Flame-made Nb-doped TiO2 ethanol and acetone sensors
Undoped TiO2and TiO2nanoparticles doped with 1-5 at.% Nb were successfully produced in a single step by flame spray pyrolysis (FSP). The phase and crystallite size were analyzed by XRD. The BET surface area (SSABET) of the nanoparticles was measured by nitrogen adsorption. The trend of SSABET on the...
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th-cmuir.6653943832-497562018-09-04T04:30:41Z Flame-made Nb-doped TiO2 ethanol and acetone sensors Sukon Phanichphant Chaikarn Liewhiran Khatcharin Wetchakun Anurat Wisitsoraat Adisorn Tuantranont Biochemistry, Genetics and Molecular Biology Chemistry Engineering Physics and Astronomy Undoped TiO2and TiO2nanoparticles doped with 1-5 at.% Nb were successfully produced in a single step by flame spray pyrolysis (FSP). The phase and crystallite size were analyzed by XRD. The BET surface area (SSABET) of the nanoparticles was measured by nitrogen adsorption. The trend of SSABET on the doping samples increased and the BET equivalent particle diameter (dBET) (rutile) increased with the higher Nb-doping concentrations while dBET(anatase) remained the same. The morphology and accurate size of the primary particles were further investigated by high-resolution transmission electron microscopy (HRTEM). The crystallite sizes of undoped and Nb-doped TiO2spherical were in the range of 10-20 nm. The sensing films were prepared by spin coating technique. The mixing sample was spin-coated onto the Al2O3substrates interdigitated with Au electrodes. The gas sensing of acetone (25-400 ppm) was studied at operating temperatures ranging from 300-400 °C in dry air, while the gas sensing of ethanol (50-1,000 ppm) was studied at operating temperatures ranging from 250-400 °C in dry air. © 2011 by the authors. 2018-09-04T04:17:41Z 2018-09-04T04:17:41Z 2011-01-01 Journal 14248220 2-s2.0-79251650390 10.3390/s110100472 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=79251650390&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/49756 |
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Biochemistry, Genetics and Molecular Biology Chemistry Engineering Physics and Astronomy Sukon Phanichphant Chaikarn Liewhiran Khatcharin Wetchakun Anurat Wisitsoraat Adisorn Tuantranont Flame-made Nb-doped TiO2 ethanol and acetone sensors |
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Undoped TiO2and TiO2nanoparticles doped with 1-5 at.% Nb were successfully produced in a single step by flame spray pyrolysis (FSP). The phase and crystallite size were analyzed by XRD. The BET surface area (SSABET) of the nanoparticles was measured by nitrogen adsorption. The trend of SSABET on the doping samples increased and the BET equivalent particle diameter (dBET) (rutile) increased with the higher Nb-doping concentrations while dBET(anatase) remained the same. The morphology and accurate size of the primary particles were further investigated by high-resolution transmission electron microscopy (HRTEM). The crystallite sizes of undoped and Nb-doped TiO2spherical were in the range of 10-20 nm. The sensing films were prepared by spin coating technique. The mixing sample was spin-coated onto the Al2O3substrates interdigitated with Au electrodes. The gas sensing of acetone (25-400 ppm) was studied at operating temperatures ranging from 300-400 °C in dry air, while the gas sensing of ethanol (50-1,000 ppm) was studied at operating temperatures ranging from 250-400 °C in dry air. © 2011 by the authors. |
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Sukon Phanichphant Chaikarn Liewhiran Khatcharin Wetchakun Anurat Wisitsoraat Adisorn Tuantranont |
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Sukon Phanichphant Chaikarn Liewhiran Khatcharin Wetchakun Anurat Wisitsoraat Adisorn Tuantranont |
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Sukon Phanichphant |
title |
Flame-made Nb-doped TiO2 ethanol and acetone sensors |
title_short |
Flame-made Nb-doped TiO2 ethanol and acetone sensors |
title_full |
Flame-made Nb-doped TiO2 ethanol and acetone sensors |
title_fullStr |
Flame-made Nb-doped TiO2 ethanol and acetone sensors |
title_full_unstemmed |
Flame-made Nb-doped TiO2 ethanol and acetone sensors |
title_sort |
flame-made nb-doped tio2 ethanol and acetone sensors |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=79251650390&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/49756 |
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