Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]

Influences of dimethyl carbonate (DMC) plasticizer on ionic conductivity, dielectric permittivity and electrical modulus formalism of methyl cellulose (MC)-based polymer electrolytes have been studied. The room temperature electrical conductivity as measured by impedance spectroscopy shows that a me...

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Published in:Malaysian Journal of Analytical Sciences
Main Author: Mustafa M.F.; Ridwan N.I.M.; Hatta F.F.; Yahya M.Z.A.
Format: Article
Language:English
Published: 2012
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84871507737&partnerID=40&md5=3c3c8f5af55235d1761e90de0ce64e97
id 2-s2.0-84871507737
spelling 2-s2.0-84871507737
Mustafa M.F.; Ridwan N.I.M.; Hatta F.F.; Yahya M.Z.A.
Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]
2012
Malaysian Journal of Analytical Sciences
16
3

https://www.scopus.com/inward/record.uri?eid=2-s2.0-84871507737&partnerID=40&md5=3c3c8f5af55235d1761e90de0ce64e97
Influences of dimethyl carbonate (DMC) plasticizer on ionic conductivity, dielectric permittivity and electrical modulus formalism of methyl cellulose (MC)-based polymer electrolytes have been studied. The room temperature electrical conductivity as measured by impedance spectroscopy shows that a methyl cellulose film has a conductivity of ~10-10 S cm-1. In this study, other than KOH ionic dopant, DMC plasticizer is also added to the polymer with the aim of enhancing the electrical conductivity of the polymer. The highest room temperature conductivity of the plasticized sample is ~10-5 S cm-1. The plot of log σ versus 103/T for the highest conducting sample obeys Arrhenius rule indicating that the conductivity occurs by thermally activated mechanism.

13942506
English
Article

author Mustafa M.F.; Ridwan N.I.M.; Hatta F.F.; Yahya M.Z.A.
spellingShingle Mustafa M.F.; Ridwan N.I.M.; Hatta F.F.; Yahya M.Z.A.
Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]
author_facet Mustafa M.F.; Ridwan N.I.M.; Hatta F.F.; Yahya M.Z.A.
author_sort Mustafa M.F.; Ridwan N.I.M.; Hatta F.F.; Yahya M.Z.A.
title Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]
title_short Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]
title_full Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]
title_fullStr Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]
title_full_unstemmed Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]
title_sort Effect of dimethyl carbonate plasticizer on ionic conductivity of methyl cellulose-based polymer electrolytes; [Pengaruh pemplastik dimetil karbonat ke atas kekonduksian ionik elektrolit polimer berasaskan metil selulos]
publishDate 2012
container_title Malaysian Journal of Analytical Sciences
container_volume 16
container_issue 3
doi_str_mv
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84871507737&partnerID=40&md5=3c3c8f5af55235d1761e90de0ce64e97
description Influences of dimethyl carbonate (DMC) plasticizer on ionic conductivity, dielectric permittivity and electrical modulus formalism of methyl cellulose (MC)-based polymer electrolytes have been studied. The room temperature electrical conductivity as measured by impedance spectroscopy shows that a methyl cellulose film has a conductivity of ~10-10 S cm-1. In this study, other than KOH ionic dopant, DMC plasticizer is also added to the polymer with the aim of enhancing the electrical conductivity of the polymer. The highest room temperature conductivity of the plasticized sample is ~10-5 S cm-1. The plot of log σ versus 103/T for the highest conducting sample obeys Arrhenius rule indicating that the conductivity occurs by thermally activated mechanism.
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issn 13942506
language English
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