Development of Tin Oxide-Based Nanosensors for Electronic Nose Environmental Applications

Tin oxide nanofibres (NFs) are used as nanosensors in electronic noses. Their performance is compared to that of oxide commercial chemical sensors for pollutant detection. NFs were grown by electrospinning and deposited onto silicon substrates with integrated micro-hotplates. NF morphology was chara...

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Main Authors: Isabel Sayago, Manuel Aleixandre, José Pedro Santos
Format: Article
Language:English
Published: MDPI AG 2019-02-01
Series:Biosensors
Subjects:
Online Access:https://www.mdpi.com/2079-6374/9/1/21
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author Isabel Sayago
Manuel Aleixandre
José Pedro Santos
author_facet Isabel Sayago
Manuel Aleixandre
José Pedro Santos
author_sort Isabel Sayago
collection DOAJ
description Tin oxide nanofibres (NFs) are used as nanosensors in electronic noses. Their performance is compared to that of oxide commercial chemical sensors for pollutant detection. NFs were grown by electrospinning and deposited onto silicon substrates with integrated micro-hotplates. NF morphology was characterized by scanning electron microscopy (SEM). The NFs presented high sensitivity to NO<sub>2</sub> at low temperature.
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spelling doaj.art-09cb02cb7ec74698b6d6843a45ea0e8a2022-12-22T01:32:02ZengMDPI AGBiosensors2079-63742019-02-01912110.3390/bios9010021bios9010021Development of Tin Oxide-Based Nanosensors for Electronic Nose Environmental ApplicationsIsabel Sayago0Manuel Aleixandre1José Pedro Santos2Institute of Physics Technology and Information (ITEFI-CSIC), 28006 Madrid, SpainInstitute of Physics Technology and Information (ITEFI-CSIC), 28006 Madrid, SpainInstitute of Physics Technology and Information (ITEFI-CSIC), 28006 Madrid, SpainTin oxide nanofibres (NFs) are used as nanosensors in electronic noses. Their performance is compared to that of oxide commercial chemical sensors for pollutant detection. NFs were grown by electrospinning and deposited onto silicon substrates with integrated micro-hotplates. NF morphology was characterized by scanning electron microscopy (SEM). The NFs presented high sensitivity to NO<sub>2</sub> at low temperature.https://www.mdpi.com/2079-6374/9/1/21nanofibrestin oxideelectronic noseNO<sub>2</sub>pollutionelectrospinninglow detection temperature
spellingShingle Isabel Sayago
Manuel Aleixandre
José Pedro Santos
Development of Tin Oxide-Based Nanosensors for Electronic Nose Environmental Applications
Biosensors
nanofibres
tin oxide
electronic nose
NO<sub>2</sub>
pollution
electrospinning
low detection temperature
title Development of Tin Oxide-Based Nanosensors for Electronic Nose Environmental Applications
title_full Development of Tin Oxide-Based Nanosensors for Electronic Nose Environmental Applications
title_fullStr Development of Tin Oxide-Based Nanosensors for Electronic Nose Environmental Applications
title_full_unstemmed Development of Tin Oxide-Based Nanosensors for Electronic Nose Environmental Applications
title_short Development of Tin Oxide-Based Nanosensors for Electronic Nose Environmental Applications
title_sort development of tin oxide based nanosensors for electronic nose environmental applications
topic nanofibres
tin oxide
electronic nose
NO<sub>2</sub>
pollution
electrospinning
low detection temperature
url https://www.mdpi.com/2079-6374/9/1/21
work_keys_str_mv AT isabelsayago developmentoftinoxidebasednanosensorsforelectronicnoseenvironmentalapplications
AT manuelaleixandre developmentoftinoxidebasednanosensorsforelectronicnoseenvironmentalapplications
AT josepedrosantos developmentoftinoxidebasednanosensorsforelectronicnoseenvironmentalapplications