Growth of zinc-oxide nanorods and its applications for gas sensor
碩士 === 國立雲林科技大學 === 電子與資訊工程研究所 === 93 === ZnO crystal is an important semiconductor material and has been investigated widely for its piezoelectric, electrical, optoelectronic and optic properties. In this thesis, the main interest is in the development of ZnO NRs (nanorods) and its sensing properti...
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ndltd-TW-093YUNT53930482015-10-13T11:54:00Z http://ndltd.ncl.edu.tw/handle/42667567235383786894 Growth of zinc-oxide nanorods and its applications for gas sensor 氧化鋅奈米柱之成長及其應用於氣體感測器之研究 Yueh-tien Tsou 鄒岳庭 碩士 國立雲林科技大學 電子與資訊工程研究所 93 ZnO crystal is an important semiconductor material and has been investigated widely for its piezoelectric, electrical, optoelectronic and optic properties. In this thesis, the main interest is in the development of ZnO NRs (nanorods) and its sensing properties of oxygen. In our experiment, ZnO NRs of 150~250 nm in radius and 4~5 μm in height had been synthesized in the thermal CVD system. Morphology, Crystal quality and defect level were examined by SEM (Scanning-Electron-Microscopy), XRD (X-Ray Diffraction) patterns and PL (Photo-luminescence) measurement. According to the recent research, various gases such as O2, N2O and ethanol… etc. can react with ZnO to form bonds of physisorption or chemisorption. A series of experiments were designed to measure gas sensitivity under different temperatures and partial oxygen pressures of the ZnO NRs based gas sensors. This study showed that the sensitivity is proportional to the oxygen partial pressure and defect. Higher operating temperature can improve the sensitivity significantly. It is found that highest oxygen partial pressure of 500Torr or sample grew with highest defect concentration has the best sensitivity but has the longest recovery delay. Operating temperature of 350℃ has the better sensitivity compared with lower operating temperature. It is also found that the recovery delay was mainly due to the sensitivity, that is higher sensitivity has the longer recovery delay. Finally, a light source of UV lamp was found to reduce the recovery delay. Bohr-ran Huang 黃柏仁 2005 學位論文 ; thesis 89 en_US |
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碩士 === 國立雲林科技大學 === 電子與資訊工程研究所 === 93 === ZnO crystal is an important semiconductor material and has been
investigated widely for its piezoelectric, electrical, optoelectronic and
optic properties. In this thesis, the main interest is in the development of
ZnO NRs (nanorods) and its sensing properties of oxygen. In our
experiment, ZnO NRs of 150~250 nm in radius and 4~5 μm in height had
been synthesized in the thermal CVD system. Morphology, Crystal
quality and defect level were examined by SEM
(Scanning-Electron-Microscopy), XRD (X-Ray Diffraction) patterns and
PL (Photo-luminescence) measurement.
According to the recent research, various gases such as O2, N2O and
ethanol… etc. can react with ZnO to form bonds of physisorption or
chemisorption. A series of experiments were designed to measure gas
sensitivity under different temperatures and partial oxygen pressures of
the ZnO NRs based gas sensors. This study showed that the sensitivity is
proportional to the oxygen partial pressure and defect. Higher operating
temperature can improve the sensitivity significantly.
It is found that highest oxygen partial pressure of 500Torr or sample
grew with highest defect concentration has the best sensitivity but has the
longest recovery delay. Operating temperature of 350℃ has the better
sensitivity compared with lower operating temperature. It is also found
that the recovery delay was mainly due to the sensitivity, that is higher
sensitivity has the longer recovery delay. Finally, a light source of UV
lamp was found to reduce the recovery delay.
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author2 |
Bohr-ran Huang |
author_facet |
Bohr-ran Huang Yueh-tien Tsou 鄒岳庭 |
author |
Yueh-tien Tsou 鄒岳庭 |
spellingShingle |
Yueh-tien Tsou 鄒岳庭 Growth of zinc-oxide nanorods and its applications for gas sensor |
author_sort |
Yueh-tien Tsou |
title |
Growth of zinc-oxide nanorods and its applications for gas sensor |
title_short |
Growth of zinc-oxide nanorods and its applications for gas sensor |
title_full |
Growth of zinc-oxide nanorods and its applications for gas sensor |
title_fullStr |
Growth of zinc-oxide nanorods and its applications for gas sensor |
title_full_unstemmed |
Growth of zinc-oxide nanorods and its applications for gas sensor |
title_sort |
growth of zinc-oxide nanorods and its applications for gas sensor |
publishDate |
2005 |
url |
http://ndltd.ncl.edu.tw/handle/42667567235383786894 |
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