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Highly Sensitive Sputtered ZnO:Ga Thin Films Integrated by a Simple Stencil Mask Process on Microsensor Platforms for Sub-ppm Acetaldehyde Detection

The integration of a 50-nm-thick layer of an innovative sensitive material on microsensors has been developed based on silicon micro-hotplates. In this study, integration of ZnO:Ga via radio-frequency (RF) sputtering has been successfully combined with a low cost and reliable stencil mask technique...

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Autores principales: Presmanes, Lionel, Thimont, Yohann, Chapelle, Audrey, Blanc, Frédéric, Talhi, Chabane, Bonningue, Corine, Barnabé, Antoine, Menini, Philippe, Tailhades, Philippe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5469660/
https://www.ncbi.nlm.nih.gov/pubmed/28481258
http://dx.doi.org/10.3390/s17051055
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author Presmanes, Lionel
Thimont, Yohann
Chapelle, Audrey
Blanc, Frédéric
Talhi, Chabane
Bonningue, Corine
Barnabé, Antoine
Menini, Philippe
Tailhades, Philippe
author_facet Presmanes, Lionel
Thimont, Yohann
Chapelle, Audrey
Blanc, Frédéric
Talhi, Chabane
Bonningue, Corine
Barnabé, Antoine
Menini, Philippe
Tailhades, Philippe
author_sort Presmanes, Lionel
collection PubMed
description The integration of a 50-nm-thick layer of an innovative sensitive material on microsensors has been developed based on silicon micro-hotplates. In this study, integration of ZnO:Ga via radio-frequency (RF) sputtering has been successfully combined with a low cost and reliable stencil mask technique to obtain repeatable sensing layers on top of interdigitated electrodes. The variation of the resistance of this n-type Ga-doped ZnO has been measured under sub-ppm traces (500 ppb) of acetaldehyde (C(2)H(4)O). Thanks to the microheater designed into a thin membrane, the generation of very rapid temperature variations (from room temperature to 550 °C in 25 ms) is possible, and a rapid cycled pulsed-temperature operating mode can be applied to the sensor. This approach reveals a strong improvement of sensing performances with a huge sensitivity between 10 and 1000, depending on the working pulsed-temperature level.
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spelling pubmed-54696602017-06-16 Highly Sensitive Sputtered ZnO:Ga Thin Films Integrated by a Simple Stencil Mask Process on Microsensor Platforms for Sub-ppm Acetaldehyde Detection Presmanes, Lionel Thimont, Yohann Chapelle, Audrey Blanc, Frédéric Talhi, Chabane Bonningue, Corine Barnabé, Antoine Menini, Philippe Tailhades, Philippe Sensors (Basel) Article The integration of a 50-nm-thick layer of an innovative sensitive material on microsensors has been developed based on silicon micro-hotplates. In this study, integration of ZnO:Ga via radio-frequency (RF) sputtering has been successfully combined with a low cost and reliable stencil mask technique to obtain repeatable sensing layers on top of interdigitated electrodes. The variation of the resistance of this n-type Ga-doped ZnO has been measured under sub-ppm traces (500 ppb) of acetaldehyde (C(2)H(4)O). Thanks to the microheater designed into a thin membrane, the generation of very rapid temperature variations (from room temperature to 550 °C in 25 ms) is possible, and a rapid cycled pulsed-temperature operating mode can be applied to the sensor. This approach reveals a strong improvement of sensing performances with a huge sensitivity between 10 and 1000, depending on the working pulsed-temperature level. MDPI 2017-05-06 /pmc/articles/PMC5469660/ /pubmed/28481258 http://dx.doi.org/10.3390/s17051055 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Presmanes, Lionel
Thimont, Yohann
Chapelle, Audrey
Blanc, Frédéric
Talhi, Chabane
Bonningue, Corine
Barnabé, Antoine
Menini, Philippe
Tailhades, Philippe
Highly Sensitive Sputtered ZnO:Ga Thin Films Integrated by a Simple Stencil Mask Process on Microsensor Platforms for Sub-ppm Acetaldehyde Detection
title Highly Sensitive Sputtered ZnO:Ga Thin Films Integrated by a Simple Stencil Mask Process on Microsensor Platforms for Sub-ppm Acetaldehyde Detection
title_full Highly Sensitive Sputtered ZnO:Ga Thin Films Integrated by a Simple Stencil Mask Process on Microsensor Platforms for Sub-ppm Acetaldehyde Detection
title_fullStr Highly Sensitive Sputtered ZnO:Ga Thin Films Integrated by a Simple Stencil Mask Process on Microsensor Platforms for Sub-ppm Acetaldehyde Detection
title_full_unstemmed Highly Sensitive Sputtered ZnO:Ga Thin Films Integrated by a Simple Stencil Mask Process on Microsensor Platforms for Sub-ppm Acetaldehyde Detection
title_short Highly Sensitive Sputtered ZnO:Ga Thin Films Integrated by a Simple Stencil Mask Process on Microsensor Platforms for Sub-ppm Acetaldehyde Detection
title_sort highly sensitive sputtered zno:ga thin films integrated by a simple stencil mask process on microsensor platforms for sub-ppm acetaldehyde detection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5469660/
https://www.ncbi.nlm.nih.gov/pubmed/28481258
http://dx.doi.org/10.3390/s17051055
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