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Mesoporous TiO(2) coated ZnFe(2)O(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis

Several activated fly ash cenosphere (AFAC) supporting TiO(2) coated ZnFe(2)O(4) (TiO(2)/ZnFe(2)O(4)/AFAC) photocatalysts were prepared by sol–gel and hydrothermal methods. These photocatalysts were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron m...

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Autores principales: Fan, Hougang, Chen, Dandan, Ai, Xuefeng, Han, Shuo, Wei, Maobin, Yang, Lili, Liu, Huilian, Yang, Jinghai
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/PMC9077129/
https://www.ncbi.nlm.nih.gov/pubmed/35540899
http://dx.doi.org/10.1039/c7ra11055c
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author Fan, Hougang
Chen, Dandan
Ai, Xuefeng
Han, Shuo
Wei, Maobin
Yang, Lili
Liu, Huilian
Yang, Jinghai
author_facet Fan, Hougang
Chen, Dandan
Ai, Xuefeng
Han, Shuo
Wei, Maobin
Yang, Lili
Liu, Huilian
Yang, Jinghai
author_sort Fan, Hougang
collection PubMed
description Several activated fly ash cenosphere (AFAC) supporting TiO(2) coated ZnFe(2)O(4) (TiO(2)/ZnFe(2)O(4)/AFAC) photocatalysts were prepared by sol–gel and hydrothermal methods. These photocatalysts were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FT-IR), UV-vis diffuse reflectance spectroscopy (UV-DRS) and nitrogen adsorption analyses for Brunauer–Emmett–Teller (BET) specific surface area measurements. We found that the main components of spherical AFAC were mullite (Al(6)Si(2)O(13)) and SiO(2); the crystallite size of the TiO(2)/ZnFe(2)O(4) nanocomposite was less than 10 nm and its specific surface area was 162.18 m(2) g(−1). The TiO(2)/ZnFe(2)O(4) nanocomposite had a band-gap of 2.56 eV, which would photodegrade 95% of rhodamine B (RhB) under visible light within 75 min. When hybridized with 0.02 g AFAC, the TiO(2)/ZnFe(2)O(4)/0.02 g AFAC photocatalyst with a band-gap of 2.50 eV could remove 97.1% of RhB and be reused three consecutive times with minor decrease in photocatalytic performance. However, the photocatalytic performance decreased to 91.0% on increasing the dosage of AFAC to 0.30 g. The mesoporous structure of all the photocatalysts and the strong adsorption ability of AFAC accounted for the notable performance.
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spelling pubmed-90771292022-05-09 Mesoporous TiO(2) coated ZnFe(2)O(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis Fan, Hougang Chen, Dandan Ai, Xuefeng Han, Shuo Wei, Maobin Yang, Lili Liu, Huilian Yang, Jinghai RSC Adv Chemistry Several activated fly ash cenosphere (AFAC) supporting TiO(2) coated ZnFe(2)O(4) (TiO(2)/ZnFe(2)O(4)/AFAC) photocatalysts were prepared by sol–gel and hydrothermal methods. These photocatalysts were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FT-IR), UV-vis diffuse reflectance spectroscopy (UV-DRS) and nitrogen adsorption analyses for Brunauer–Emmett–Teller (BET) specific surface area measurements. We found that the main components of spherical AFAC were mullite (Al(6)Si(2)O(13)) and SiO(2); the crystallite size of the TiO(2)/ZnFe(2)O(4) nanocomposite was less than 10 nm and its specific surface area was 162.18 m(2) g(−1). The TiO(2)/ZnFe(2)O(4) nanocomposite had a band-gap of 2.56 eV, which would photodegrade 95% of rhodamine B (RhB) under visible light within 75 min. When hybridized with 0.02 g AFAC, the TiO(2)/ZnFe(2)O(4)/0.02 g AFAC photocatalyst with a band-gap of 2.50 eV could remove 97.1% of RhB and be reused three consecutive times with minor decrease in photocatalytic performance. However, the photocatalytic performance decreased to 91.0% on increasing the dosage of AFAC to 0.30 g. The mesoporous structure of all the photocatalysts and the strong adsorption ability of AFAC accounted for the notable performance. The Royal Society of Chemistry 2018-01-03 /pmc/articles/PMC9077129/ /pubmed/35540899 http://dx.doi.org/10.1039/c7ra11055c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Fan, Hougang
Chen, Dandan
Ai, Xuefeng
Han, Shuo
Wei, Maobin
Yang, Lili
Liu, Huilian
Yang, Jinghai
Mesoporous TiO(2) coated ZnFe(2)O(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis
title Mesoporous TiO(2) coated ZnFe(2)O(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis
title_full Mesoporous TiO(2) coated ZnFe(2)O(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis
title_fullStr Mesoporous TiO(2) coated ZnFe(2)O(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis
title_full_unstemmed Mesoporous TiO(2) coated ZnFe(2)O(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis
title_short Mesoporous TiO(2) coated ZnFe(2)O(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis
title_sort mesoporous tio(2) coated znfe(2)o(4) nanocomposite loading on activated fly ash cenosphere for visible light photocatalysis
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9077129/
https://www.ncbi.nlm.nih.gov/pubmed/35540899
http://dx.doi.org/10.1039/c7ra11055c
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