UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]

The goal of developing sustainable and environmentally friendly energy storage solutions can be explored by combining biopolymers with plasticizers. This is a crucial development in ensuring the desired electrical and structural properties in biopolymer electrolytes. In this current study, the plast...

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Published in:Malaysian Journal of Analytical Sciences
Main Author: Syiarizzad R.N.Q.A.R.; Balian S.R.C.; Hussain N.F.S.; Shaharuddin N.A.A.; Abidin S.Z.Z.
Format: Article
Language:English
Published: Malaysian Society of Analytical Sciences 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85216222398&partnerID=40&md5=397402410a3876d2922e0d4bd36910ec
id 2-s2.0-85216222398
spelling 2-s2.0-85216222398
Syiarizzad R.N.Q.A.R.; Balian S.R.C.; Hussain N.F.S.; Shaharuddin N.A.A.; Abidin S.Z.Z.
UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]
2024
Malaysian Journal of Analytical Sciences
28
6

https://www.scopus.com/inward/record.uri?eid=2-s2.0-85216222398&partnerID=40&md5=397402410a3876d2922e0d4bd36910ec
The goal of developing sustainable and environmentally friendly energy storage solutions can be explored by combining biopolymers with plasticizers. This is a crucial development in ensuring the desired electrical and structural properties in biopolymer electrolytes. In this current study, the plasticizer agarose/NaNO3 biopolymer electrolyte thin film has been carried out with the addition of glycerol as a plasticizer using a solution casting technique. The effect of the addition of glycerol on the electrical and structural properties of the plasticized biopolymer electrolyte thin film was performed using electrochemical impedance spectroscopy (EIS) and X-ray diffraction (XRD). The plasticized biopolymer electrolyte thin film with 20wt.% of glycerol had the highest amorphous region, resulting in the highest ionic conductivity of 4.32×10-4 S cm-1. These results were confirmed by XRD and EIS analysis. The plasticizer agarose/NaNO3-glycerol biopolymer electrolyte could be used in sodium-ion batteries. © 2024, Malaysian Society of Analytical Sciences. All rights reserved.
Malaysian Society of Analytical Sciences
13942506
English
Article

author Syiarizzad R.N.Q.A.R.; Balian S.R.C.; Hussain N.F.S.; Shaharuddin N.A.A.; Abidin S.Z.Z.
spellingShingle Syiarizzad R.N.Q.A.R.; Balian S.R.C.; Hussain N.F.S.; Shaharuddin N.A.A.; Abidin S.Z.Z.
UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]
author_facet Syiarizzad R.N.Q.A.R.; Balian S.R.C.; Hussain N.F.S.; Shaharuddin N.A.A.; Abidin S.Z.Z.
author_sort Syiarizzad R.N.Q.A.R.; Balian S.R.C.; Hussain N.F.S.; Shaharuddin N.A.A.; Abidin S.Z.Z.
title UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]
title_short UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]
title_full UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]
title_fullStr UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]
title_full_unstemmed UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]
title_sort UNDERSTANDING THE EFFECTS OF GLYCEROL ON THE ELECTRICALAND STRUCTURAL PROPERTIES OF PLASTICIZED AGAROSE/NANO3 BIOPOLYMER ELECTROLYTES; [Memahami Kesan Gliserol Terhadap Sifat Elektrik dan Struktural Elektrolit Biopolimer Agarose/NaNO3 yang Diperplastikan]
publishDate 2024
container_title Malaysian Journal of Analytical Sciences
container_volume 28
container_issue 6
doi_str_mv
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85216222398&partnerID=40&md5=397402410a3876d2922e0d4bd36910ec
description The goal of developing sustainable and environmentally friendly energy storage solutions can be explored by combining biopolymers with plasticizers. This is a crucial development in ensuring the desired electrical and structural properties in biopolymer electrolytes. In this current study, the plasticizer agarose/NaNO3 biopolymer electrolyte thin film has been carried out with the addition of glycerol as a plasticizer using a solution casting technique. The effect of the addition of glycerol on the electrical and structural properties of the plasticized biopolymer electrolyte thin film was performed using electrochemical impedance spectroscopy (EIS) and X-ray diffraction (XRD). The plasticized biopolymer electrolyte thin film with 20wt.% of glycerol had the highest amorphous region, resulting in the highest ionic conductivity of 4.32×10-4 S cm-1. These results were confirmed by XRD and EIS analysis. The plasticizer agarose/NaNO3-glycerol biopolymer electrolyte could be used in sodium-ion batteries. © 2024, Malaysian Society of Analytical Sciences. All rights reserved.
publisher Malaysian Society of Analytical Sciences
issn 13942506
language English
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