanotubes were prepared by electrochemical reduction and a hydrothermal method. The formed black TiO(2) nanotubes have a better photoconversion efficiency and the maximum photoconversion efficiency increased by 59% compared with the pure nanotubes. The deposition of ZnO further improves the maximum photoconversion efficiency to 456% based on black TiO(2). The photocurrent responses also increase by about 5 times in our results. This work is instructive for the development of highly robust and efficient photoanode materials in fields including photoelectrochemistry and photocatalysis.
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spelling pubmed-86936762022-04-13 Preparation of ZnO/two-layer self-doped black TiO(2) nanotube arrays and their enhanced photochemical properties Yu, Dengji Zhang, Yunfang Wang, Fang Dai, Jun RSC Adv Chemistry Highly efficient TiO(2) photoanodes can be achieved by enhancing electrical conductivity and improving charge separation and transfer. In this paper, Ti foils were used to fabricate TiO(2) nanotubes by anodic oxidation and ZnO/two-layer self-doped black TiO(2) nanotubes were prepared by electrochemical reduction and a hydrothermal method. The formed black TiO(2) nanotubes have a better photoconversion efficiency and the maximum photoconversion efficiency increased by 59% compared with the pure nanotubes. The deposition of ZnO further improves the maximum photoconversion efficiency to 456% based on black TiO(2). The photocurrent responses also increase by about 5 times in our results. This work is instructive for the development of highly robust and efficient photoanode materials in fields including photoelectrochemistry and photocatalysis. The Royal Society of Chemistry 2021-01-08 /pmc/articles/PMC8693676/ /pubmed/35424155 http://dx.doi.org/10.1039/d0ra09099a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yu, Dengji
Zhang, Yunfang
Wang, Fang
Dai, Jun
Preparation of ZnO/two-layer self-doped black TiO(2) nanotube arrays and their enhanced photochemical properties
title Preparation of ZnO/two-layer self-doped black TiO(2) nanotube arrays and their enhanced photochemical properties
title_full Preparation of ZnO/two-layer self-doped black TiO(2) nanotube arrays and their enhanced photochemical properties
title_fullStr Preparation of ZnO/two-layer self-doped black TiO(2) nanotube arrays and their enhanced photochemical properties
title_full_unstemmed Preparation of ZnO/two-layer self-doped black TiO(2) nanotube arrays and their enhanced photochemical properties
title_short Preparation of ZnO/two-layer self-doped black TiO(2) nanotube arrays and their enhanced photochemical properties
title_sort preparation of zno/two-layer self-doped black tio(2) nanotube arrays and their enhanced photochemical properties
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8693676/
https://www.ncbi.nlm.nih.gov/pubmed/35424155
http://dx.doi.org/10.1039/d0ra09099a
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