Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization

The main weakness of TiO2 is that it needs UV light with wavelengths below 380 nm, which are considered hazardous to human being and expensive in term of cost, to activate its photocatalytic property. Therefore, various techniques had been used to improve the photocatalytic activity of TiO2• One of...

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Main Author: Chong, Kian Wei
Format: Thesis
Language:English
Published: 2017
Subjects:
Online Access:http://eprints.usm.my/51102/
http://eprints.usm.my/51102/1/Development%20Of%20Bilayer%20Tio2%20Photocatalyst%20Systems-24%20Pages.pdf
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author Chong, Kian Wei
author_facet Chong, Kian Wei
author_sort Chong, Kian Wei
building USM Institutional Repository
collection Online Access
description The main weakness of TiO2 is that it needs UV light with wavelengths below 380 nm, which are considered hazardous to human being and expensive in term of cost, to activate its photocatalytic property. Therefore, various techniques had been used to improve the photocatalytic activity of TiO2• One of the method was doping or combining various types of metal oxides, metal sulfides, noble metal or metal ion withTiO2. Recently, adsorbent also had been used to co-doped with TiO2. In this research,TiO2 layer was immobilized onto the surface of NiO and chitosan adsorbents layer,which were supported onto stainless steel plate.
first_indexed 2025-11-15T18:26:20Z
format Thesis
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institution Universiti Sains Malaysia
institution_category Local University
language English
last_indexed 2025-11-15T18:26:20Z
publishDate 2017
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spelling usm-511022022-01-07T07:24:14Z http://eprints.usm.my/51102/ Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization Chong, Kian Wei QD1-999 Chemistry The main weakness of TiO2 is that it needs UV light with wavelengths below 380 nm, which are considered hazardous to human being and expensive in term of cost, to activate its photocatalytic property. Therefore, various techniques had been used to improve the photocatalytic activity of TiO2• One of the method was doping or combining various types of metal oxides, metal sulfides, noble metal or metal ion withTiO2. Recently, adsorbent also had been used to co-doped with TiO2. In this research,TiO2 layer was immobilized onto the surface of NiO and chitosan adsorbents layer,which were supported onto stainless steel plate. 2017-05 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/51102/1/Development%20Of%20Bilayer%20Tio2%20Photocatalyst%20Systems-24%20Pages.pdf Chong, Kian Wei (2017) Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization. PhD thesis, Universiti Sains Malaysia.
spellingShingle QD1-999 Chemistry
Chong, Kian Wei
Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization
title Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization
title_full Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization
title_fullStr Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization
title_full_unstemmed Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization
title_short Development Of Bilayer Tio2 Photocatalyst Systems Immobilized On Stainless Steel Plate And Their Physical And Photocatalytic Characterization
title_sort development of bilayer tio2 photocatalyst systems immobilized on stainless steel plate and their physical and photocatalytic characterization
topic QD1-999 Chemistry
url http://eprints.usm.my/51102/
http://eprints.usm.my/51102/1/Development%20Of%20Bilayer%20Tio2%20Photocatalyst%20Systems-24%20Pages.pdf