Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature

The limiting molar conductivity behaviour (Λo) of κcar/PEO/NaClO4 blend liquid electrolyte systems in aqueous solution at 20 and 25 ºC was studied. The ionic conductivity (κ) of the electrolyte system was measured using Mettler Toledo Seven Compact S230 AC conductivity meter. The κ of the electrolyt...

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Published in:Asian Journal of Chemistry
Main Author: Ramli R.Y.B.; Hanibah H.; Nor Hashim N.Z.B.; Shamsudin I.J.B.
Format: Article
Language:English
Published: Asian Publication Corporation 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85197065719&doi=10.14233%2fajchem.2024.31576&partnerID=40&md5=81c67f29a980f59e1824b15678b7c6ea
id 2-s2.0-85197065719
spelling 2-s2.0-85197065719
Ramli R.Y.B.; Hanibah H.; Nor Hashim N.Z.B.; Shamsudin I.J.B.
Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature
2024
Asian Journal of Chemistry
36
6
10.14233/ajchem.2024.31576
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85197065719&doi=10.14233%2fajchem.2024.31576&partnerID=40&md5=81c67f29a980f59e1824b15678b7c6ea
The limiting molar conductivity behaviour (Λo) of κcar/PEO/NaClO4 blend liquid electrolyte systems in aqueous solution at 20 and 25 ºC was studied. The ionic conductivity (κ) of the electrolyte system was measured using Mettler Toledo Seven Compact S230 AC conductivity meter. The κ of the electrolyte was measured at a range of salt concentration, Csalt (10-5-10-8) and at different polymer concentration, Cpoly (0.001-0.003 g cm-3). The data analysis showed a directly proportion relation between Λo and Cpoly, which indicates a decrease in total salt dissociation (α) and consequently, an increase in the formation of ion pairing occurs due to the increase in salt dissociation and less dynamic volume. In addition, a direct relation between Λo and temperature was also observed. An increase in temperature causes a decrease in the total ion pairing while increase the ion movement. © 2024 Asian Publication Corporation. All rights reserved.
Asian Publication Corporation
9707077
English
Article
All Open Access; Gold Open Access
author Ramli R.Y.B.; Hanibah H.; Nor Hashim N.Z.B.; Shamsudin I.J.B.
spellingShingle Ramli R.Y.B.; Hanibah H.; Nor Hashim N.Z.B.; Shamsudin I.J.B.
Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature
author_facet Ramli R.Y.B.; Hanibah H.; Nor Hashim N.Z.B.; Shamsudin I.J.B.
author_sort Ramli R.Y.B.; Hanibah H.; Nor Hashim N.Z.B.; Shamsudin I.J.B.
title Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature
title_short Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature
title_full Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature
title_fullStr Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature
title_full_unstemmed Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature
title_sort Limiting Molar Conductivity Dynamics of κcar/PEO/NaClO4 Aqueous Electrolyte System at Different Temperature
publishDate 2024
container_title Asian Journal of Chemistry
container_volume 36
container_issue 6
doi_str_mv 10.14233/ajchem.2024.31576
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85197065719&doi=10.14233%2fajchem.2024.31576&partnerID=40&md5=81c67f29a980f59e1824b15678b7c6ea
description The limiting molar conductivity behaviour (Λo) of κcar/PEO/NaClO4 blend liquid electrolyte systems in aqueous solution at 20 and 25 ºC was studied. The ionic conductivity (κ) of the electrolyte system was measured using Mettler Toledo Seven Compact S230 AC conductivity meter. The κ of the electrolyte was measured at a range of salt concentration, Csalt (10-5-10-8) and at different polymer concentration, Cpoly (0.001-0.003 g cm-3). The data analysis showed a directly proportion relation between Λo and Cpoly, which indicates a decrease in total salt dissociation (α) and consequently, an increase in the formation of ion pairing occurs due to the increase in salt dissociation and less dynamic volume. In addition, a direct relation between Λo and temperature was also observed. An increase in temperature causes a decrease in the total ion pairing while increase the ion movement. © 2024 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
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