Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman.
In this study of nanocomposite polymer electrolyte, Poly vinyl chloride, (PVC), was used as the host polymer and lithium (bis) trifluoromethanesulfonimide, (LiTFSI), as the doping salt with Aluminium Oxide, AI2O3 as the filler. PVC and salt in different weight % concentrations dissolved in Tetrah...
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my.uitm.ir.468862021-06-03T17:29:07Z http://ir.uitm.edu.my/id/eprint/46886/ Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman. Sulaiman, Muhamad Kamarul Azman Electricity Electric conductivity In this study of nanocomposite polymer electrolyte, Poly vinyl chloride, (PVC), was used as the host polymer and lithium (bis) trifluoromethanesulfonimide, (LiTFSI), as the doping salt with Aluminium Oxide, AI2O3 as the filler. PVC and salt in different weight % concentrations dissolved in Tetrahydrofuran, (THF). The influence of different concentration of salt on PVC gave rise to different values of ionic conductivity. The best conductivity concentration of PVC-LiTFSI was mixed with various weight % of Aluminium Oxide in nanosize to form PVC-UTFSI-AI2O3 nanocomposite polymer electrolytes. The ionic conductivity of nanocomposite polymer electrolyte was determined by impedance spectroscopy. Temperature dependence of conductivity behavior of the best conducting PVC-LiTFSI and PVC-LiTFSI-AI2O3 samples was also investigated to obtain the values of activation energy (Ea) of conduction. 2008 Student Project NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/46886/1/46886.pdf ID46886 Sulaiman, Muhamad Kamarul Azman (2008) Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman. [Student Project] (Unpublished) |
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Electricity Electric conductivity Sulaiman, Muhamad Kamarul Azman Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman. |
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In this study of nanocomposite polymer electrolyte, Poly vinyl chloride, (PVC), was used as the host polymer and lithium (bis) trifluoromethanesulfonimide, (LiTFSI), as the doping salt with Aluminium Oxide, AI2O3 as the filler. PVC and salt in different weight % concentrations dissolved in Tetrahydrofuran, (THF). The influence of different concentration of salt on PVC gave rise to different values of ionic conductivity. The best conductivity concentration of PVC-LiTFSI was mixed with various weight % of Aluminium Oxide in nanosize to form PVC-UTFSI-AI2O3 nanocomposite polymer electrolytes. The ionic conductivity of nanocomposite polymer electrolyte was determined by impedance spectroscopy. Temperature dependence of conductivity behavior of the best conducting PVC-LiTFSI and PVC-LiTFSI-AI2O3 samples was also investigated to obtain the values of activation energy (Ea) of conduction. |
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Student Project |
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Sulaiman, Muhamad Kamarul Azman |
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Sulaiman, Muhamad Kamarul Azman |
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Sulaiman, Muhamad Kamarul Azman |
title |
Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman. |
title_short |
Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman. |
title_full |
Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman. |
title_fullStr |
Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman. |
title_full_unstemmed |
Electrical characterizations of PVC-LiTFSI-AI2O3 (99% Gamma 40-80 nm) polymer electrolyte / Muhamad Kamarul Azman Sulaiman. |
title_sort |
electrical characterizations of pvc-litfsi-ai2o3 (99% gamma 40-80 nm) polymer electrolyte / muhamad kamarul azman sulaiman. |
publishDate |
2008 |
url |
http://ir.uitm.edu.my/id/eprint/46886/1/46886.pdf http://ir.uitm.edu.my/id/eprint/46886/ |
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1702172654465712128 |
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13.159267 |