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One-Pot Synthesis of Sulfur-Doped TiO(2)/Reduced Graphene Oxide Composite (S-TiO(2)/rGO) with Improved Photocatalytic Activity for the Removal of Diclofenac from Water

Sulfur-doped TiO(2) (S-TiO(2)) composites with reduced graphene oxide (rGO), wt. % of rGO equal to 0.5%, 2.75%, and 5.0%, were prepared by a one-pot solvothermal procedure. The aim was to improve photocatalytic performance in comparison to TiO(2) under simulated solar irradiation for the treatment o...

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Autores principales: Kovačić, Marin, Perović, Klara, Papac, Josipa, Tomić, Antonija, Matoh, Lev, Žener, Boštjan, Brodar, Tomislav, Capan, Ivana, Surca, Angelja K., Kušić, Hrvoje, Štangar, Urška Lavrenčič, Lončarić Božić, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178290/
https://www.ncbi.nlm.nih.gov/pubmed/32244708
http://dx.doi.org/10.3390/ma13071621
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author Kovačić, Marin
Perović, Klara
Papac, Josipa
Tomić, Antonija
Matoh, Lev
Žener, Boštjan
Brodar, Tomislav
Capan, Ivana
Surca, Angelja K.
Kušić, Hrvoje
Štangar, Urška Lavrenčič
Lončarić Božić, Ana
author_facet Kovačić, Marin
Perović, Klara
Papac, Josipa
Tomić, Antonija
Matoh, Lev
Žener, Boštjan
Brodar, Tomislav
Capan, Ivana
Surca, Angelja K.
Kušić, Hrvoje
Štangar, Urška Lavrenčič
Lončarić Božić, Ana
author_sort Kovačić, Marin
collection PubMed
description Sulfur-doped TiO(2) (S-TiO(2)) composites with reduced graphene oxide (rGO), wt. % of rGO equal to 0.5%, 2.75%, and 5.0%, were prepared by a one-pot solvothermal procedure. The aim was to improve photocatalytic performance in comparison to TiO(2) under simulated solar irradiation for the treatment of diclofenac (DCF) in aqueous medium. The obtained composites were characterized for physical-chemical properties using thermogravimetric analysis (TGA), X-ray diffractograms (XRD), Raman, scanning electron microscopy (SEM)/energy dispersive X-ray (EDX), Brauner Emmett Teller (BET), and photoluminescence (PL) analyses, indicating successful sulfur doping and inclusion of rGO. Sulfur doping and rGO have successfully led to a decrease in photogenerated charge recombination. However, both antagonistic and synergistic effects toward DCF treatment were observed, with the latter being brought forward by higher wt.% rGO. The composite with 5.0 wt.% rGO has shown the highest DCF conversion at pH 4 compared to that obtained by pristine TiO(2), despite lower DCF adsorption during the initial dark period. The expected positive effects of both sulfur doping and rGO on charge recombination were found to be limited because of the subpar interphase contact with the composite and incomplete reduction of the GO precursor. Consequent unfavorable interactions between rGO and DCF negatively influenced the activity of the studied S-TiO(2)/rGO photocatalyst under simulated solar irradiation.
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spelling pubmed-71782902020-04-28 One-Pot Synthesis of Sulfur-Doped TiO(2)/Reduced Graphene Oxide Composite (S-TiO(2)/rGO) with Improved Photocatalytic Activity for the Removal of Diclofenac from Water Kovačić, Marin Perović, Klara Papac, Josipa Tomić, Antonija Matoh, Lev Žener, Boštjan Brodar, Tomislav Capan, Ivana Surca, Angelja K. Kušić, Hrvoje Štangar, Urška Lavrenčič Lončarić Božić, Ana Materials (Basel) Article Sulfur-doped TiO(2) (S-TiO(2)) composites with reduced graphene oxide (rGO), wt. % of rGO equal to 0.5%, 2.75%, and 5.0%, were prepared by a one-pot solvothermal procedure. The aim was to improve photocatalytic performance in comparison to TiO(2) under simulated solar irradiation for the treatment of diclofenac (DCF) in aqueous medium. The obtained composites were characterized for physical-chemical properties using thermogravimetric analysis (TGA), X-ray diffractograms (XRD), Raman, scanning electron microscopy (SEM)/energy dispersive X-ray (EDX), Brauner Emmett Teller (BET), and photoluminescence (PL) analyses, indicating successful sulfur doping and inclusion of rGO. Sulfur doping and rGO have successfully led to a decrease in photogenerated charge recombination. However, both antagonistic and synergistic effects toward DCF treatment were observed, with the latter being brought forward by higher wt.% rGO. The composite with 5.0 wt.% rGO has shown the highest DCF conversion at pH 4 compared to that obtained by pristine TiO(2), despite lower DCF adsorption during the initial dark period. The expected positive effects of both sulfur doping and rGO on charge recombination were found to be limited because of the subpar interphase contact with the composite and incomplete reduction of the GO precursor. Consequent unfavorable interactions between rGO and DCF negatively influenced the activity of the studied S-TiO(2)/rGO photocatalyst under simulated solar irradiation. MDPI 2020-04-01 /pmc/articles/PMC7178290/ /pubmed/32244708 http://dx.doi.org/10.3390/ma13071621 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kovačić, Marin
Perović, Klara
Papac, Josipa
Tomić, Antonija
Matoh, Lev
Žener, Boštjan
Brodar, Tomislav
Capan, Ivana
Surca, Angelja K.
Kušić, Hrvoje
Štangar, Urška Lavrenčič
Lončarić Božić, Ana
One-Pot Synthesis of Sulfur-Doped TiO(2)/Reduced Graphene Oxide Composite (S-TiO(2)/rGO) with Improved Photocatalytic Activity for the Removal of Diclofenac from Water
title One-Pot Synthesis of Sulfur-Doped TiO(2)/Reduced Graphene Oxide Composite (S-TiO(2)/rGO) with Improved Photocatalytic Activity for the Removal of Diclofenac from Water
title_full One-Pot Synthesis of Sulfur-Doped TiO(2)/Reduced Graphene Oxide Composite (S-TiO(2)/rGO) with Improved Photocatalytic Activity for the Removal of Diclofenac from Water
title_fullStr One-Pot Synthesis of Sulfur-Doped TiO(2)/Reduced Graphene Oxide Composite (S-TiO(2)/rGO) with Improved Photocatalytic Activity for the Removal of Diclofenac from Water
title_full_unstemmed One-Pot Synthesis of Sulfur-Doped TiO(2)/Reduced Graphene Oxide Composite (S-TiO(2)/rGO) with Improved Photocatalytic Activity for the Removal of Diclofenac from Water
title_short One-Pot Synthesis of Sulfur-Doped TiO(2)/Reduced Graphene Oxide Composite (S-TiO(2)/rGO) with Improved Photocatalytic Activity for the Removal of Diclofenac from Water
title_sort one-pot synthesis of sulfur-doped tio(2)/reduced graphene oxide composite (s-tio(2)/rgo) with improved photocatalytic activity for the removal of diclofenac from water
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178290/
https://www.ncbi.nlm.nih.gov/pubmed/32244708
http://dx.doi.org/10.3390/ma13071621
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