Cargando…

The Study of Plasticized Amorphous Biopolymer Blend Electrolytes Based on Polyvinyl Alcohol (PVA): Chitosan with High Ion Conductivity for Energy Storage Electrical Double-Layer Capacitors (EDLC) Device Application

In this study, plasticized films of polyvinyl alcohol (PVA): chitosan (CS) based electrolyte impregnated with ammonium thiocyanate (NH(4)SCN) were successfully prepared using a solution-casting technique. The structural features of the electrolyte films were investigated through the X-ray diffractio...

Descripción completa

Detalles Bibliográficos
Autores principales: Aziz, Shujahadeen B., M. Hadi, Jihad, Dannoun, Elham M. A., Abdulwahid, Rebar T., R. Saeed, Salah, Shahab Marf, Ayub, Karim, Wrya O., Kadir, Mohd F.Z.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7565711/
https://www.ncbi.nlm.nih.gov/pubmed/32867191
http://dx.doi.org/10.3390/polym12091938
_version_ 1783595991981621248
author Aziz, Shujahadeen B.
M. Hadi, Jihad
Dannoun, Elham M. A.
Abdulwahid, Rebar T.
R. Saeed, Salah
Shahab Marf, Ayub
Karim, Wrya O.
Kadir, Mohd F.Z.
author_facet Aziz, Shujahadeen B.
M. Hadi, Jihad
Dannoun, Elham M. A.
Abdulwahid, Rebar T.
R. Saeed, Salah
Shahab Marf, Ayub
Karim, Wrya O.
Kadir, Mohd F.Z.
author_sort Aziz, Shujahadeen B.
collection PubMed
description In this study, plasticized films of polyvinyl alcohol (PVA): chitosan (CS) based electrolyte impregnated with ammonium thiocyanate (NH(4)SCN) were successfully prepared using a solution-casting technique. The structural features of the electrolyte films were investigated through the X-ray diffraction (XRD) pattern. The enrichment of the amorphous phase with increasing glycerol concentration was confirmed by observing broad humps. The electrical impedance spectroscopy (EIS) portrays the improvement of ionic conductivity from 10(−5) S/cm to 10(−3) S/cm upon the addition of plasticizer. The electrolytes incorporated with 28 wt.% and 42 wt.% of glycerol were observed to be mainly ionic conductor as the ionic transference number measurement (TNM) was found to be 0.97 and 0.989, respectively. The linear sweep voltammetry (LSV) investigation indicates that the maximum conducting sample is stable up to 2 V. An electrolyte with the highest conductivity was used to make an energy storage electrical double-layer capacitor (EDLC) device. The cyclic voltammetry (CV) plot depicts no distinguishable peaks in the polarization curve, which means no redox reaction has occurred at the electrode/electrolyte interface. The fabricated EDLC displays the initial specific capacitance, equivalent series resistance, energy density, and power density of 35.5 F/g, 65 Ω, 4.9 Wh/kg, and 399 W/kg, respectively.
format Online
Article
Text
id pubmed-7565711
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75657112020-10-28 The Study of Plasticized Amorphous Biopolymer Blend Electrolytes Based on Polyvinyl Alcohol (PVA): Chitosan with High Ion Conductivity for Energy Storage Electrical Double-Layer Capacitors (EDLC) Device Application Aziz, Shujahadeen B. M. Hadi, Jihad Dannoun, Elham M. A. Abdulwahid, Rebar T. R. Saeed, Salah Shahab Marf, Ayub Karim, Wrya O. Kadir, Mohd F.Z. Polymers (Basel) Article In this study, plasticized films of polyvinyl alcohol (PVA): chitosan (CS) based electrolyte impregnated with ammonium thiocyanate (NH(4)SCN) were successfully prepared using a solution-casting technique. The structural features of the electrolyte films were investigated through the X-ray diffraction (XRD) pattern. The enrichment of the amorphous phase with increasing glycerol concentration was confirmed by observing broad humps. The electrical impedance spectroscopy (EIS) portrays the improvement of ionic conductivity from 10(−5) S/cm to 10(−3) S/cm upon the addition of plasticizer. The electrolytes incorporated with 28 wt.% and 42 wt.