Preparation of Photoresponse n-TiO2 for hydrogen and oxygen evolution reactions in an electrochemical cell
Today, energy crisis triggered by depletion and pollution aspect of fossil fuels, has urged the need to search of clean and renewable energy, which can effectively substitute petroleum. The use of hydrogen as an environmentally friendly fuel had been encouraged since the combustion of hydrogen resul...
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Universiti Malaysia Perlis
2008
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my.unimap-33602008-11-27T03:51:03Z Preparation of Photoresponse n-TiO2 for hydrogen and oxygen evolution reactions in an electrochemical cell Kow Wei Khen Muhammad Asri Idris (Advisor) Md Fazlul Bari, Dr. (Advisor) Renewable energy Hydrogen as fuel Solar energy Power resources -- Research Today, energy crisis triggered by depletion and pollution aspect of fossil fuels, has urged the need to search of clean and renewable energy, which can effectively substitute petroleum. The use of hydrogen as an environmentally friendly fuel had been encouraged since the combustion of hydrogen results in the generation of water, which neither results in air pollution nor leads to the emission of greenhouse gases. A sol-gel method with powder methodology processing has been implemented in this experiment to prepare for the BST, BaxSr1-xTiO3 bulk film to evaluate the solar hydrogen energy generating in photo-electrochemical cell (PEC). The structure and morphology are the main factor in concern. Results showed that composition of Ba0.4Sr0.6TiO3 and Ba0.6Sr0.4TiO3 are good composition in generating the photo-voltage of solar hydrogen. 2008-11-27T03:51:03Z 2008-11-27T03:51:03Z 2008-03 Learning Object http://hdl.handle.net/123456789/3360 en Universiti Malaysia Perlis School of Materials Engineering |
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Renewable energy Hydrogen as fuel Solar energy Power resources -- Research Kow Wei Khen Preparation of Photoresponse n-TiO2 for hydrogen and oxygen evolution reactions in an electrochemical cell |
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Today, energy crisis triggered by depletion and pollution aspect of fossil fuels, has urged the need to search of clean and renewable energy, which can effectively substitute petroleum. The use of hydrogen as an environmentally friendly fuel had been encouraged since the combustion of hydrogen results in the generation of water, which neither results in air pollution nor leads to the emission of greenhouse gases. A sol-gel method with powder methodology processing has been implemented in this experiment to prepare for the BST, BaxSr1-xTiO3 bulk film to evaluate the solar hydrogen energy generating in photo-electrochemical cell (PEC). The structure and morphology are the main factor in concern. Results showed that composition of Ba0.4Sr0.6TiO3 and Ba0.6Sr0.4TiO3 are good composition in generating the photo-voltage of solar hydrogen. |
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Muhammad Asri Idris (Advisor) |
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Muhammad Asri Idris (Advisor) Kow Wei Khen |
format |
Learning Object |
author |
Kow Wei Khen |
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Kow Wei Khen |
title |
Preparation of Photoresponse n-TiO2 for hydrogen and oxygen evolution reactions in an electrochemical cell |
title_short |
Preparation of Photoresponse n-TiO2 for hydrogen and oxygen evolution reactions in an electrochemical cell |
title_full |
Preparation of Photoresponse n-TiO2 for hydrogen and oxygen evolution reactions in an electrochemical cell |
title_fullStr |
Preparation of Photoresponse n-TiO2 for hydrogen and oxygen evolution reactions in an electrochemical cell |
title_full_unstemmed |
Preparation of Photoresponse n-TiO2 for hydrogen and oxygen evolution reactions in an electrochemical cell |
title_sort |
preparation of photoresponse n-tio2 for hydrogen and oxygen evolution reactions in an electrochemical cell |
publisher |
Universiti Malaysia Perlis |
publishDate |
2008 |
url |
http://dspace.unimap.edu.my/xmlui/handle/123456789/3360 |
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1643787816828665856 |
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13.222552 |