Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal

Waste water treatment using wide bandgap semiconductor particles, in particular the ZnO nanoparticles, is one of the alternative and economical approach. However, the photodegradation of organic pollutants by ZnO nanoparticles is relatively poor due to fast recombination of photogenerated electron-h...

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Main Author: Ying, Yuet Lee
Format: Thesis
Language:English
Published: 2018
Subjects:
Online Access:http://eprints.usm.my/56064/
http://eprints.usm.my/56064/1/Synthesis%20Of%20ZnO%20Nanomaterials%2C%20WOx%20Nanoparticles%20And%20WOxZnO%20Nanocomposites%20For%20Inhibition%20Of%20Bacterial%20Growth%20And%20Organic%20Dyes%20Removal_Ying%20Yuet%20Lee.pdf
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author Ying, Yuet Lee
author_facet Ying, Yuet Lee
author_sort Ying, Yuet Lee
building USM Institutional Repository
collection Online Access
description Waste water treatment using wide bandgap semiconductor particles, in particular the ZnO nanoparticles, is one of the alternative and economical approach. However, the photodegradation of organic pollutants by ZnO nanoparticles is relatively poor due to fast recombination of photogenerated electron-holes. In addition, the antibacterial activities reported from various research groups were often confusing and contradicting. The present study aimed to improve the photocatalytic performance of ZnO nanoparticles from the morphology and coupling perspectives. In this project, the ZnO submicron rods (46.19 %) demonstrated better photodegradation efficiency than ZnO nanodisks (21.47 %) after 75 minutes of ultraviolet light irradiation. The photodegradation efficiency of ZnO submicron rods was improved slightly by depositing narrow bandgap semiconductor (WOx nanoparticles). The photodegradation efficiency of WOx/ZnO nanocomposites achieved 48.38 % under UV irradiation. These nanoparticles were tested for their antibacterial activity using antibacterial susceptibility assay without and with UV light irradiation. Based on the results, both ZnO submicron rods and WOx/ZnO nanocomposites displayed better antibacterial performance against Gram-positive bacteria (Bacillus subtilis and Staphylococcus aureus) than Gram-negative bacteria (Escherichia coli and Pseudomonas aeruginosa), the effectiveness of inhibition on bacteria by these particles were bacteria-type dependent, and only Escherichia coli was sensitive to the presence of WO3.
first_indexed 2025-11-15T18:47:52Z
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institution Universiti Sains Malaysia
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language English
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publishDate 2018
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spelling usm-560642022-12-21T02:47:17Z http://eprints.usm.my/56064/ Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal Ying, Yuet Lee T Technology TN Mining Engineering. Metallurgy Waste water treatment using wide bandgap semiconductor particles, in particular the ZnO nanoparticles, is one of the alternative and economical approach. However, the photodegradation of organic pollutants by ZnO nanoparticles is relatively poor due to fast recombination of photogenerated electron-holes. In addition, the antibacterial activities reported from various research groups were often confusing and contradicting. The present study aimed to improve the photocatalytic performance of ZnO nanoparticles from the morphology and coupling perspectives. In this project, the ZnO submicron rods (46.19 %) demonstrated better photodegradation efficiency than ZnO nanodisks (21.47 %) after 75 minutes of ultraviolet light irradiation. The photodegradation efficiency of ZnO submicron rods was improved slightly by depositing narrow bandgap semiconductor (WOx nanoparticles). The photodegradation efficiency of WOx/ZnO nanocomposites achieved 48.38 % under UV irradiation. These nanoparticles were tested for their antibacterial activity using antibacterial susceptibility assay without and with UV light irradiation. Based on the results, both ZnO submicron rods and WOx/ZnO nanocomposites displayed better antibacterial performance against Gram-positive bacteria (Bacillus subtilis and Staphylococcus aureus) than Gram-negative bacteria (Escherichia coli and Pseudomonas aeruginosa), the effectiveness of inhibition on bacteria by these particles were bacteria-type dependent, and only Escherichia coli was sensitive to the presence of WO3. 2018-12-01 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/56064/1/Synthesis%20Of%20ZnO%20Nanomaterials%2C%20WOx%20Nanoparticles%20And%20WOxZnO%20Nanocomposites%20For%20Inhibition%20Of%20Bacterial%20Growth%20And%20Organic%20Dyes%20Removal_Ying%20Yuet%20Lee.pdf Ying, Yuet Lee (2018) Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal. Masters thesis, Universiti Sains Malaysia.
spellingShingle T Technology
TN Mining Engineering. Metallurgy
Ying, Yuet Lee
Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal
title Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal
title_full Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal
title_fullStr Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal
title_full_unstemmed Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal
title_short Synthesis Of ZnO Nanomaterials, WOx Nanoparticles And WOx/ZnO Nanocomposites For Inhibition Of Bacterial Growth And Organic Dyes Removal
title_sort synthesis of zno nanomaterials, wox nanoparticles and wox/zno nanocomposites for inhibition of bacterial growth and organic dyes removal
topic T Technology
TN Mining Engineering. Metallurgy
url http://eprints.usm.my/56064/
http://eprints.usm.my/56064/1/Synthesis%20Of%20ZnO%20Nanomaterials%2C%20WOx%20Nanoparticles%20And%20WOxZnO%20Nanocomposites%20For%20Inhibition%20Of%20Bacterial%20Growth%20And%20Organic%20Dyes%20Removal_Ying%20Yuet%20Lee.pdf