% of glycerol were observed to be mainly ionic conductor as the ionic transference number measurement (TNM) was found to be 0.97 and 0.989, respectively. The linear sweep voltammetry (LSV) investigation indicates that the maximum conducting sample is stable up to 2 V. An electrolyte with the highest conductivity was used to make an energy storage electrical double-layer capacitor (EDLC) device. The cyclic voltammetry (CV) plot depicts no distinguishable peaks in the polarization curve, which means no redox reaction has occurred at the electrode/electrolyte interface. The fabricated EDLC displays the initial specific capacitance, equivalent series resistance, energy density, and power density of 35.5 F/g, 65 Ω, 4.9 Wh/kg, and 399 W/kg, respectively. MDPI 2020-08-27 /pmc/articles/PMC7565711/ /pubmed/32867191 http://dx.doi.org/10.3390/polym12091938 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Aziz, Shujahadeen B.
M. Hadi, Jihad
Dannoun, Elham M. A.
Abdulwahid, Rebar T.
R. Saeed, Salah
Shahab Marf, Ayub
Karim, Wrya O.
Kadir, Mohd F.Z.
The Study of Plasticized Amorphous Biopolymer Blend Electrolytes Based on Polyvinyl Alcohol (PVA): Chitosan with High Ion Conductivity for Energy Storage Electrical Double-Layer Capacitors (EDLC) Device Application
title The Study of Plasticized Amorphous Biopolymer Blend Electrolytes Based on Polyvinyl Alcohol (PVA): Chitosan with High Ion Conductivity for Energy Storage Electrical Double-Layer Capacitors (EDLC) Device Application
title_full The Study of Plasticized Amorphous Biopolymer Blend Electrolytes Based on Polyvinyl Alcohol (PVA): Chitosan with High Ion Conductivity for Energy Storage Electrical Double-Layer Capacitors (EDLC) Device Application
title_fullStr The Study of Plasticized Amorphous Biopolymer Blend Electrolytes Based on Polyvinyl Alcohol (PVA): Chitosan with High Ion Conductivity for Energy Storage Electrical Double-Layer Capacitors (EDLC) Device Application
title_full_unstemmed The Study of Plasticized Amorphous Biopolymer Blend Electrolytes Based on Polyvinyl Alcohol (PVA): Chitosan with High Ion Conductivity for Energy Storage Electrical Double-Layer Capacitors (EDLC) Device Application
title_short The Study of Plasticized Amorphous Biopolymer Blend Electrolytes Based on Polyvinyl Alcohol (PVA): Chitosan with High Ion Conductivity for Energy Storage Electrical Double-Layer Capacitors (EDLC) Device Application
title_sort study of plasticized amorphous biopolymer blend electrolytes based on polyvinyl alcohol (pva): chitosan with high ion conductivity for energy storage electrical double-layer capacitors (edlc) device application
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7565711/
https://www.ncbi.nlm.nih.gov/pubmed/32867191
http://dx.doi.org/10.3390/polym12091938
work_keys_str_mv AT azizshujahadeenb thestudyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT mhadijihad thestudyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT dannounelhamma thestudyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT abdulwahidrebart thestudyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT rsaeedsalah thestudyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT shahabmarfayub thestudyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT karimwryao thestudyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT kadirmohdfz thestudyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT azizshujahadeenb studyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT mhadijihad studyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT dannounelhamma studyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT abdulwahidrebart studyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT rsaeedsalah studyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT shahabmarfayub studyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT karimwryao studyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication
AT kadirmohdfz studyofplasticizedamorphousbiopolymerblendelectrolytesbasedonpolyvinylalcoholpvachitosanwithhighionconductivityforenergystorageelectricaldoublelayercapacitorsedlcdeviceapplication