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Visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic Fe(3)O(4)/BiOBr/BiOI composite

The ternary magnetic Fe(3)O(4)/BiOBr/BiOI (x : 3 : 1) photocatalysts were successfully synthesized by a facile solvothermal method. The samples were characterized by XRD, SEM, EDS, ICP-AES, XPS, UV-vis DRS, PL and VSM. Nitrogen-containing dye RhB was used as a degradation substrate to evaluate the p...

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Autores principales: Li, Jianhui, Yang, Fan, Zhou, Quan, Wu, Lijie, Li, Wenying, Ren, Ruipeng, Lv, Yongkang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073387/
https://www.ncbi.nlm.nih.gov/pubmed/35530612
http://dx.doi.org/10.1039/c9ra04412d
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author Li, Jianhui
Yang, Fan
Zhou, Quan
Wu, Lijie
Li, Wenying
Ren, Ruipeng
Lv, Yongkang
author_facet Li, Jianhui
Yang, Fan
Zhou, Quan
Wu, Lijie
Li, Wenying
Ren, Ruipeng
Lv, Yongkang
author_sort Li, Jianhui
collection PubMed
description The ternary magnetic Fe(3)O(4)/BiOBr/BiOI (x : 3 : 1) photocatalysts were successfully synthesized by a facile solvothermal method. The samples were characterized by XRD, SEM, EDS, ICP-AES, XPS, UV-vis DRS, PL and VSM. Nitrogen-containing dye RhB was used as a degradation substrate to evaluate the photocatalytic degradation activities of the samples. The photocatalytic performance of Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) is superior to other Fe(3)O(4)/BiOBr/BiOI (x : 3 : 1). Compared with binary magnetic Fe(3)O(4)/BiOBr (0.5 : 1) prepared in our previous work, the Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) has obvious advantages in photocatalytic activity and adsorption capacity. And the specific surface area (48.30 m(2) g(−1)) is much larger than that of the previous report (Fe(3)O(4)/BiOBr/BiOI (0.5 : 2 : 2)) synthesized by a co-precipitation method. Besides, after 25 s of magnetic field, Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) can be rapidly separated from water. After eight recycling cycles, the magnetic properties, photocatalytic activity, crystallization and morphology of the Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) catalyst remain good. The possible photocatalytic degradation mechanism of RhB under Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) photocatalyst was also proposed. The results indicate that the ternary magnetic Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) composite with high photocatalytic degradation efficiency, good magnetic separation performance and excellent recyclability and stability has potential application prospect in wastewater.
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spelling pubmed-90733872022-05-06 Visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic Fe(3)O(4)/BiOBr/BiOI composite Li, Jianhui Yang, Fan Zhou, Quan Wu, Lijie Li, Wenying Ren, Ruipeng Lv, Yongkang RSC Adv Chemistry The ternary magnetic Fe(3)O(4)/BiOBr/BiOI (x : 3 : 1) photocatalysts were successfully synthesized by a facile solvothermal method. The samples were characterized by XRD, SEM, EDS, ICP-AES, XPS, UV-vis DRS, PL and VSM. Nitrogen-containing dye RhB was used as a degradation substrate to evaluate the photocatalytic degradation activities of the samples. The photocatalytic performance of Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) is superior to other Fe(3)O(4)/BiOBr/BiOI (x : 3 : 1). Compared with binary magnetic Fe(3)O(4)/BiOBr (0.5 : 1) prepared in our previous work, the Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) has obvious advantages in photocatalytic activity and adsorption capacity. And the specific surface area (48.30 m(2) g(−1)) is much larger than that of the previous report (Fe(3)O(4)/BiOBr/BiOI (0.5 : 2 : 2)) synthesized by a co-precipitation method. Besides, after 25 s of magnetic field, Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) can be rapidly separated from water. After eight recycling cycles, the magnetic properties, photocatalytic activity, crystallization and morphology of the Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) catalyst remain good. The possible photocatalytic degradation mechanism of RhB under Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) photocatalyst was also proposed. The results indicate that the ternary magnetic Fe(3)O(4)/BiOBr/BiOI (0.4 : 3 : 1) composite with high photocatalytic degradation efficiency, good magnetic separation performance and excellent recyclability and stability has potential application prospect in wastewater. The Royal Society of Chemistry 2019-07-30 /pmc/articles/PMC9073387/ /pubmed/35530612 http://dx.doi.org/10.1039/c9ra04412d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Jianhui
Yang, Fan
Zhou, Quan
Wu, Lijie
Li, Wenying
Ren, Ruipeng
Lv, Yongkang
Visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic Fe(3)O(4)/BiOBr/BiOI composite
title Visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic Fe(3)O(4)/BiOBr/BiOI composite
title_full Visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic Fe(3)O(4)/BiOBr/BiOI composite
title_fullStr Visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic Fe(3)O(4)/BiOBr/BiOI composite
title_full_unstemmed Visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic Fe(3)O(4)/BiOBr/BiOI composite
title_short Visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic Fe(3)O(4)/BiOBr/BiOI composite
title_sort visible-light photocatalytic performance, recovery and degradation mechanism of ternary magnetic fe(3)o(4)/biobr/bioi composite
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073387/
https://www.ncbi.nlm.nih.gov/pubmed/35530612
http://dx.doi.org/10.1039/c9ra04412d
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