Vanadium Doped Tungsten Oxide Material - Electrical Physical and Sensing Properties
The electrical physical and sensing (to VOCs and inorganic gases) properties of vanadium doped tungsten oxide in the regions of phase transition temperature were investigated. Vanadium oxide (II) dimerization was observed in the doped material, corresponding to new phase transition. The extreme sens...
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2008-05-01
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doaj-65a8d8a0edce4b4dbaf97dfe00e5bf632020-11-24T23:18:39ZengIFSA Publishing, S.L.Sensors & Transducers2306-85151726-54792008-05-019256986Vanadium Doped Tungsten Oxide Material - Electrical Physical and Sensing PropertiesShishkin N. Y.0Cherkasov V. A.1Komarov A. A.2Bashkirov L. A.3 Bardi U.4Gunko Y. K.5Taratyn Y. A.6Belarus State University of Technology, Sverdlov st. 13-A, Minsk 220050, BelarusBelarus State University of Technology, Sverdlov st. 13-A, Minsk 220050, BelarusBelarus State University of Technology, Sverdlov st. 13-A, Minsk 220050, BelarusBelarus State University of Technology, Sverdlov st. 13-A, Minsk 220050, BelarusDipartimento di Chimica, Università diFirenze, Polo Scientifico di Sesto Fiorentino, 50019 Firenze, ItalyDepartment of Chemistry, Trinity College, Dublin 2, IrelandMinsk Research Institute of Radiomaterials 86, Kizhevatova str., 220024, Minsk, BelarusThe electrical physical and sensing (to VOCs and inorganic gases) properties of vanadium doped tungsten oxide in the regions of phase transition temperature were investigated. Vanadium oxide (II) dimerization was observed in the doped material, corresponding to new phase transition. The extreme sensitivity and selectivity to chemically active gases and vapors in small concentrations: CO, NOx, NH3 acetone, ethanol near phase transitions temperature was found. Sensor elements were manufactured for the quantitative detection (close to 1 ppm) of alcohol and ammonia.http://www.sensorsportal.com/HTML/DIGEST/may_08/P_276.pdfNOxalcoholammoniagas sensorWO3 and V2O5 filmsphase transitionceramic compositions |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shishkin N. Y. Cherkasov V. A. Komarov A. A. Bashkirov L. A. Bardi U. Gunko Y. K. Taratyn Y. A. |
spellingShingle |
Shishkin N. Y. Cherkasov V. A. Komarov A. A. Bashkirov L. A. Bardi U. Gunko Y. K. Taratyn Y. A. Vanadium Doped Tungsten Oxide Material - Electrical Physical and Sensing Properties Sensors & Transducers NOx alcohol ammonia gas sensor WO3 and V2O5 films phase transition ceramic compositions |
author_facet |
Shishkin N. Y. Cherkasov V. A. Komarov A. A. Bashkirov L. A. Bardi U. Gunko Y. K. Taratyn Y. A. |
author_sort |
Shishkin N. Y. |
title |
Vanadium Doped Tungsten Oxide Material - Electrical Physical and Sensing Properties |
title_short |
Vanadium Doped Tungsten Oxide Material - Electrical Physical and Sensing Properties |
title_full |
Vanadium Doped Tungsten Oxide Material - Electrical Physical and Sensing Properties |
title_fullStr |
Vanadium Doped Tungsten Oxide Material - Electrical Physical and Sensing Properties |
title_full_unstemmed |
Vanadium Doped Tungsten Oxide Material - Electrical Physical and Sensing Properties |
title_sort |
vanadium doped tungsten oxide material - electrical physical and sensing properties |
publisher |
IFSA Publishing, S.L. |
series |
Sensors & Transducers |
issn |
2306-8515 1726-5479 |
publishDate |
2008-05-01 |
description |
The electrical physical and sensing (to VOCs and inorganic gases) properties of vanadium doped tungsten oxide in the regions of phase transition temperature were investigated. Vanadium oxide (II) dimerization was observed in the doped material, corresponding to new phase transition. The extreme sensitivity and selectivity to chemically active gases and vapors in small concentrations: CO, NOx, NH3 acetone, ethanol near phase transitions temperature was found. Sensor elements were manufactured for the quantitative detection (close to 1 ppm) of alcohol and ammonia. |
topic |
NOx alcohol ammonia gas sensor WO3 and V2O5 films phase transition ceramic compositions |
url |
http://www.sensorsportal.com/HTML/DIGEST/may_08/P_276.pdf |
work_keys_str_mv |
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1725580772441587712 |