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Toward Chalcogenide Platform Infrared Sensor Dedicated to the In Situ Detection of Aromatic Hydrocarbons in Natural Waters via an Attenuated Total Reflection Spectroscopy Study

The objective of this study is to demonstrate the successful functionalization of the surface of a chalcogenide infrared waveguide with the ultimate goal of developing an infrared micro-sensor device. First, a polyisobutylene coating was selected by testing its physico-chemical compatibility with a...

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Autores principales: Baillieul, Marion, Baudet, Emeline, Michel, Karine, Moreau, Jonathan, Němec, Petr, Boukerma, Kada, Colas, Florent, Charrier, Joël, Bureau, Bruno, Rinnert, Emmanuel, Nazabal, Virginie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036779/
https://www.ncbi.nlm.nih.gov/pubmed/33918118
http://dx.doi.org/10.3390/s21072449
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author Baillieul, Marion
Baudet, Emeline
Michel, Karine
Moreau, Jonathan
Němec, Petr
Boukerma, Kada
Colas, Florent
Charrier, Joël
Bureau, Bruno
Rinnert, Emmanuel
Nazabal, Virginie
author_facet Baillieul, Marion
Baudet, Emeline
Michel, Karine
Moreau, Jonathan
Němec, Petr
Boukerma, Kada
Colas, Florent
Charrier, Joël
Bureau, Bruno
Rinnert, Emmanuel
Nazabal, Virginie
author_sort Baillieul, Marion
collection PubMed
description The objective of this study is to demonstrate the successful functionalization of the surface of a chalcogenide infrared waveguide with the ultimate goal of developing an infrared micro-sensor device. First, a polyisobutylene coating was selected by testing its physico-chemical compatibility with a Ge-Sb-Se selenide surface. To simulate the chalcogenide platform infrared sensor, the detection of benzene, toluene, and ortho-, meta- and para-xylenes was efficaciously performed using a polyisobutylene layer spin-coated on 1 and 2.5 µm co-sputtered selenide films of Ge(28)Sb(12)Se(60) composition deposited on a zinc selenide prism used for attenuated total reflection spectroscopy. The thickness of the polymer coating was optimized by attenuated total reflection spectroscopy to achieve the highest possible attenuation of water absorption while maintaining the diffusion rate of the pollutant through the polymer film compatible with the targeted in situ analysis. Then, natural water, i.e., groundwater, wastewater, and seawater, was sampled for detection measurement by means of attenuated total reflection spectroscopy. This study is a valuable contribution concerning the functionalization by a hydrophobic polymer compatible with a chalcogenide optical sensor designed to operate in the mid-infrared spectral range to detect in situ organic molecules in natural water.
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spelling pubmed-80367792021-04-12 Toward Chalcogenide Platform Infrared Sensor Dedicated to the In Situ Detection of Aromatic Hydrocarbons in Natural Waters via an Attenuated Total Reflection Spectroscopy Study Baillieul, Marion Baudet, Emeline Michel, Karine Moreau, Jonathan Němec, Petr Boukerma, Kada Colas, Florent Charrier, Joël Bureau, Bruno Rinnert, Emmanuel Nazabal, Virginie Sensors (Basel) Article The objective of this study is to demonstrate the successful functionalization of the surface of a chalcogenide infrared waveguide with the ultimate goal of developing an infrared micro-sensor device. First, a polyisobutylene coating was selected by testing its physico-chemical compatibility with a Ge-Sb-Se selenide surface. To simulate the chalcogenide platform infrared sensor, the detection of benzene, toluene, and ortho-, meta- and para-xylenes was efficaciously performed using a polyisobutylene layer spin-coated on 1 and 2.5 µm co-sputtered selenide films of Ge(28)Sb(12)Se(60) composition deposited on a zinc selenide prism used for attenuated total reflection spectroscopy. The thickness of the polymer coating was optimized by attenuated total reflection spectroscopy to achieve the highest possible attenuation of water absorption while maintaining the diffusion rate of the pollutant through the polymer film compatible with the targeted in situ analysis. Then, natural water, i.e., groundwater, wastewater, and seawater, was sampled for detection measurement by means of attenuated total reflection spectroscopy. This study is a valuable contribution concerning the functionalization by a hydrophobic polymer compatible with a chalcogenide optical sensor designed to operate in the mid-infrared spectral range to detect in situ organic molecules in natural water. MDPI 2021-04-02 /pmc/articles/PMC8036779/ /pubmed/33918118 http://dx.doi.org/10.3390/s21072449 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Baillieul, Marion
Baudet, Emeline
Michel, Karine
Moreau, Jonathan
Němec, Petr
Boukerma, Kada
Colas, Florent
Charrier, Joël
Bureau, Bruno
Rinnert, Emmanuel
Nazabal, Virginie
Toward Chalcogenide Platform Infrared Sensor Dedicated to the In Situ Detection of Aromatic Hydrocarbons in Natural Waters via an Attenuated Total Reflection Spectroscopy Study
title Toward Chalcogenide Platform Infrared Sensor Dedicated to the In Situ Detection of Aromatic Hydrocarbons in Natural Waters via an Attenuated Total Reflection Spectroscopy Study
title_full Toward Chalcogenide Platform Infrared Sensor Dedicated to the In Situ Detection of Aromatic Hydrocarbons in Natural Waters via an Attenuated Total Reflection Spectroscopy Study
title_fullStr Toward Chalcogenide Platform Infrared Sensor Dedicated to the In Situ Detection of Aromatic Hydrocarbons in Natural Waters via an Attenuated Total Reflection Spectroscopy Study
title_full_unstemmed Toward Chalcogenide Platform Infrared Sensor Dedicated to the In Situ Detection of Aromatic Hydrocarbons in Natural Waters via an Attenuated Total Reflection Spectroscopy Study
title_short Toward Chalcogenide Platform Infrared Sensor Dedicated to the In Situ Detection of Aromatic Hydrocarbons in Natural Waters via an Attenuated Total Reflection Spectroscopy Study
title_sort toward chalcogenide platform infrared sensor dedicated to the in situ detection of aromatic hydrocarbons in natural waters via an attenuated total reflection spectroscopy study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036779/
https://www.ncbi.nlm.nih.gov/pubmed/33918118
http://dx.doi.org/10.3390/s21072449
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