Effect of propylene carbonate on ionic conductivity of MG49-TiO 2-LiClO 4 composites polymer electrolytes
The effect of plasticizer (PC) on the conductivity and chemical interaction of polymer electrolyte of MG49-PC-LiClO 4-TiO 2 has been investigated. The electrolyte films were successfully prepared by solution casting technique. Alternating current electrochemical impedance spectroscopy was employed t...
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my.uniten.dspace-302772023-12-29T15:46:14Z Effect of propylene carbonate on ionic conductivity of MG49-TiO 2-LiClO 4 composites polymer electrolytes Ahmad A. Low S.P. Almakhzoom F.S.A. Rahman M.Y.A. 16306307100 36448840400 55210952100 55347217400 Ionic conductivity MG-49 Polymer electrolyte Propylene carbonate Electrochemical impedance spectroscopy Ethers Fourier transform infrared spectroscopy Plasticizers Polyelectrolytes Polymers Reinforced plastics Technology Titanium dioxide Alternating current Chemical interactions Crystallinities Effect of plasticizers Electrolyte films Fourier transform infrared Lithium ions MG-49 Oxygen atom Polymer electrolyte Propylene carbonate Solution-casting technique TiO XRD patterns Ionic conductivity The effect of plasticizer (PC) on the conductivity and chemical interaction of polymer electrolyte of MG49-PC-LiClO 4-TiO 2 has been investigated. The electrolyte films were successfully prepared by solution casting technique. Alternating current electrochemical impedance spectroscopy was employed to investigate the ionic conductivity of the electrolyte films at 25 �C, and the analysis showed that the addition of propylene carbonate (PC) plasticizer has increased the ionic conductivity of the electrolyte up to its optimum level. The highest conductivity of 2.54�10 -4 Scm -1 was obtained at 30 wt.% of PC. Fourier transform infrared spectroscopy measurement was employed to study the interactions between lithium ions and oxygen atoms that occurred at carbonyl (C=O) and ether (C-O-C) groups. XRD pattern showed that the crystallinity phase was reduced at the highest conductivity. � (2012) Trans Tech Publications. Final 2023-12-29T07:46:14Z 2023-12-29T07:46:14Z 2012 Conference paper 10.4028/www.scientific.net/AMR.501.44 2-s2.0-84860720922 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84860720922&doi=10.4028%2fwww.scientific.net%2fAMR.501.44&partnerID=40&md5=a2093f10212bb2f8dd388ae793c41b33 https://irepository.uniten.edu.my/handle/123456789/30277 501 44 48 Scopus |
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Ionic conductivity MG-49 Polymer electrolyte Propylene carbonate Electrochemical impedance spectroscopy Ethers Fourier transform infrared spectroscopy Plasticizers Polyelectrolytes Polymers Reinforced plastics Technology Titanium dioxide Alternating current Chemical interactions Crystallinities Effect of plasticizers Electrolyte films Fourier transform infrared Lithium ions MG-49 Oxygen atom Polymer electrolyte Propylene carbonate Solution-casting technique TiO XRD patterns Ionic conductivity |
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Ionic conductivity MG-49 Polymer electrolyte Propylene carbonate Electrochemical impedance spectroscopy Ethers Fourier transform infrared spectroscopy Plasticizers Polyelectrolytes Polymers Reinforced plastics Technology Titanium dioxide Alternating current Chemical interactions Crystallinities Effect of plasticizers Electrolyte films Fourier transform infrared Lithium ions MG-49 Oxygen atom Polymer electrolyte Propylene carbonate Solution-casting technique TiO XRD patterns Ionic conductivity Ahmad A. Low S.P. Almakhzoom F.S.A. Rahman M.Y.A. Effect of propylene carbonate on ionic conductivity of MG49-TiO 2-LiClO 4 composites polymer electrolytes |
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The effect of plasticizer (PC) on the conductivity and chemical interaction of polymer electrolyte of MG49-PC-LiClO 4-TiO 2 has been investigated. The electrolyte films were successfully prepared by solution casting technique. Alternating current electrochemical impedance spectroscopy was employed to investigate the ionic conductivity of the electrolyte films at 25 �C, and the analysis showed that the addition of propylene carbonate (PC) plasticizer has increased the ionic conductivity of the electrolyte up to its optimum level. The highest conductivity of 2.54�10 -4 Scm -1 was obtained at 30 wt.% of PC. Fourier transform infrared spectroscopy measurement was employed to study the interactions between lithium ions and oxygen atoms that occurred at carbonyl (C=O) and ether (C-O-C) groups. XRD pattern showed that the crystallinity phase was reduced at the highest conductivity. � (2012) Trans Tech Publications. |
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16306307100 |
author_facet |
16306307100 Ahmad A. Low S.P. Almakhzoom F.S.A. Rahman M.Y.A. |
format |
Conference paper |
author |
Ahmad A. Low S.P. Almakhzoom F.S.A. Rahman M.Y.A. |
author_sort |
Ahmad A. |
title |
Effect of propylene carbonate on ionic conductivity of MG49-TiO 2-LiClO 4 composites polymer electrolytes |
title_short |
Effect of propylene carbonate on ionic conductivity of MG49-TiO 2-LiClO 4 composites polymer electrolytes |
title_full |
Effect of propylene carbonate on ionic conductivity of MG49-TiO 2-LiClO 4 composites polymer electrolytes |
title_fullStr |
Effect of propylene carbonate on ionic conductivity of MG49-TiO 2-LiClO 4 composites polymer electrolytes |
title_full_unstemmed |
Effect of propylene carbonate on ionic conductivity of MG49-TiO 2-LiClO 4 composites polymer electrolytes |
title_sort |
effect of propylene carbonate on ionic conductivity of mg49-tio 2-liclo 4 composites polymer electrolytes |
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2023 |
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1806426029340753920 |
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13.214268 |