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The Room-Temperature Chemiresistive Properties of Potassium Titanate Whiskers versus Organic Vapors

The development of portable gas-sensing units implies a special care of their power efficiency, which is often approached by operation at room temperature. This issue primarily appeals to a choice of suitable materials whose functional properties are sensitive toward gas vapors at these conditions....

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Autores principales: Varezhnikov, Alexey S., Fedorov, Fedor S., Burmistrov, Igor N., Plugin, Ilya A., Sommer, Martin, Lashkov, Andrey V., Gorokhovsky, Alexander V., Nasibulin, Albert G., Kuznetsov, Denis V., Gorshenkov, Michail V., Sysoev, Victor V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5746944/
https://www.ncbi.nlm.nih.gov/pubmed/29257073
http://dx.doi.org/10.3390/nano7120455
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author Varezhnikov, Alexey S.
Fedorov, Fedor S.
Burmistrov, Igor N.
Plugin, Ilya A.
Sommer, Martin
Lashkov, Andrey V.
Gorokhovsky, Alexander V.
Nasibulin, Albert G.
Kuznetsov, Denis V.
Gorshenkov, Michail V.
Sysoev, Victor V.
author_facet Varezhnikov, Alexey S.
Fedorov, Fedor S.
Burmistrov, Igor N.
Plugin, Ilya A.
Sommer, Martin
Lashkov, Andrey V.
Gorokhovsky, Alexander V.
Nasibulin, Albert G.
Kuznetsov, Denis V.
Gorshenkov, Michail V.
Sysoev, Victor V.
author_sort Varezhnikov, Alexey S.
collection PubMed
description The development of portable gas-sensing units implies a special care of their power efficiency, which is often approached by operation at room temperature. This issue primarily appeals to a choice of suitable materials whose functional properties are sensitive toward gas vapors at these conditions. While the gas sensitivity is nowadays advanced by employing the materials at nano-dimensional domain, the room temperature operation might be targeted via the application of layered solid-state electrolytes, like titanates. Here, we report gas-sensitive properties of potassium titanate whiskers, which are placed over a multielectrode chip by drop casting from suspension to yield a matrix mono-layer of varied density. The material synthesis conditions are straightforward both to get stable single-crystalline quasi-one-dimensional whiskers with a great extent of potassium replacement and to favor the increase of specific surface area of the structures. The whisker layer is found to be sensitive towards volatile organic compounds (ethanol, isopropanol, acetone) in the mixture with air at room temperature. The vapor identification is obtained via processing the vector signal generated by sensor array of the multielectrode chip with the help of pattern recognition algorithms.
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spelling pubmed-57469442018-01-03 The Room-Temperature Chemiresistive Properties of Potassium Titanate Whiskers versus Organic Vapors Varezhnikov, Alexey S. Fedorov, Fedor S. Burmistrov, Igor N. Plugin, Ilya A. Sommer, Martin Lashkov, Andrey V. Gorokhovsky, Alexander V. Nasibulin, Albert G. Kuznetsov, Denis V. Gorshenkov, Michail V. Sysoev, Victor V. Nanomaterials (Basel) Article The development of portable gas-sensing units implies a special care of their power efficiency, which is often approached by operation at room temperature. This issue primarily appeals to a choice of suitable materials whose functional properties are sensitive toward gas vapors at these conditions. While the gas sensitivity is nowadays advanced by employing the materials at nano-dimensional domain, the room temperature operation might be targeted via the application of layered solid-state electrolytes, like titanates. Here, we report gas-sensitive properties of potassium titanate whiskers, which are placed over a multielectrode chip by drop casting from suspension to yield a matrix mono-layer of varied density. The material synthesis conditions are straightforward both to get stable single-crystalline quasi-one-dimensional whiskers with a great extent of potassium replacement and to favor the increase of specific surface area of the structures. The whisker layer is found to be sensitive towards volatile organic compounds (ethanol, isopropanol, acetone) in the mixture with air at room temperature. The vapor identification is obtained via processing the vector signal generated by sensor array of the multielectrode chip with the help of pattern recognition algorithms. MDPI 2017-12-19 /pmc/articles/PMC5746944/ /pubmed/29257073 http://dx.doi.org/10.3390/nano7120455 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
Varezhnikov, Alexey S.
Fedorov, Fedor S.
Burmistrov, Igor N.
Plugin, Ilya A.
Sommer, Martin
Lashkov, Andrey V.
Gorokhovsky, Alexander V.
Nasibulin, Albert G.
Kuznetsov, Denis V.
Gorshenkov, Michail V.
Sysoev, Victor V.
The Room-Temperature Chemiresistive Properties of Potassium Titanate Whiskers versus Organic Vapors
title The Room-Temperature Chemiresistive Properties of Potassium Titanate Whiskers versus Organic Vapors
title_full The Room-Temperature Chemiresistive Properties of Potassium Titanate Whiskers versus Organic Vapors
title_fullStr The Room-Temperature Chemiresistive Properties of Potassium Titanate Whiskers versus Organic Vapors
title_full_unstemmed The Room-Temperature Chemiresistive Properties of Potassium Titanate Whiskers versus Organic Vapors
title_short The Room-Temperature Chemiresistive Properties of Potassium Titanate Whiskers versus Organic Vapors
title_sort room-temperature chemiresistive properties of potassium titanate whiskers versus organic vapors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5746944/
https://www.ncbi.nlm.nih.gov/pubmed/29257073
http://dx.doi.org/10.3390/nano7120455
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