DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY ANODIZATION FOR HYDROGEN SENSING APPLICATION
Detection of hydrogen is crucial for industrial process control and medical applications. The presence of hydrogen in breath indicates a different type of health problems particularly in infants. In recent years, interest in breath analysis for clinical purposes has increased. As the demand for h...
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oai:utpedia.utp.edu.my:218592024-07-25T00:32:44Z http://utpedia.utp.edu.my/id/eprint/21859/ DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY ANODIZATION FOR HYDROGEN SENSING APPLICATION SORIADI, NURHIDAYA TK Electrical engineering. Electronics Nuclear engineering Detection of hydrogen is crucial for industrial process control and medical applications. The presence of hydrogen in breath indicates a different type of health problems particularly in infants. In recent years, interest in breath analysis for clinical purposes has increased. As the demand for hydrogen sensors and hydrogen analyzers grows, a better performed sensor with high sensitivity would be critical especially for medical applications. The titanium dioxide nanotube structure is chosen as an active component in the gas sensor because of its highly sensitive electrical resistance to hydrogen over a wide range of concentrations. The objective of the work is to fabricate and develop good quality titania nanotubes with specific characteristics as the sensing element for detection of very low concentration of hydrogen. 2016-05 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/id/eprint/21859/1/2016%20-%20%20ELECTRICAL%20-%20DEVELOPMENT%20OF%20TITANIUM%20DIOXIDE%20NANOTUBE%20SYNTHESIZED%20BY%20ANODIZATION%20FOR%20HYDROGEN%20SENSING%20APPLICATION-NURHIDAYA%20BINTI%20SORIADI-MASTER%20OF%20SCIENCE.pdf SORIADI, NURHIDAYA (2016) DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY ANODIZATION FOR HYDROGEN SENSING APPLICATION. Masters thesis, Universiti Teknologi PETRONAS. |
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TK Electrical engineering. Electronics Nuclear engineering SORIADI, NURHIDAYA DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY ANODIZATION FOR HYDROGEN SENSING APPLICATION |
description |
Detection of hydrogen is crucial for industrial process control and medical
applications. The presence of hydrogen in breath indicates a different type of health
problems particularly in infants. In recent years, interest in breath analysis for clinical
purposes has increased. As the demand for hydrogen sensors and hydrogen analyzers
grows, a better performed sensor with high sensitivity would be critical especially for
medical applications. The titanium dioxide nanotube structure is chosen as an active
component in the gas sensor because of its highly sensitive electrical resistance to
hydrogen over a wide range of concentrations. The objective of the work is to
fabricate and develop good quality titania nanotubes with specific characteristics as
the sensing element for detection of very low concentration of hydrogen. |
format |
Thesis |
author |
SORIADI, NURHIDAYA |
author_facet |
SORIADI, NURHIDAYA |
author_sort |
SORIADI, NURHIDAYA |
title |
DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY
ANODIZATION FOR HYDROGEN SENSING APPLICATION |
title_short |
DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY
ANODIZATION FOR HYDROGEN SENSING APPLICATION |
title_full |
DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY
ANODIZATION FOR HYDROGEN SENSING APPLICATION |
title_fullStr |
DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY
ANODIZATION FOR HYDROGEN SENSING APPLICATION |
title_full_unstemmed |
DEVELOPMENT OF TITANIUM DIOXIDE NANOTUBE SYNTHESIZED BY
ANODIZATION FOR HYDROGEN SENSING APPLICATION |
title_sort |
development of titanium dioxide nanotube synthesized by
anodization for hydrogen sensing application |
publishDate |
2016 |
url |
http://utpedia.utp.edu.my/id/eprint/21859/1/2016%20-%20%20ELECTRICAL%20-%20DEVELOPMENT%20OF%20TITANIUM%20DIOXIDE%20NANOTUBE%20SYNTHESIZED%20BY%20ANODIZATION%20FOR%20HYDROGEN%20SENSING%20APPLICATION-NURHIDAYA%20BINTI%20SORIADI-MASTER%20OF%20SCIENCE.pdf http://utpedia.utp.edu.my/id/eprint/21859/ |
_version_ |
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