Fabrication of few layers of MoS2 coated TiO2 inverse opals

This project sought to study the effect of enhancing photochemical water splitting using both CuS and MoS2 precursors as coatings on TiO2 inverse opal nanostructures. An introduction is first given about the background and purposes of the project. The reader is next provided a concise and cogent rev...

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Main Author: Tuang, Shu Ting
Other Authors: Alfred Tok Iing Yoong
Format: Final Year Project
Language:English
Published: 2017
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Online Access:http://hdl.handle.net/10356/70409
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-704092023-03-04T15:36:02Z Fabrication of few layers of MoS2 coated TiO2 inverse opals Tuang, Shu Ting Alfred Tok Iing Yoong School of Materials Science and Engineering DRNTU::Engineering::Materials This project sought to study the effect of enhancing photochemical water splitting using both CuS and MoS2 precursors as coatings on TiO2 inverse opal nanostructures. An introduction is first given about the background and purposes of the project. The reader is next provided a concise and cogent review of existing literature and research that has been performed on self-assembled of polystyrene opals and the preparation of TiO2 inverse opal structures and on CuS and MoS2. A detailed list of vital experimental equipment and TiO2 inverse opal methodology used is then provided. It was found that using 3 cycles of dip coating resulted in the optimal condition to yield optimum pore size with high specific area, which is expected to enhance light trapping for TiO2. The polystyrene diameter was also changed to tune the optical band position. It was found that a diameter of 392 nm has the highest reflection peak in the visible area, which can trap more visible light when assembled with other semiconductors. CuS nanoparticles and a few layers of MoS2 nanosheets were assembled on the surface of TiO2 inverse opals to form hierarchal nanostructures, which are expected to show enhanced performance in catalyzing water splitting, when compared with pure TiO2. Finally, a conclusion is made with further suggestions as to how this study might be further developed for the benefit of ensuing research work in this field. Bachelor of Engineering (Materials Engineering) 2017-04-24T02:32:46Z 2017-04-24T02:32:46Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/70409 en Nanyang Technological University 49 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Materials
spellingShingle DRNTU::Engineering::Materials
Tuang, Shu Ting
Fabrication of few layers of MoS2 coated TiO2 inverse opals
description This project sought to study the effect of enhancing photochemical water splitting using both CuS and MoS2 precursors as coatings on TiO2 inverse opal nanostructures. An introduction is first given about the background and purposes of the project. The reader is next provided a concise and cogent review of existing literature and research that has been performed on self-assembled of polystyrene opals and the preparation of TiO2 inverse opal structures and on CuS and MoS2. A detailed list of vital experimental equipment and TiO2 inverse opal methodology used is then provided. It was found that using 3 cycles of dip coating resulted in the optimal condition to yield optimum pore size with high specific area, which is expected to enhance light trapping for TiO2. The polystyrene diameter was also changed to tune the optical band position. It was found that a diameter of 392 nm has the highest reflection peak in the visible area, which can trap more visible light when assembled with other semiconductors. CuS nanoparticles and a few layers of MoS2 nanosheets were assembled on the surface of TiO2 inverse opals to form hierarchal nanostructures, which are expected to show enhanced performance in catalyzing water splitting, when compared with pure TiO2. Finally, a conclusion is made with further suggestions as to how this study might be further developed for the benefit of ensuing research work in this field.
author2 Alfred Tok Iing Yoong
author_facet Alfred Tok Iing Yoong
Tuang, Shu Ting
format Final Year Project
author Tuang, Shu Ting
author_sort Tuang, Shu Ting
title Fabrication of few layers of MoS2 coated TiO2 inverse opals
title_short Fabrication of few layers of MoS2 coated TiO2 inverse opals
title_full Fabrication of few layers of MoS2 coated TiO2 inverse opals
title_fullStr Fabrication of few layers of MoS2 coated TiO2 inverse opals
title_full_unstemmed Fabrication of few layers of MoS2 coated TiO2 inverse opals
title_sort fabrication of few layers of mos2 coated tio2 inverse opals
publishDate 2017
url http://hdl.handle.net/10356/70409
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