EventsThe 1st International Electronic Conference on Chemical Sensors and Analytical Chemistry
Published
This submission belongs to the session G. Gas Sensors of the event The 1st International Electronic Conference on Chemical Sensors and Analytical Chemistry
Published date
01 Jul, 2021
Academic Editor
author-avatarettore massera
Citation
Jean-baptiste Sanchez, Achraf El Mohajir, Mohammad Arab Pour Yazdi, Olivier Heintz, Nicolas Martin, Detection of indoor air pollutants using reactive sputtering/GLAD of tin oxide thin films., in Proceedings of The 1st International Electronic Conference on Chemical Sensors and Analytical Chemistry, 1 July–15 July 2021, MDPI: Basel, Switzerland, doi: 10.3390/CSAC2021-10548
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Detection of indoor air pollutants using reactive sputtering/GLAD of tin oxide thin films.

Olivier Heintz 3
image
1. Institut Femto-ST
2. Institut Femto-ST, France
3. Laboratoire ICB, Dijon
Abstract

Indoor air quality is a topic of major importance for public health. Among the numerous chemical compounds that can be found in indoor air, BTEX (benzene, toluene, ethylbenzene and xylene) are considered as one of the most toxic volatile organic compounds (VOCs). The present contribution is focused on the use of an original approach to produce nanostructured materials based on tin oxide with unexplored features, especially for gas sensors. In this work, we combine two physical vapor deposition techniques based first on a pulsing injection of the reactive gas during the deposition and second focused on the "GLAD" (Glancing Angle Deposition) technique, which enables structuring various architectures. These active layers are deposited on micro-hotplate to produce micro-chemical gas sensors for the detection of BTEX.

Keywords
GLAD technique
chemical gas sensor
Manuscript
Poster
Detection of indoor air pollutants using reactive sputtering GLAD of tin oxide thin films.pdf
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