Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis

In this study, (1.1111 - x)(0.9CS-0.1NaTf)-xAl(2)O(3)(0.02 <= x <= 0.1) [where CS is chitosan, NaTf is sodium triflate (NaCF3SO3), and Al2O3 is aluminum oxide] nanocomposite solid polymer electrolyte (SPE) films based on CS were prepared by a solution casting technique. X-ray diffraction and s...

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Main Authors: Aziz, S.B., Abidin, Z.H.Z.
Format: Article
Published: Wiley 2015
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Online Access:http://eprints.um.edu.my/12831/
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spelling my.um.eprints.128312019-03-18T02:08:13Z http://eprints.um.edu.my/12831/ Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis Aziz, S.B. Abidin, Z.H.Z. T Technology (General) In this study, (1.1111 - x)(0.9CS-0.1NaTf)-xAl(2)O(3)(0.02 <= x <= 0.1) [where CS is chitosan, NaTf is sodium triflate (NaCF3SO3), and Al2O3 is aluminum oxide] nanocomposite solid polymer electrolyte (SPE) films based on CS were prepared by a solution casting technique. X-ray diffraction and scanning electron microscopy analysis revealed that the alumina nanoparticles had a great effect on the structural and morphological behavior of the CS-NaTf (90:10) polymer electrolyte. An investigation of the electrical and dielectric parameters of the nanocomposite SPE films was conducted. Electrical impedance spectroscopy was carried out for this purpose. The relationships between the electrical and dielectric parameters were used to interpret and understand the ion-conduction mechanism. We observed that the direct-current conductivity (sigma(dc)) and dielectric constant followed the same trend with salt concentration. sigma(dc) versus temperature showed the Arrhenius and Vogel-Fulcher-Tammann (VTF) regions. The drops of sigma(dc) at high temperatures were observed for all of the samples. The ion relaxation dynamics were studied from Argand plots. For the first time, we confirmed the existence of a strong experimental relationship between the high-frequency semicircle of the impedance plots and the high-frequency dispersion regions of the alternating-current conductivity (sigma(ac)). The dispersion regions of sigma(ac) were used to study the ion-conduction mechanism. The behavior of the frequency exponent as a function of the temperature was used to interpret sigma(dc) versus the temperature. (C) 2014 Wiley Periodicals, Inc. Wiley 2015 Article PeerReviewed Aziz, S.B. and Abidin, Z.H.Z. (2015) Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis. Journal of Applied Polymer Science, 132 (15). ISSN 0021-8995
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic T Technology (General)
spellingShingle T Technology (General)
Aziz, S.B.
Abidin, Z.H.Z.
Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis
description In this study, (1.1111 - x)(0.9CS-0.1NaTf)-xAl(2)O(3)(0.02 <= x <= 0.1) [where CS is chitosan, NaTf is sodium triflate (NaCF3SO3), and Al2O3 is aluminum oxide] nanocomposite solid polymer electrolyte (SPE) films based on CS were prepared by a solution casting technique. X-ray diffraction and scanning electron microscopy analysis revealed that the alumina nanoparticles had a great effect on the structural and morphological behavior of the CS-NaTf (90:10) polymer electrolyte. An investigation of the electrical and dielectric parameters of the nanocomposite SPE films was conducted. Electrical impedance spectroscopy was carried out for this purpose. The relationships between the electrical and dielectric parameters were used to interpret and understand the ion-conduction mechanism. We observed that the direct-current conductivity (sigma(dc)) and dielectric constant followed the same trend with salt concentration. sigma(dc) versus temperature showed the Arrhenius and Vogel-Fulcher-Tammann (VTF) regions. The drops of sigma(dc) at high temperatures were observed for all of the samples. The ion relaxation dynamics were studied from Argand plots. For the first time, we confirmed the existence of a strong experimental relationship between the high-frequency semicircle of the impedance plots and the high-frequency dispersion regions of the alternating-current conductivity (sigma(ac)). The dispersion regions of sigma(ac) were used to study the ion-conduction mechanism. The behavior of the frequency exponent as a function of the temperature was used to interpret sigma(dc) versus the temperature. (C) 2014 Wiley Periodicals, Inc.
format Article
author Aziz, S.B.
Abidin, Z.H.Z.
author_facet Aziz, S.B.
Abidin, Z.H.Z.
author_sort Aziz, S.B.
title Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis
title_short Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis
title_full Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis
title_fullStr Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis
title_full_unstemmed Ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis
title_sort ion-transport study in nanocomposite solid polymer electrolytes based on chitosan: electrical and dielectric analysis
publisher Wiley
publishDate 2015
url http://eprints.um.edu.my/12831/
_version_ 1643689388615401472
score 13.160551