Doctor-bladed thick films of flame-made Pd/ZnO nanoparticles for ethanol sensing

ZnO nanoparticles doped with 0-5 mol% Pd were produced by flame spray pyrolysis (FSP) in a single step using zinc naphthenate and palladium (II) acetylacetonate as precursors dissolved in toluene/acetonitrile (80/20 vol%). The particle properties were further analyzed by XRD, BET, and HR-TEM analyse...

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Main Authors: C. Liewhiran, A. R. Camenzind, A. Teleki, S. E. Pratsinis, S. Phanichphant
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/60533
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-605332018-09-10T03:48:36Z Doctor-bladed thick films of flame-made Pd/ZnO nanoparticles for ethanol sensing C. Liewhiran A. R. Camenzind A. Teleki S. E. Pratsinis S. Phanichphant Materials Science Physics and Astronomy ZnO nanoparticles doped with 0-5 mol% Pd were produced by flame spray pyrolysis (FSP) in a single step using zinc naphthenate and palladium (II) acetylacetonate as precursors dissolved in toluene/acetonitrile (80/20 vol%). The particle properties were further analyzed by XRD, BET, and HR-TEM analyses. The sensing films were produced by mixing the particles into an organic paste composed of terpineol and ethyl cellulose as a vehicle binder. The paste was doctor-bladed onto Al2O3substrates interdigitated with Au electrodes. The gas sensing of ethanol (25-250 ppm) was studied at 400 °C in dry air. In addition, 1 mol% Pd/ZnO film showed the highest sensitivity and fastest response times (within seconds). The sensitivity increased and the response time decreased with increasing ethanol concentration. © 2007 Elsevier B.V. All rights reserved. 2018-09-10T03:44:25Z 2018-09-10T03:44:25Z 2008-05-01 Journal 15671739 2-s2.0-38649089456 10.1016/j.cap.2007.10.075 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=38649089456&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/60533
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Materials Science
Physics and Astronomy
spellingShingle Materials Science
Physics and Astronomy
C. Liewhiran
A. R. Camenzind
A. Teleki
S. E. Pratsinis
S. Phanichphant
Doctor-bladed thick films of flame-made Pd/ZnO nanoparticles for ethanol sensing
description ZnO nanoparticles doped with 0-5 mol% Pd were produced by flame spray pyrolysis (FSP) in a single step using zinc naphthenate and palladium (II) acetylacetonate as precursors dissolved in toluene/acetonitrile (80/20 vol%). The particle properties were further analyzed by XRD, BET, and HR-TEM analyses. The sensing films were produced by mixing the particles into an organic paste composed of terpineol and ethyl cellulose as a vehicle binder. The paste was doctor-bladed onto Al2O3substrates interdigitated with Au electrodes. The gas sensing of ethanol (25-250 ppm) was studied at 400 °C in dry air. In addition, 1 mol% Pd/ZnO film showed the highest sensitivity and fastest response times (within seconds). The sensitivity increased and the response time decreased with increasing ethanol concentration. © 2007 Elsevier B.V. All rights reserved.
format Journal
author C. Liewhiran
A. R. Camenzind
A. Teleki
S. E. Pratsinis
S. Phanichphant
author_facet C. Liewhiran
A. R. Camenzind
A. Teleki
S. E. Pratsinis
S. Phanichphant
author_sort C. Liewhiran
title Doctor-bladed thick films of flame-made Pd/ZnO nanoparticles for ethanol sensing
title_short Doctor-bladed thick films of flame-made Pd/ZnO nanoparticles for ethanol sensing
title_full Doctor-bladed thick films of flame-made Pd/ZnO nanoparticles for ethanol sensing
title_fullStr Doctor-bladed thick films of flame-made Pd/ZnO nanoparticles for ethanol sensing
title_full_unstemmed Doctor-bladed thick films of flame-made Pd/ZnO nanoparticles for ethanol sensing
title_sort doctor-bladed thick films of flame-made pd/zno nanoparticles for ethanol sensing
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=38649089456&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/60533
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