Gas-sensitivity of tin dioxide thin film to kerosene vapours at room temperature

The results of experimental studies the gas sensitivity of SnO2 thin films to kerosene vapor at room temperature in an atmosphere of dry and wet air are presented. The presence of water vapor in the surrounding atmosphere does not significantly affect the gas sensitivity of thin films to kerosene v...

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Published in:Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
Main Authors: B.O. Kushnarev, L.S. Khludkova
Format: Article
Language:Russian
Published: Tver State University 2018-12-01
Subjects:
Online Access:https://physchemaspects.ru/archives/2018/fh2018-doi-10-26456-pcascnn-2018-10-420.pdf
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author B.O. Kushnarev
L.S. Khludkova
author_facet B.O. Kushnarev
L.S. Khludkova
author_sort B.O. Kushnarev
collection DOAJ
container_title Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
description The results of experimental studies the gas sensitivity of SnO2 thin films to kerosene vapor at room temperature in an atmosphere of dry and wet air are presented. The presence of water vapor in the surrounding atmosphere does not significantly affect the gas sensitivity of thin films to kerosene vapor. It is suggested that the process of oxidation of unsaturated hydrocarbons on the surface of tin dioxide has an autocatalytic character.
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spelling doaj-art-40223491c0bd4e989e699e23d3f00a342025-08-19T20:48:09ZrusTver State UniversityФизико-химические аспекты изучения кластеров, наноструктур и наноматериалов2226-44422658-43602018-12-011042042610.26456/pcascnn/2018.10.420Gas-sensitivity of tin dioxide thin film to kerosene vapours at room temperatureB.O. Kushnarev0L.S. Khludkova1Siberian Physical-Technical Institute after academician V.D. Kuznetsov, Tomsk State UniversitySiberian Physical-Technical Institute after academician V.D. Kuznetsov, Tomsk State UniversityThe results of experimental studies the gas sensitivity of SnO2 thin films to kerosene vapor at room temperature in an atmosphere of dry and wet air are presented. The presence of water vapor in the surrounding atmosphere does not significantly affect the gas sensitivity of thin films to kerosene vapor. It is suggested that the process of oxidation of unsaturated hydrocarbons on the surface of tin dioxide has an autocatalytic character.https://physchemaspects.ru/archives/2018/fh2018-doi-10-26456-pcascnn-2018-10-420.pdfgas-sensitivitytin dioxidethin filmskerosene vaporsroom temperature
spellingShingle B.O. Kushnarev
L.S. Khludkova
Gas-sensitivity of tin dioxide thin film to kerosene vapours at room temperature
gas-sensitivity
tin dioxide
thin films
kerosene vapors
room temperature
title Gas-sensitivity of tin dioxide thin film to kerosene vapours at room temperature
title_full Gas-sensitivity of tin dioxide thin film to kerosene vapours at room temperature
title_fullStr Gas-sensitivity of tin dioxide thin film to kerosene vapours at room temperature
title_full_unstemmed Gas-sensitivity of tin dioxide thin film to kerosene vapours at room temperature
title_short Gas-sensitivity of tin dioxide thin film to kerosene vapours at room temperature
title_sort gas sensitivity of tin dioxide thin film to kerosene vapours at room temperature
topic gas-sensitivity
tin dioxide
thin films
kerosene vapors
room temperature
url https://physchemaspects.ru/archives/2018/fh2018-doi-10-26456-pcascnn-2018-10-420.pdf
work_keys_str_mv AT bokushnarev gassensitivityoftindioxidethinfilmtokerosenevapoursatroomtemperature
AT lskhludkova gassensitivityoftindioxidethinfilmtokerosenevapoursatroomtemperature