Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor

Poly-vinyl-pyrrolidone (PVP)/polyaniline based surface acoustic wave (SAW) sensors were fabricated and characterized and their performances towards hydrogen gas were investigated. The PVP/polyaniline fibers composite were prepared by electrospinning of the composite aqueous solution deposited direct...

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Main Authors: Amir Sidek, Rashidah Arsat, Xiuli He, Kourosh Kalantar-Zadeh, Wojtek Wlodarski
Format: Article
Language:English
Published: Universiti Kebangsaan Malaysia 2013
Online Access:http://journalarticle.ukm.my/5906/1/14%2520Amir%2520Sidek.pdf
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author Amir Sidek,
Rashidah Arsat,
Xiuli He,
Kourosh Kalantar-Zadeh,
Wojtek Wlodarski,
author_facet Amir Sidek,
Rashidah Arsat,
Xiuli He,
Kourosh Kalantar-Zadeh,
Wojtek Wlodarski,
author_sort Amir Sidek,
collection UKM
description Poly-vinyl-pyrrolidone (PVP)/polyaniline based surface acoustic wave (SAW) sensors were fabricated and characterized and their performances towards hydrogen gas were investigated. The PVP/polyaniline fibers composite were prepared by electrospinning of the composite aqueous solution deposited directly onto the active area of SAW transducers. Via scanning electron microscopy (SEM), the morphology of the deposited nanostructure material was observed. From the dynamic response, frequency shifts of 6.243 kHz (1% H2) and 8.051 kHz (1%were recorded for the sensors deposited with PVP/ES and PVP/EB, respectively.
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spelling ukm.eprints-59062016-12-14T06:39:49Z http://journalarticle.ukm.my/5906/ Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor Amir Sidek, Rashidah Arsat, Xiuli He, Kourosh Kalantar-Zadeh, Wojtek Wlodarski, Poly-vinyl-pyrrolidone (PVP)/polyaniline based surface acoustic wave (SAW) sensors were fabricated and characterized and their performances towards hydrogen gas were investigated. The PVP/polyaniline fibers composite were prepared by electrospinning of the composite aqueous solution deposited directly onto the active area of SAW transducers. Via scanning electron microscopy (SEM), the morphology of the deposited nanostructure material was observed. From the dynamic response, frequency shifts of 6.243 kHz (1% H2) and 8.051 kHz (1%were recorded for the sensors deposited with PVP/ES and PVP/EB, respectively. Universiti Kebangsaan Malaysia 2013-02 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/5906/1/14%2520Amir%2520Sidek.pdf Amir Sidek, and Rashidah Arsat, and Xiuli He, and Kourosh Kalantar-Zadeh, and Wojtek Wlodarski, (2013) Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor. Sains Malaysiana, 42 (2). pp. 213-217. ISSN 0126-6039 http://www.ukm.my/jsm/
spellingShingle Amir Sidek,
Rashidah Arsat,
Xiuli He,
Kourosh Kalantar-Zadeh,
Wojtek Wlodarski,
Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor
title Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor
title_full Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor
title_fullStr Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor
title_full_unstemmed Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor
title_short Polyvinylpyrrolidone/polyaniline composite based 36° YX LiTaO3 surface acoustic wave H2 gas sensor
title_sort polyvinylpyrrolidone polyaniline composite based 36° yx litao3 surface acoustic wave h2 gas sensor
url http://journalarticle.ukm.my/5906/1/14%2520Amir%2520Sidek.pdf
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AT xiulihe polyvinylpyrrolidonepolyanilinecompositebased36yxlitao3surfaceacousticwaveh2gassensor
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