Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature
The present research investigates the behaviour of the limiting molar conductivity (Λo) of ENR-50/LiClO4 in a mixed solvent system comprising tetrahydrofuran (THF) and acetonitrile (ACN) at ambient temperature. The study uses the power law, to determine the Λo value of ENR-50/LiClO4/THF:ACN at a spe...
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2023
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2-s2.0-85184742900 Tajudin M.A.M.; Hanibah H.; Darji D. Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature 2023 Asian Journal of Chemistry 35 12 10.14233/ajchem.2023.30627 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85184742900&doi=10.14233%2fajchem.2023.30627&partnerID=40&md5=dbb5a081de92c297d9ab743287a7a219 The present research investigates the behaviour of the limiting molar conductivity (Λo) of ENR-50/LiClO4 in a mixed solvent system comprising tetrahydrofuran (THF) and acetonitrile (ACN) at ambient temperature. The study uses the power law, to determine the Λo value of ENR-50/LiClO4/THF:ACN at a specific reference salt concentration. The ENR-50/LiClO4 electrolyte system was prepared with a fixed THF:ACN ratio of 8:2, at different ENR-50 concentration of range between 0.001-0.003 g/cm3. The correlation values obtained for the three polymer concentrations ranged from 0.9959 to 0.9966. Regression analysis revealed that as the polymer concentration increases, the Λo decreases, indicating an inverse relationship which suggesting an enhanced ion dissociation due to an increase in total free-moving ions within the liquid polymer electrolyte system. The characterization of ENR-50/LiClO4/THF:ACN was verified through ATR-FTIR spectroscopy, confirming the ion dipole interaction between the C-O-C group of ENR-50 and Li ions. © 2023 Asian Publication Corporation. All rights reserved. Asian Publication Corporation 9707077 English Article All Open Access; Gold Open Access |
author |
Tajudin M.A.M.; Hanibah H.; Darji D. |
spellingShingle |
Tajudin M.A.M.; Hanibah H.; Darji D. Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature |
author_facet |
Tajudin M.A.M.; Hanibah H.; Darji D. |
author_sort |
Tajudin M.A.M.; Hanibah H.; Darji D. |
title |
Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature |
title_short |
Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature |
title_full |
Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature |
title_fullStr |
Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature |
title_full_unstemmed |
Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature |
title_sort |
Limiting Molar Conductivity Behaviour of ENR-50 Electrolyte in Mixed Solvent System at Ambient Temperature |
publishDate |
2023 |
container_title |
Asian Journal of Chemistry |
container_volume |
35 |
container_issue |
12 |
doi_str_mv |
10.14233/ajchem.2023.30627 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85184742900&doi=10.14233%2fajchem.2023.30627&partnerID=40&md5=dbb5a081de92c297d9ab743287a7a219 |
description |
The present research investigates the behaviour of the limiting molar conductivity (Λo) of ENR-50/LiClO4 in a mixed solvent system comprising tetrahydrofuran (THF) and acetonitrile (ACN) at ambient temperature. The study uses the power law, to determine the Λo value of ENR-50/LiClO4/THF:ACN at a specific reference salt concentration. The ENR-50/LiClO4 electrolyte system was prepared with a fixed THF:ACN ratio of 8:2, at different ENR-50 concentration of range between 0.001-0.003 g/cm3. The correlation values obtained for the three polymer concentrations ranged from 0.9959 to 0.9966. Regression analysis revealed that as the polymer concentration increases, the Λo decreases, indicating an inverse relationship which suggesting an enhanced ion dissociation due to an increase in total free-moving ions within the liquid polymer electrolyte system. The characterization of ENR-50/LiClO4/THF:ACN was verified through ATR-FTIR spectroscopy, confirming the ion dipole interaction between the C-O-C group of ENR-50 and Li ions. © 2023 Asian Publication Corporation. All rights reserved. |
publisher |
Asian Publication Corporation |
issn |
9707077 |
language |
English |
format |
Article |
accesstype |
All Open Access; Gold Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1809677584982605824 |