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Bi(2)Se(3) Sensitized TiO(2) Nanotube Films for Photogenerated Cathodic Protection of 304 Stainless Steel Under Visible Light

Titanium dioxide (TiO(2)) nanotube arrays coupled with a narrow gap semiconductor—bismuth selenide (Bi(2)Se(3))—exhibited remarkable enhancement in the photocathodic protection property for 304 stainless steel under visible light. Bi(2)Se(3)/TiO(2) nanocomposites were successfully synthesized using...

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Autores principales: Wang, Wencheng, Wang, Xiutong, Wang, Ning, Ning, Xiaobo, Li, Hong, Lu, Dongzhu, Liu, Xiangju, Zhang, Qichao, Huang, Yanliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6150863/
https://www.ncbi.nlm.nih.gov/pubmed/30242603
http://dx.doi.org/10.1186/s11671-018-2717-9
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author Wang, Wencheng
Wang, Xiutong
Wang, Ning
Ning, Xiaobo
Li, Hong
Lu, Dongzhu
Liu, Xiangju
Zhang, Qichao
Huang, Yanliang
author_facet Wang, Wencheng
Wang, Xiutong
Wang, Ning
Ning, Xiaobo
Li, Hong
Lu, Dongzhu
Liu, Xiangju
Zhang, Qichao
Huang, Yanliang
author_sort Wang, Wencheng
collection PubMed
description Titanium dioxide (TiO(2)) nanotube arrays coupled with a narrow gap semiconductor—bismuth selenide (Bi(2)Se(3))—exhibited remarkable enhancement in the photocathodic protection property for 304 stainless steel under visible light. Bi(2)Se(3)/TiO(2) nanocomposites were successfully synthesized using a simple two-step method, including an electrochemical anodization method for preparing pure TiO(2) and a chemical bath deposition method for synthesizing Bi(2)Se(3) nanoflowers. The morphology and structure of the composite films were studied by scanning electron microscopy, energy dispersion spectroscopy, X-ray photoelectron spectroscopy and X-ray diffraction. In addition, the influence of the Bi(2)Se(3) content on the photoelectrochemical and photocathodic protection properties of the composite films was also studied. The photocurrent density of the Bi(2)Se(3)/TiO(2) nanocomposites was significantly higher than that of pure TiO(2) under visible light. The sensitizer Bi(2)Se(3) enhanced the efficient separation of the photogenerated electron-hole pairs and the photocathodic protection properties of TiO(2). Under visible light illumination, Bi(2)Se(3)/TiO(2) nanocomposites synthesized by the chemical bath deposition method with Bi(3+) (0.5 mmol/L) exhibited the optimal photogenerated cathodic protection performance for 304 stainless steel.
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spelling pubmed-61508632018-10-09 Bi(2)Se(3) Sensitized TiO(2) Nanotube Films for Photogenerated Cathodic Protection of 304 Stainless Steel Under Visible Light Wang, Wencheng Wang, Xiutong Wang, Ning Ning, Xiaobo Li, Hong Lu, Dongzhu Liu, Xiangju Zhang, Qichao Huang, Yanliang Nanoscale Res Lett Nano Express Titanium dioxide (TiO(2)) nanotube arrays coupled with a narrow gap semiconductor—bismuth selenide (Bi(2)Se(3))—exhibited remarkable enhancement in the photocathodic protection property for 304 stainless steel under visible light. Bi(2)Se(3)/TiO(2) nanocomposites were successfully synthesized using a simple two-step method, including an electrochemical anodization method for preparing pure TiO(2) and a chemical bath deposition method for synthesizing Bi(2)Se(3) nanoflowers. The morphology and structure of the composite films were studied by scanning electron microscopy, energy dispersion spectroscopy, X-ray photoelectron spectroscopy and X-ray diffraction. In addition, the influence of the Bi(2)Se(3) content on the photoelectrochemical and photocathodic protection properties of the composite films was also studied. The photocurrent density of the Bi(2)Se(3)/TiO(2) nanocomposites was significantly higher than that of pure TiO(2) under visible light. The sensitizer Bi(2)Se(3) enhanced the efficient separation of the photogenerated electron-hole pairs and the photocathodic protection properties of TiO(2). Under visible light illumination, Bi(2)Se(3)/TiO(2) nanocomposites synthesized by the chemical bath deposition method with Bi(3+) (0.5 mmol/L) exhibited the optimal photogenerated cathodic protection performance for 304 stainless steel. Springer US 2018-09-21 /pmc/articles/PMC6150863/ /pubmed/30242603 http://dx.doi.org/10.1186/s11671-018-2717-9 Text en © The Author(s). 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Nano Express
Wang, Wencheng
Wang, Xiutong
Wang, Ning
Ning, Xiaobo
Li, Hong
Lu, Dongzhu
Liu, Xiangju
Zhang, Qichao
Huang, Yanliang
Bi(2)Se(3) Sensitized TiO(2) Nanotube Films for Photogenerated Cathodic Protection of 304 Stainless Steel Under Visible Light
title Bi(2)Se(3) Sensitized TiO(2) Nanotube Films for Photogenerated Cathodic Protection of 304 Stainless Steel Under Visible Light
title_full Bi(2)Se(3) Sensitized TiO(2) Nanotube Films for Photogenerated Cathodic Protection of 304 Stainless Steel Under Visible Light
title_fullStr Bi(2)Se(3) Sensitized TiO(2) Nanotube Films for Photogenerated Cathodic Protection of 304 Stainless Steel Under Visible Light
title_full_unstemmed Bi(2)Se(3) Sensitized TiO(2) Nanotube Films for Photogenerated Cathodic Protection of 304 Stainless Steel Under Visible Light
title_short Bi(2)Se(3) Sensitized TiO(2) Nanotube Films for Photogenerated Cathodic Protection of 304 Stainless Steel Under Visible Light
title_sort bi(2)se(3) sensitized tio(2) nanotube films for photogenerated cathodic protection of 304 stainless steel under visible light
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6150863/
https://www.ncbi.nlm.nih.gov/pubmed/30242603
http://dx.doi.org/10.1186/s11671-018-2717-9
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