Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli
In this study, polymer electrolytes consist of methyl cellulose (MC) and different wt% of potassium hydroxide (KOH) salt were prepared using a solution cast technique. The optimum percentage of salt and plasticizer that gave the highest value of electrical conductivity of the sample was determined....
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2009
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my.uitm.ir.487022021-07-22T08:43:57Z http://ir.uitm.edu.my/id/eprint/48702/ Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli Aminuddin Rosli, Nurul Hazwani Electrochemistry. Electrolysis Electrolytes, electrolyte solutions In this study, polymer electrolytes consist of methyl cellulose (MC) and different wt% of potassium hydroxide (KOH) salt were prepared using a solution cast technique. The optimum percentage of salt and plasticizer that gave the highest value of electrical conductivity of the sample was determined. Impedance spectroscopy technique was carried out in order to determine the electrical conductivity value. The highest conductivity of unplasticized sample was 5.64* 10"6 S/cm for MC-KOH (70:30). Meanwhile, the highest conductivity for plasticized sample was 3.58* 10"3 S/cm for MC-KOH-EC (46.67:20:33.33). These conductivities were calculated using the bulk resistance value obtained from the impedance plot in frequency range between 100 Hz and 1 MHz. For application in the battery system, the highest conducting of plasticized sample was used as the electrolyte. The battery was evaluated using the open-circuit voltage (OCV) and charge-discharge characteristics. 2009 Student Project NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/48702/1/48702.pdf ID48702 Aminuddin Rosli, Nurul Hazwani (2009) Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli. [Student Project] (Unpublished) |
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Electrochemistry. Electrolysis Electrolytes, electrolyte solutions Aminuddin Rosli, Nurul Hazwani Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli |
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In this study, polymer electrolytes consist of methyl cellulose (MC) and different wt% of potassium hydroxide (KOH) salt were prepared using a solution cast technique. The optimum percentage of salt and plasticizer that gave the highest value of electrical conductivity of the sample was determined. Impedance spectroscopy technique was carried out in order to determine the electrical conductivity value. The highest conductivity of unplasticized sample was 5.64* 10"6 S/cm for MC-KOH (70:30). Meanwhile, the highest conductivity for plasticized sample was 3.58* 10"3 S/cm for MC-KOH-EC (46.67:20:33.33). These conductivities were calculated using the bulk resistance value obtained from the impedance plot in frequency range between 100 Hz and 1 MHz. For application in the battery system, the highest conducting of plasticized sample was used as the electrolyte. The battery was evaluated using the open-circuit voltage (OCV) and charge-discharge characteristics. |
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Student Project |
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Aminuddin Rosli, Nurul Hazwani |
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Aminuddin Rosli, Nurul Hazwani |
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Aminuddin Rosli, Nurul Hazwani |
title |
Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli |
title_short |
Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli |
title_full |
Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli |
title_fullStr |
Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli |
title_full_unstemmed |
Alkaline polymer batteries: electrolytes preparation and battery characterization / Nurul Hazwani Aminuddin Rosli |
title_sort |
alkaline polymer batteries: electrolytes preparation and battery characterization / nurul hazwani aminuddin rosli |
publishDate |
2009 |
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http://ir.uitm.edu.my/id/eprint/48702/1/48702.pdf http://ir.uitm.edu.my/id/eprint/48702/ |
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1706960430845394944 |
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