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Fabrication of TiO(2)/Fe(2)O(3)/CdS systems: effects of Fe(2)O(3) and CdS content on superior photocatalytic activity

A heterostructured material of CdS and Fe(2)O(3) nanoparticle-modified TiO(2) nanotube array (NTA) photoelectrode (TiO(2)/Fe(2)O(3)/CdS) is reported in this work. TiO(2)/Fe(2)O(3) was prepared by annealing TiO(2) NTAs pre-loaded with Fe(OH)(3), which was uniformly clung to TiO(2) NTAs using sequenti...

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Autores principales: Feng, Hui, Feng, Siqi, Tang, Niu, Zhang, Songbai, Zhang, Xiangyang, Liu, Bo
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/PMC8695697/
https://www.ncbi.nlm.nih.gov/pubmed/35423498
http://dx.doi.org/10.1039/d1ra00195g
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author Feng, Hui
Feng, Siqi
Tang, Niu
Zhang, Songbai
Zhang, Xiangyang
Liu, Bo
author_facet Feng, Hui
Feng, Siqi
Tang, Niu
Zhang, Songbai
Zhang, Xiangyang
Liu, Bo
author_sort Feng, Hui
collection PubMed
description A heterostructured material of CdS and Fe(2)O(3) nanoparticle-modified TiO(2) nanotube array (NTA) photoelectrode (TiO(2)/Fe(2)O(3)/CdS) is reported in this work. TiO(2)/Fe(2)O(3) was prepared by annealing TiO(2) NTAs pre-loaded with Fe(OH)(3), which was uniformly clung to TiO(2) NTAs using sequential chemical bath deposition (S-CBD). Subsequently, CdS nanoparticles were deposited on TiO(2)/Fe(2)O(3) using the successive ion layer adsorption and reaction (SILAR) technique. Three-dimensional (3D) TiO(2)/Fe(2)O(3)/CdS samples generated a photocurrent of approximately 4.92 mA cm(−2), with a photoconversion efficiency of 4.36%, which is more than 20 times higher than that of bare TiO(2) NTAs (0.22%) and 6 times that of TiO(2)/Fe(2)O(3) (0.71%). The photocatalytic activity was evaluated by the degradation of p-nitrophenol (PNP) under visible light (λ > 420 nm). The TiO(2)/Fe(2)O(3)/CdS exhibited the best photocatalytic activity among all samples. Almost all PNP was degraded by TiO(2)/Fe(2)O(3)/CdS within 120 min. The enhancement of photocatalytic activity could be attributed to the promoted photo-induced electron and hole separation and migration on the basis of photoluminescence spectra, photocurrent measurements, and open-circuit photovoltage responses. In addition, the newly synthesized TiO(2)/Fe(2)O(3)/CdS can maintain high photocatalytic efficiency for five reuse cycles. Our findings provide a new idea for the low cost synthesis of high performance photocatalysts for the photodegradation of organic pollutants in aqueous solution.
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spelling pubmed-86956972022-04-13 Fabrication of TiO(2)/Fe(2)O(3)/CdS systems: effects of Fe(2)O(3) and CdS content on superior photocatalytic activity Feng, Hui Feng, Siqi Tang, Niu Zhang, Songbai Zhang, Xiangyang Liu, Bo RSC Adv Chemistry A heterostructured material of CdS and Fe(2)O(3) nanoparticle-modified TiO(2) nanotube array (NTA) photoelectrode (TiO(2)/Fe(2)O(3)/CdS) is reported in this work. TiO(2)/Fe(2)O(3) was prepared by annealing TiO(2) NTAs pre-loaded with Fe(OH)(3), which was uniformly clung to TiO(2) NTAs using sequential chemical bath deposition (S-CBD). Subsequently, CdS nanoparticles were deposited on TiO(2)/Fe(2)O(3) using the successive ion layer adsorption and reaction (SILAR) technique. Three-dimensional (3D) TiO(2)/Fe(2)O(3)/CdS samples generated a photocurrent of approximately 4.92 mA cm(−2), with a photoconversion efficiency of 4.36%, which is more than 20 times higher than that of bare TiO(2) NTAs (0.22%) and 6 times that of TiO(2)/Fe(2)O(3) (0.71%). The photocatalytic activity was evaluated by the degradation of p-nitrophenol (PNP) under visible light (λ > 420 nm). The TiO(2)/Fe(2)O(3)/CdS exhibited the best photocatalytic activity among all samples. Almost all PNP was degraded by TiO(2)/Fe(2)O(3)/CdS within 120 min. The enhancement of photocatalytic activity could be attributed to the promoted photo-induced electron and hole separation and migration on the basis of photoluminescence spectra, photocurrent measurements, and open-circuit photovoltage responses. In addition, the newly synthesized TiO(2)/Fe(2)O(3)/CdS can maintain high photocatalytic efficiency for five reuse cycles. Our findings provide a new idea for the low cost synthesis of high performance photocatalysts for the photodegradation of organic pollutants in aqueous solution. The Royal Society of Chemistry 2021-03-11 /pmc/articles/PMC8695697/ /pubmed/35423498 http://dx.doi.org/10.1039/d1ra00195g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Feng, Hui
Feng, Siqi
Tang, Niu
Zhang, Songbai
Zhang, Xiangyang
Liu, Bo
Fabrication of TiO(2)/Fe(2)O(3)/CdS systems: effects of Fe(2)O(3) and CdS content on superior photocatalytic activity
title Fabrication of TiO(2)/Fe(2)O(3)/CdS systems: effects of Fe(2)O(3) and CdS content on superior photocatalytic activity
title_full Fabrication of TiO(2)/Fe(2)O(3)/CdS systems: effects of Fe(2)O(3) and CdS content on superior photocatalytic activity
title_fullStr Fabrication of TiO(2)/Fe(2)O(3)/CdS systems: effects of Fe(2)O(3) and CdS content on superior photocatalytic activity
title_full_unstemmed Fabrication of TiO(2)/Fe(2)O(3)/CdS systems: effects of Fe(2)O(3) and CdS content on superior photocatalytic activity
title_short Fabrication of TiO(2)/Fe(2)O(3)/CdS systems: effects of Fe(2)O(3) and CdS content on superior photocatalytic activity
title_sort fabrication of tio(2)/fe(2)o(3)/cds systems: effects of fe(2)o(3) and cds content on superior photocatalytic activity
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8695697/
https://www.ncbi.nlm.nih.gov/pubmed/35423498
http://dx.doi.org/10.1039/d1ra00195g
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