Tuned S-Scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> Heterostructure Photocatalyst toward S-Metolachlor (S-MCh) Herbicide Removal

A dual S-scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> heterostructure was constructed by sol–gel method using a two-step procedure. Due to the synthesis parameters and annealing treatment the heterostructure is characterized by sulfur deficit and oxygen e...

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Main Authors: Alexandru Enesca, Luminita Isac
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/14/9/2231
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spelling doaj-2e0129ea17a645eb99c8f3c023cf95492021-04-26T23:03:42ZengMDPI AGMaterials1996-19442021-04-01142231223110.3390/ma14092231Tuned S-Scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> Heterostructure Photocatalyst toward S-Metolachlor (S-MCh) Herbicide RemovalAlexandru Enesca0Luminita Isac1Product Design, Mechatronics and Environmental Department, Transilvania University of Brasov, 35000 Brasov, RomaniaRenewable Energy Systems and Recycling Research Center, Transilvania University of Brasov, Eroilor 29 Street, 35000 Brasov, RomaniaA dual S-scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> heterostructure was constructed by sol–gel method using a two-step procedure. Due to the synthesis parameters and annealing treatment the heterostructure is characterized by sulfur deficit and oxygen excess allowing the passivation of oxygen vacancies. The photocatalytic activity was evaluated under UV and UV–Vis irradiation scenarios using S-MCh as reference pollutant. The heterostructure is composed on orthorhombic Cu<sub>2</sub>S, anatase TiO<sub>2</sub> and monoclinic WO<sub>3</sub> with crystallite sizes varying from 65.2 Å for Cu<sub>2</sub>S to 97.1 Å for WO<sub>3</sub>. The heterostructure exhibit a dense morphology with pellets and particle-like morphology closely combined in a relatively compact assembly. The surface elemental composition indicate that the heterostructure maintain a similar atomic ratio as established during the synthesis with a slight sulfur deficit due to the annealing treatments. The results indicate that the three-component heterostructure have higher photocatalytic efficiency (61%) comparing with two-component heterostructure or bare components. Moreover, Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> exhibit a superior constant rate (0.114 s<sup>−1</sup>) due to the high concentration of photogenerated charge carriers, efficient charge separation and migration.https://www.mdpi.com/1996-1944/14/9/2231herbicides-metolachlorwastewaterphotocatalysissemiconductorsS-scheme mechanism
collection DOAJ
language English
format Article
sources DOAJ
author Alexandru Enesca
Luminita Isac
spellingShingle Alexandru Enesca
Luminita Isac
Tuned S-Scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> Heterostructure Photocatalyst toward S-Metolachlor (S-MCh) Herbicide Removal
Materials
herbicide
s-metolachlor
wastewater
photocatalysis
semiconductors
S-scheme mechanism
author_facet Alexandru Enesca
Luminita Isac
author_sort Alexandru Enesca
title Tuned S-Scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> Heterostructure Photocatalyst toward S-Metolachlor (S-MCh) Herbicide Removal
title_short Tuned S-Scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> Heterostructure Photocatalyst toward S-Metolachlor (S-MCh) Herbicide Removal
title_full Tuned S-Scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> Heterostructure Photocatalyst toward S-Metolachlor (S-MCh) Herbicide Removal
title_fullStr Tuned S-Scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> Heterostructure Photocatalyst toward S-Metolachlor (S-MCh) Herbicide Removal
title_full_unstemmed Tuned S-Scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> Heterostructure Photocatalyst toward S-Metolachlor (S-MCh) Herbicide Removal
title_sort tuned s-scheme cu<sub>2</sub>s_tio<sub>2</sub>_wo<sub>3</sub> heterostructure photocatalyst toward s-metolachlor (s-mch) herbicide removal
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2021-04-01
description A dual S-scheme Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> heterostructure was constructed by sol–gel method using a two-step procedure. Due to the synthesis parameters and annealing treatment the heterostructure is characterized by sulfur deficit and oxygen excess allowing the passivation of oxygen vacancies. The photocatalytic activity was evaluated under UV and UV–Vis irradiation scenarios using S-MCh as reference pollutant. The heterostructure is composed on orthorhombic Cu<sub>2</sub>S, anatase TiO<sub>2</sub> and monoclinic WO<sub>3</sub> with crystallite sizes varying from 65.2 Å for Cu<sub>2</sub>S to 97.1 Å for WO<sub>3</sub>. The heterostructure exhibit a dense morphology with pellets and particle-like morphology closely combined in a relatively compact assembly. The surface elemental composition indicate that the heterostructure maintain a similar atomic ratio as established during the synthesis with a slight sulfur deficit due to the annealing treatments. The results indicate that the three-component heterostructure have higher photocatalytic efficiency (61%) comparing with two-component heterostructure or bare components. Moreover, Cu<sub>2</sub>S_TiO<sub>2</sub>_WO<sub>3</sub> exhibit a superior constant rate (0.114 s<sup>−1</sup>) due to the high concentration of photogenerated charge carriers, efficient charge separation and migration.
topic herbicide
s-metolachlor
wastewater
photocatalysis
semiconductors
S-scheme mechanism
url https://www.mdpi.com/1996-1944/14/9/2231
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