Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites

New composite polymer electrolytes (CPE) have been prepared by a solution-casting technique, using polyethylene oxide, lithium hexafluorate (LiPF(6)) as the doping salt, ethylene carbonate (EC) as the plasticizer and amorphous carbon nanotubes (alpha CNTs) as the filler. The crystallinity and ionic...

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Main Authors: Ibrahim, S., Yasin, S.M.M., Ng, M.N., Ahmad, R., Johan, M.R.
Format: Article
Published: Elsevier 2010
Subjects:
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author Ibrahim, S.
Yasin, S.M.M.
Ng, M.N.
Ahmad, R.
Johan, M.R.
author_facet Ibrahim, S.
Yasin, S.M.M.
Ng, M.N.
Ahmad, R.
Johan, M.R.
author_sort Ibrahim, S.
collection UM
description New composite polymer electrolytes (CPE) have been prepared by a solution-casting technique, using polyethylene oxide, lithium hexafluorate (LiPF(6)) as the doping salt, ethylene carbonate (EC) as the plasticizer and amorphous carbon nanotubes (alpha CNTs) as the filler. The crystallinity and ionic conductivity of the CPE are examined. Differential scanning calorimetry shows a decrease in melting temperature and crystallinity upon the addition of LiPF(6), EC and alpha CNTs to the polymer electrolyte system. The addition of salt increases the conductivity up to 10(-5) S cm(-1). The incorporation of EC and alpha CNTs into the salted polymer shows a significant conductivity increase of 10(-4) and 10(-3) S cm(-1). The complexation process is examined using Fourier transform infrared spectroscopy. The Vogel-Tamman-Fulcher (VTF) plots suggest that the temperature dependence of conductivity is a thermally activated process. (C) 2011 Elsevier Ltd. All rights reserved.
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spelling um.eprints-147082017-07-03T09:00:07Z http://eprints.um.edu.my/14708/ Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites Ibrahim, S. Yasin, S.M.M. Ng, M.N. Ahmad, R. Johan, M.R. Q Science (General) New composite polymer electrolytes (CPE) have been prepared by a solution-casting technique, using polyethylene oxide, lithium hexafluorate (LiPF(6)) as the doping salt, ethylene carbonate (EC) as the plasticizer and amorphous carbon nanotubes (alpha CNTs) as the filler. The crystallinity and ionic conductivity of the CPE are examined. Differential scanning calorimetry shows a decrease in melting temperature and crystallinity upon the addition of LiPF(6), EC and alpha CNTs to the polymer electrolyte system. The addition of salt increases the conductivity up to 10(-5) S cm(-1). The incorporation of EC and alpha CNTs into the salted polymer shows a significant conductivity increase of 10(-4) and 10(-3) S cm(-1). The complexation process is examined using Fourier transform infrared spectroscopy. The Vogel-Tamman-Fulcher (VTF) plots suggest that the temperature dependence of conductivity is a thermally activated process. (C) 2011 Elsevier Ltd. All rights reserved. Elsevier 2010 Article PeerReviewed Ibrahim, S. and Yasin, S.M.M. and Ng, M.N. and Ahmad, R. and Johan, M.R. (2010) Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites. Solid State Communications, 151 (23). pp. 1828-1832.
spellingShingle Q Science (General)
Ibrahim, S.
Yasin, S.M.M.
Ng, M.N.
Ahmad, R.
Johan, M.R.
Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites
title Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites
title_full Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites
title_fullStr Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites
title_full_unstemmed Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites
title_short Impedance spectroscopy of carbon nanotube/solid polymer electrolyte composites
title_sort impedance spectroscopy of carbon nanotube solid polymer electrolyte composites
topic Q Science (General)
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