Ethanol Sensors Fabricated from PdO/WO3 Nanorods
In this work, ethanol sensing films were prepared by spin-coating of PdO/WO3 nanorods pasted onto Al2O3 substrates interdigitated with Au electrodes and tested towards 50-2000 ppm C2H5OH at different operating temperatures ranging from 150–350°C. It was found that the C2H5OH responses of PdO-loaded...
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Science Faculty of Chiang Mai University
2019
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th-cmuir.6653943832-641532019-05-07T09:59:50Z Ethanol Sensors Fabricated from PdO/WO3 Nanorods Sathukarn Kabcum Duangdao Channei Adisorn Tuantranont Anurat Wisitsiraat Chaikarn Liewhiran Sukon Phanichphant In this work, ethanol sensing films were prepared by spin-coating of PdO/WO3 nanorods pasted onto Al2O3 substrates interdigitated with Au electrodes and tested towards 50-2000 ppm C2H5OH at different operating temperatures ranging from 150–350°C. It was found that the C2H5OH responses of PdO-loaded WO3 sensors monotonically increased with increasing operating temperature to 350°C and increased greatly with increasing PdO-loading level up to 1.0 wt%. In particular, the optimal 1.0 wt% PdO-loaded sensor exhibited an ultra-high response of 1.52 ×104 to 2000 ppm C2H5OH at 350ºC with a short response time of ~3 s. In addition, PdO–loaded WO3 sensing films displayed high ethanol selectivity against CO, NO2, NH3 and H2S. Therefore, PdO-loaded WO3 nanorods sensors prepared by the precipitation and impregnation methods are promising for highly sensitive and selective for ethanol sensing. 2019-05-07T09:59:50Z 2019-05-07T09:59:50Z 2018 บทความวารสาร 0125-2526 http://it.science.cmu.ac.th/ejournal/dl.php?journal_id=9321 http://cmuir.cmu.ac.th/jspui/handle/6653943832/64153 Eng Science Faculty of Chiang Mai University |
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In this work, ethanol sensing films were prepared by spin-coating of PdO/WO3 nanorods pasted onto Al2O3 substrates interdigitated with Au electrodes and tested towards 50-2000 ppm C2H5OH at different operating temperatures ranging from 150–350°C. It was found that the C2H5OH responses of PdO-loaded WO3 sensors monotonically increased with increasing operating temperature to 350°C and increased greatly with increasing PdO-loading level up to 1.0 wt%. In particular, the optimal 1.0 wt% PdO-loaded sensor exhibited an ultra-high response of 1.52 ×104 to 2000 ppm C2H5OH at 350ºC with a short response time of ~3 s. In addition, PdO–loaded WO3 sensing films displayed high ethanol selectivity against CO, NO2, NH3 and H2S. Therefore, PdO-loaded WO3 nanorods sensors prepared by the precipitation and impregnation methods are promising for highly sensitive and selective for ethanol sensing. |
format |
บทความวารสาร |
author |
Sathukarn Kabcum Duangdao Channei Adisorn Tuantranont Anurat Wisitsiraat Chaikarn Liewhiran Sukon Phanichphant |
spellingShingle |
Sathukarn Kabcum Duangdao Channei Adisorn Tuantranont Anurat Wisitsiraat Chaikarn Liewhiran Sukon Phanichphant Ethanol Sensors Fabricated from PdO/WO3 Nanorods |
author_facet |
Sathukarn Kabcum Duangdao Channei Adisorn Tuantranont Anurat Wisitsiraat Chaikarn Liewhiran Sukon Phanichphant |
author_sort |
Sathukarn Kabcum |
title |
Ethanol Sensors Fabricated from PdO/WO3 Nanorods |
title_short |
Ethanol Sensors Fabricated from PdO/WO3 Nanorods |
title_full |
Ethanol Sensors Fabricated from PdO/WO3 Nanorods |
title_fullStr |
Ethanol Sensors Fabricated from PdO/WO3 Nanorods |
title_full_unstemmed |
Ethanol Sensors Fabricated from PdO/WO3 Nanorods |
title_sort |
ethanol sensors fabricated from pdo/wo3 nanorods |
publisher |
Science Faculty of Chiang Mai University |
publishDate |
2019 |
url |
http://it.science.cmu.ac.th/ejournal/dl.php?journal_id=9321 http://cmuir.cmu.ac.th/jspui/handle/6653943832/64153 |
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