Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures

In this work, the structural and gas sensing properties of polyaniline nanostructures deposited on 36° lithium tantalite (LiTaO3) conductometric transducers was investigated. The polyaniline nanostructures were synthesized via an electropolymerization method. The morphology of the nanostructured pol...

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Main Authors: Arsat, Rashidah, Breedon, Michael, Kalantar-Zadeh, Kourosh, Wlodarski, Wojtek
Format: Article
Published: Penerbit UTM Press 2011
Subjects:
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author Arsat, Rashidah
Breedon, Michael
Kalantar-Zadeh, Kourosh
Wlodarski, Wojtek
author_facet Arsat, Rashidah
Breedon, Michael
Kalantar-Zadeh, Kourosh
Wlodarski, Wojtek
author_sort Arsat, Rashidah
collection ePrints
description In this work, the structural and gas sensing properties of polyaniline nanostructures deposited on 36° lithium tantalite (LiTaO3) conductometric transducers was investigated. The polyaniline nanostructures were synthesized via an electropolymerization method. The morphology of the nanostructured polyaniline was characterized using Scanning Electron Microscopy (SEM). It was observed that the electropolymerised film was a three-dimensional (3D) porous structure of polyaniline fibers and nanotips. The conductometric sensors were exposed to different concentrations of hydrogen (H2) gas at room temperature.
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spelling utm.eprints-448122017-11-01T04:17:17Z http://eprints.utm.my/44812/ Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures Arsat, Rashidah Breedon, Michael Kalantar-Zadeh, Kourosh Wlodarski, Wojtek TP Chemical technology In this work, the structural and gas sensing properties of polyaniline nanostructures deposited on 36° lithium tantalite (LiTaO3) conductometric transducers was investigated. The polyaniline nanostructures were synthesized via an electropolymerization method. The morphology of the nanostructured polyaniline was characterized using Scanning Electron Microscopy (SEM). It was observed that the electropolymerised film was a three-dimensional (3D) porous structure of polyaniline fibers and nanotips. The conductometric sensors were exposed to different concentrations of hydrogen (H2) gas at room temperature. Penerbit UTM Press 2011 Article PeerReviewed Arsat, Rashidah and Breedon, Michael and Kalantar-Zadeh, Kourosh and Wlodarski, Wojtek (2011) Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures. Jurnal Teknologi, 55 (1). pp. 167-175. ISSN 0127–9696
spellingShingle TP Chemical technology
Arsat, Rashidah
Breedon, Michael
Kalantar-Zadeh, Kourosh
Wlodarski, Wojtek
Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures
title Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures
title_full Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures
title_fullStr Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures
title_full_unstemmed Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures
title_short Conductometric H2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures
title_sort conductometric h2 gas sensor with doped and dedoped electropolymerized polyaniline nanostructures
topic TP Chemical technology
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AT breedonmichael conductometrich2gassensorwithdopedanddedopedelectropolymerizedpolyanilinenanostructures
AT kalantarzadehkourosh conductometrich2gassensorwithdopedanddedopedelectropolymerizedpolyanilinenanostructures
AT wlodarskiwojtek conductometrich2gassensorwithdopedanddedopedelectropolymerizedpolyanilinenanostructures