Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan
In this study, 30% methyl grafted natural rubber (MG-30) containing fixed amount of lithium trifluoromethanesulfonate (LiCF₃SO₃) or LiTf salt and ethylene carbonate, EC and different concentration of Si0₂ nanofiller were prepared using the solution cast technique. Impedance spectroscopy technique wa...
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2008
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my.uitm.ir.483262022-07-05T02:43:16Z https://ir.uitm.edu.my/id/eprint/48326/ Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan Kamisan, Ainnur-Sherene Descriptive and experimental mechanics Electricity Electric current (General) In this study, 30% methyl grafted natural rubber (MG-30) containing fixed amount of lithium trifluoromethanesulfonate (LiCF₃SO₃) or LiTf salt and ethylene carbonate, EC and different concentration of Si0₂ nanofiller were prepared using the solution cast technique. Impedance spectroscopy technique was used to determine the electrical conductivity of the samples. The optimum electrical conductivity obtained was 2.36x10⁻⁴ S cm⁻¹ with the composition of 35wt% MG-30:65wt% LiTf:65wt% EC:1.5wt% Si02. The conductivity was calculated using the bulk resistance value what was obtained from the complex impedance plot in the frequency range from 100Hz to 1MHz. The ionic transference number obtained from the Wagner's polarization method is 0.986 which indicates the samples are ionic conductors. 2008 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/48326/1/48326.pdf Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan. (2008) [Student Project] (Unpublished) |
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Descriptive and experimental mechanics Electricity Electric current (General) Kamisan, Ainnur-Sherene Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan |
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In this study, 30% methyl grafted natural rubber (MG-30) containing fixed amount of lithium trifluoromethanesulfonate (LiCF₃SO₃) or LiTf salt and ethylene carbonate, EC and different concentration of Si0₂ nanofiller were prepared using the solution cast technique. Impedance spectroscopy technique was used to determine the electrical conductivity of the samples. The optimum electrical conductivity obtained was 2.36x10⁻⁴ S cm⁻¹ with the composition of 35wt% MG-30:65wt% LiTf:65wt% EC:1.5wt% Si02. The conductivity was calculated using the bulk resistance value what was obtained from the complex impedance plot in the frequency range from 100Hz to 1MHz. The ionic transference number obtained from the Wagner's polarization method is 0.986 which indicates the samples are ionic conductors. |
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Student Project |
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Kamisan, Ainnur-Sherene |
author_facet |
Kamisan, Ainnur-Sherene |
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Kamisan, Ainnur-Sherene |
title |
Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan |
title_short |
Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan |
title_full |
Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan |
title_fullStr |
Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan |
title_full_unstemmed |
Electrical properties of MG-30/nanofiller-based polymer electrolytes for lithium batteries / Ainnur-Sherene Kamisan |
title_sort |
electrical properties of mg-30/nanofiller-based polymer electrolytes for lithium batteries / ainnur-sherene kamisan |
publishDate |
2008 |
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https://ir.uitm.edu.my/id/eprint/48326/1/48326.pdf https://ir.uitm.edu.my/id/eprint/48326/ |
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1738513914743750656 |
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13.211869 |