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Synthesis of Tin-Doped Three-Dimensional Flower-like Bismuth Tungstate with Enhanced Photocatalytic Activity

Photocatalytic degradation of harmful organic matter is a feasible and environmentally friendly method. Bi(2)WO(6) has become a hotspot of photocatalysts because of its unique layered structure and visible light response. In the present study, Sn doping was adopted to modified Bi(2)WO(6) by hydrothe...

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Autores principales: Zhu, Xiaodong, Qin, Fengqiu, Zhang, Xiuping, Zhong, Yuanyuan, Wang, Juan, Jiao, Yu, Luo, Yuhao, Feng, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9369453/
https://www.ncbi.nlm.nih.gov/pubmed/35955557
http://dx.doi.org/10.3390/ijms23158422
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author Zhu, Xiaodong
Qin, Fengqiu
Zhang, Xiuping
Zhong, Yuanyuan
Wang, Juan
Jiao, Yu
Luo, Yuhao
Feng, Wei
author_facet Zhu, Xiaodong
Qin, Fengqiu
Zhang, Xiuping
Zhong, Yuanyuan
Wang, Juan
Jiao, Yu
Luo, Yuhao
Feng, Wei
author_sort Zhu, Xiaodong
collection PubMed
description Photocatalytic degradation of harmful organic matter is a feasible and environmentally friendly method. Bi(2)WO(6) has become a hotspot of photocatalysts because of its unique layered structure and visible light response. In the present study, Sn doping was adopted to modified Bi(2)WO(6) by hydrothermal method. The Sn-doped Bi(2)WO(6) photocatalysts were characterized by XRD, SEM, TEM, BET, XPS, PL, and DRS, respectively. The results show that Sn-doped Bi(2)WO(6) shows three-dimensional (3D) flower-like morphology, which is composed of two-dimensional (2D) nanosheets. Sn(4+) ions enter into the Bi(2)WO(6) lattice, producing a degree of Bi(2)WO(6) lattice distortion, which is in favor of reducing the recombination of photogenerated electrons and holes. Moreover, the specific surface area of Bi(2)WO(6) is significantly increased after doping, which is beneficial to providing more active sites. The photocatalytic results show that 2%Sn-Bi(2)WO(6) exhibits the highest photocatalytic activity. After 60 min of irradiation, the photocatalytic degradation degree of methylene blue (MB) increases from 80.6% for pure Bi(2)WO(6) to 92.0% for 2%Sn-Bi(2)WO(6). The first-order reaction rate constant of 2%Sn-Bi(2)WO(6) is 0.030 min(−1), which is 1.7 times than that of pure Bi(2)WO(6).
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spelling pubmed-93694532022-08-12 Synthesis of Tin-Doped Three-Dimensional Flower-like Bismuth Tungstate with Enhanced Photocatalytic Activity Zhu, Xiaodong Qin, Fengqiu Zhang, Xiuping Zhong, Yuanyuan Wang, Juan Jiao, Yu Luo, Yuhao Feng, Wei Int J Mol Sci Article Photocatalytic degradation of harmful organic matter is a feasible and environmentally friendly method. Bi(2)WO(6) has become a hotspot of photocatalysts because of its unique layered structure and visible light response. In the present study, Sn doping was adopted to modified Bi(2)WO(6) by hydrothermal method. The Sn-doped Bi(2)WO(6) photocatalysts were characterized by XRD, SEM, TEM, BET, XPS, PL, and DRS, respectively. The results show that Sn-doped Bi(2)WO(6) shows three-dimensional (3D) flower-like morphology, which is composed of two-dimensional (2D) nanosheets. Sn(4+) ions enter into the Bi(2)WO(6) lattice, producing a degree of Bi(2)WO(6) lattice distortion, which is in favor of reducing the recombination of photogenerated electrons and holes. Moreover, the specific surface area of Bi(2)WO(6) is significantly increased after doping, which is beneficial to providing more active sites. The photocatalytic results show that 2%Sn-Bi(2)WO(6) exhibits the highest photocatalytic activity. After 60 min of irradiation, the photocatalytic degradation degree of methylene blue (MB) increases from 80.6% for pure Bi(2)WO(6) to 92.0% for 2%Sn-Bi(2)WO(6). The first-order reaction rate constant of 2%Sn-Bi(2)WO(6) is 0.030 min(−1), which is 1.7 times than that of pure Bi(2)WO(6). MDPI 2022-07-29 /pmc/articles/PMC9369453/ /pubmed/35955557 http://dx.doi.org/10.3390/ijms23158422 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
Zhu, Xiaodong
Qin, Fengqiu
Zhang, Xiuping
Zhong, Yuanyuan
Wang, Juan
Jiao, Yu
Luo, Yuhao
Feng, Wei
Synthesis of Tin-Doped Three-Dimensional Flower-like Bismuth Tungstate with Enhanced Photocatalytic Activity
title Synthesis of Tin-Doped Three-Dimensional Flower-like Bismuth Tungstate with Enhanced Photocatalytic Activity
title_full Synthesis of Tin-Doped Three-Dimensional Flower-like Bismuth Tungstate with Enhanced Photocatalytic Activity
title_fullStr Synthesis of Tin-Doped Three-Dimensional Flower-like Bismuth Tungstate with Enhanced Photocatalytic Activity
title_full_unstemmed Synthesis of Tin-Doped Three-Dimensional Flower-like Bismuth Tungstate with Enhanced Photocatalytic Activity
title_short Synthesis of Tin-Doped Three-Dimensional Flower-like Bismuth Tungstate with Enhanced Photocatalytic Activity
title_sort synthesis of tin-doped three-dimensional flower-like bismuth tungstate with enhanced photocatalytic activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9369453/
https://www.ncbi.nlm.nih.gov/pubmed/35955557
http://dx.doi.org/10.3390/ijms23158422
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