Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses

In this study, a commercially available Degussa P25 TiO2 was used as a photocatalyst after a modification with silver (Ag) as a dopant to enhance the photocatalytic performance. This is due to the better migration of the generated electrons into the TiO2 when exposed to light. The preparation of Ag-...

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Published in:Malaysian Journal of Chemistry
Main Author: Rosli M.A.; Hamzah S.R.; Ghani N.I.A.; Natar N.S.M.; Muhamad N.A.; Ishak M.A.; Ramli M.Z.; Azami M.S.M.; Nawawi W.I.
Format: Article
Language:English
Published: Malaysian Institute of Chemistry 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85201667958&doi=10.55373%2fmjchem.v26i4.88&partnerID=40&md5=f7e71a2990e67595e4a157f066a0c00c
id 2-s2.0-85201667958
spelling 2-s2.0-85201667958
Rosli M.A.; Hamzah S.R.; Ghani N.I.A.; Natar N.S.M.; Muhamad N.A.; Ishak M.A.; Ramli M.Z.; Azami M.S.M.; Nawawi W.I.
Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses
2024
Malaysian Journal of Chemistry
26
4
10.55373/mjchem.v26i4.88
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85201667958&doi=10.55373%2fmjchem.v26i4.88&partnerID=40&md5=f7e71a2990e67595e4a157f066a0c00c
In this study, a commercially available Degussa P25 TiO2 was used as a photocatalyst after a modification with silver (Ag) as a dopant to enhance the photocatalytic performance. This is due to the better migration of the generated electrons into the TiO2 when exposed to light. The preparation of Ag-TiO2 was conducted via the photo-deposition method, with silver nitrate (AgNO3) mixed with isopropyl alcohol (IPA) and distilled water (DW) as Ag precursor at various ratios of Ag dopant to TiO2. The immobilization of Ag-TiO2 was prepared via polymer-based immobilization by using epoxy natural rubber-50 (ENR50) and polyvinyl chloride (PVC) and the obtained photocatalyst was characterized by FESEM-EDS, XRD, 3D Profiler, FTIR and EIS. Photoelectrochemical degradation (PEC) was applied for photocatalytic performance measurement by using reactive red 4 (RR4) dye. The optimum photocatalytic performance of immobilized AgTiO2 was obtained at 24 V, labelled as (APV24), with almost complete degradation of 30 ppm RR4 dye achieved below 10 min under 55 W fluorescent lamp irradiation, which is faster compared to immobilized unmodified TiO2. The acquired results from FESEM-EDX and XRD analyses indicated the presence of Ag on Ag-TiO2 with no phase transformation. Based on conductivity study, a significant electron supply was observed on APV24 during the photocatalytic activity tended to generate hydroperoxyl and hydroxyl radicals, contributing to the degradation of the dye and floc formation throughout the process. The APV24 sample had shown the same photocatalytic degradation rate under immobilization due to the polymer-based formulation in the post-preparation of immobilization that was able to retain the photocatalytic activity. © 2024 Malaysian Institute of Chemistry. All rights reserved.
Malaysian Institute of Chemistry
15112292
English
Article

author Rosli M.A.; Hamzah S.R.; Ghani N.I.A.; Natar N.S.M.; Muhamad N.A.; Ishak M.A.; Ramli M.Z.; Azami M.S.M.; Nawawi W.I.
spellingShingle Rosli M.A.; Hamzah S.R.; Ghani N.I.A.; Natar N.S.M.; Muhamad N.A.; Ishak M.A.; Ramli M.Z.; Azami M.S.M.; Nawawi W.I.
Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses
author_facet Rosli M.A.; Hamzah S.R.; Ghani N.I.A.; Natar N.S.M.; Muhamad N.A.; Ishak M.A.; Ramli M.Z.; Azami M.S.M.; Nawawi W.I.
author_sort Rosli M.A.; Hamzah S.R.; Ghani N.I.A.; Natar N.S.M.; Muhamad N.A.; Ishak M.A.; Ramli M.Z.; Azami M.S.M.; Nawawi W.I.
title Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses
title_short Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses
title_full Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses
title_fullStr Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses
title_full_unstemmed Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses
title_sort Silver-Decorated TiO2 for Enhancement of RR4 Dye Degradation Under Photoelectrochemical and Electrochemical Catalyses
publishDate 2024
container_title Malaysian Journal of Chemistry
container_volume 26
container_issue 4
doi_str_mv 10.55373/mjchem.v26i4.88
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85201667958&doi=10.55373%2fmjchem.v26i4.88&partnerID=40&md5=f7e71a2990e67595e4a157f066a0c00c
description In this study, a commercially available Degussa P25 TiO2 was used as a photocatalyst after a modification with silver (Ag) as a dopant to enhance the photocatalytic performance. This is due to the better migration of the generated electrons into the TiO2 when exposed to light. The preparation of Ag-TiO2 was conducted via the photo-deposition method, with silver nitrate (AgNO3) mixed with isopropyl alcohol (IPA) and distilled water (DW) as Ag precursor at various ratios of Ag dopant to TiO2. The immobilization of Ag-TiO2 was prepared via polymer-based immobilization by using epoxy natural rubber-50 (ENR50) and polyvinyl chloride (PVC) and the obtained photocatalyst was characterized by FESEM-EDS, XRD, 3D Profiler, FTIR and EIS. Photoelectrochemical degradation (PEC) was applied for photocatalytic performance measurement by using reactive red 4 (RR4) dye. The optimum photocatalytic performance of immobilized AgTiO2 was obtained at 24 V, labelled as (APV24), with almost complete degradation of 30 ppm RR4 dye achieved below 10 min under 55 W fluorescent lamp irradiation, which is faster compared to immobilized unmodified TiO2. The acquired results from FESEM-EDX and XRD analyses indicated the presence of Ag on Ag-TiO2 with no phase transformation. Based on conductivity study, a significant electron supply was observed on APV24 during the photocatalytic activity tended to generate hydroperoxyl and hydroxyl radicals, contributing to the degradation of the dye and floc formation throughout the process. The APV24 sample had shown the same photocatalytic degradation rate under immobilization due to the polymer-based formulation in the post-preparation of immobilization that was able to retain the photocatalytic activity. © 2024 Malaysian Institute of Chemistry. All rights reserved.
publisher Malaysian Institute of Chemistry
issn 15112292
language English
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