Conductivity and Dielectric Studies of Methylcellulose/Chitosan-NH4CF3SO3 Polymer Electrolyte
Films of methyl cellulose (MC) /chitosan blends were prepared via solution casting technique and their properties with different amount of ammonium trilate, NH4CF3SO3 were compared. Measurements of conductivity as a function of frequency at room temperature on these films were carried out using HIOK...
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2015
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my.usim-89572015-08-25T01:54:20Z Conductivity and Dielectric Studies of Methylcellulose/Chitosan-NH4CF3SO3 Polymer Electrolyte K. Z., Hamdan, A. S. A., Khiar, Polymer electrolyte Conductivity Methylcellulose Chitosan Films of methyl cellulose (MC) /chitosan blends were prepared via solution casting technique and their properties with different amount of ammonium trilate, NH4CF3SO3 were compared. Measurements of conductivity as a function of frequency at room temperature on these films were carried out using HIOKI 3532-50 LCR Hi-Tester where the frequency was set between 50 Hz to 1 MHz. Samples having 40 wt% of NH4CF3SO3 exhibit the highest room temperature conductivity of (4.99+4.18) x 10(-6) Scm(-1). Dielectric data were analyzed using complex permittivity and complex electrical modulus for the sample with the highest ionic conductivity. 2015-08-05T03:06:33Z 2015-08-05T03:06:33Z 2014 Conference Paper 1013-9826 http://ddms.usim.edu.my/handle/123456789/8957 en_US Trans Tech Publications Ltd |
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Polymer electrolyte Conductivity Methylcellulose Chitosan |
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Polymer electrolyte Conductivity Methylcellulose Chitosan K. Z., Hamdan, A. S. A., Khiar, Conductivity and Dielectric Studies of Methylcellulose/Chitosan-NH4CF3SO3 Polymer Electrolyte |
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Films of methyl cellulose (MC) /chitosan blends were prepared via solution casting technique and their properties with different amount of ammonium trilate, NH4CF3SO3 were compared. Measurements of conductivity as a function of frequency at room temperature on these films were carried out using HIOKI 3532-50 LCR Hi-Tester where the frequency was set between 50 Hz to 1 MHz. Samples having 40 wt% of NH4CF3SO3 exhibit the highest room temperature conductivity of (4.99+4.18) x 10(-6) Scm(-1). Dielectric data were analyzed using complex permittivity and complex electrical modulus for the sample with the highest ionic conductivity. |
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Conference Paper |
author |
K. Z., Hamdan, A. S. A., Khiar, |
author_facet |
K. Z., Hamdan, A. S. A., Khiar, |
author_sort |
K. Z., Hamdan, |
title |
Conductivity and Dielectric Studies of Methylcellulose/Chitosan-NH4CF3SO3 Polymer Electrolyte |
title_short |
Conductivity and Dielectric Studies of Methylcellulose/Chitosan-NH4CF3SO3 Polymer Electrolyte |
title_full |
Conductivity and Dielectric Studies of Methylcellulose/Chitosan-NH4CF3SO3 Polymer Electrolyte |
title_fullStr |
Conductivity and Dielectric Studies of Methylcellulose/Chitosan-NH4CF3SO3 Polymer Electrolyte |
title_full_unstemmed |
Conductivity and Dielectric Studies of Methylcellulose/Chitosan-NH4CF3SO3 Polymer Electrolyte |
title_sort |
conductivity and dielectric studies of methylcellulose/chitosan-nh4cf3so3 polymer electrolyte |
publisher |
Trans Tech Publications Ltd |
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2015 |
url |
http://ddms.usim.edu.my/handle/123456789/8957 |
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1645152507730591744 |
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13.222552 |