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Blending and Characteristics of Electrochemical Double-Layer Capacitor Device Assembled from Plasticized Proton Ion Conducting Chitosan:Dextran:NH(4)PF(6) Polymer Electrolytes

This research paper investigates the electrochemical performance of chitosan (CS): dextran (DX) polymer-blend electrolytes (PBEs), which have been developed successfully with the incorporation of ammonium hexafluorophosphate (NH(4)PF(6)). X-ray diffraction (XRD) analysis indicates that the plasticiz...

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Autores principales: B. Aziz, Shujahadeen, Brza, Mohamad A., Brevik, Iver, Hafiz, Muhamad H., Asnawi, Ahmad S.F.M., Yusof, Yuhanees M., Abdulwahid, Rebar T., 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/PMC7570255/
https://www.ncbi.nlm.nih.gov/pubmed/32947829
http://dx.doi.org/10.3390/polym12092103
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author B. Aziz, Shujahadeen
Brza, Mohamad A.
Brevik, Iver
Hafiz, Muhamad H.
Asnawi, Ahmad S.F.M.
Yusof, Yuhanees M.
Abdulwahid, Rebar T.
Kadir, Mohd F.Z.
author_facet B. Aziz, Shujahadeen
Brza, Mohamad A.
Brevik, Iver
Hafiz, Muhamad H.
Asnawi, Ahmad S.F.M.
Yusof, Yuhanees M.
Abdulwahid, Rebar T.
Kadir, Mohd F.Z.
author_sort B. Aziz, Shujahadeen
collection PubMed
description This research paper investigates the electrochemical performance of chitosan (CS): dextran (DX) polymer-blend electrolytes (PBEs), which have been developed successfully with the incorporation of ammonium hexafluorophosphate (NH(4)PF(6)). X-ray diffraction (XRD) analysis indicates that the plasticized electrolyte system with the highest value of direct current (DC) ionic conductivity is the most amorphous system. The glycerol addition increased the amorphous phase and improved the ionic dissociation, which contributed to the enhancement of the fabricated device’s performance. Transference number analysis (TNM) has shown that the charge transport process is mainly by ions rather than electrons, as t(ion) = 0.957. The CS:DX:NH(4)PF(6) system was found to decompose as the voltage goes beyond 1.5 V. Linear sweep voltammetry (LSV) revealed that the potential window for the most plasticized system is 1.5 V. The fabricated electrochemical double-layer capacitor (EDLC) was analyzed with cyclic voltammetry (CV) and charge-discharge analysis. The results from CV verify that the EDLC in this work holds the characteristics of a capacitor. The imperative parameters of the fabricated EDLC such as specific capacitance and internal resistance were found to be 102.9 F/g and 30 Ω, respectively. The energy stored and power delivered by the EDLC were 11.6 Wh/kg and 2741.2 W/kg, respectively.
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spelling pubmed-75702552020-10-28 Blending and Characteristics of Electrochemical Double-Layer Capacitor Device Assembled from Plasticized Proton Ion Conducting Chitosan:Dextran:NH(4)PF(6) Polymer Electrolytes B. Aziz, Shujahadeen Brza, Mohamad A. Brevik, Iver Hafiz, Muhamad H. Asnawi, Ahmad S.F.M. Yusof, Yuhanees M. Abdulwahid, Rebar T. Kadir, Mohd F.Z. Polymers (Basel) Article This research paper investigates the electrochemical performance of chitosan (CS): dextran (DX) polymer-blend electrolytes (PBEs), which have been developed successfully with the incorporation of ammonium hexafluorophosphate (NH(4)PF(6)). X-ray diffraction (XRD) analysis indicates that the plasticized electrolyte system with the highest value of direct current (DC) ionic conductivity is the most amorphous system. The glycerol addition increased the amorphous phase and improved the ionic dissociation, which contributed to the enhancement of the fabricated device’s performance. Transference number analysis (TNM) has shown that the charge transport process is mainly by ions rather than electrons, as t(ion) = 0.957. The CS:DX:NH(4)PF(6) system was found to decompose as the voltage goes beyond 1.5 V. Linear sweep voltammetry (LSV) revealed that the potential window for the most plasticized system is 1.5 V. The fabricated electrochemical double-layer capacitor (EDLC) was analyzed with cyclic voltammetry (CV) and charge-discharge analysis. The results from CV verify that the EDLC in this work holds the characteristics of a capacitor. The imperative parameters of the fabricated EDLC such as specific capacitance and internal resistance were found to be 102.9 F/g and 30 Ω, respectively. The energy stored and power delivered by the EDLC were 11.6 Wh/kg and 2741.2 W/kg, respectively. MDPI 2020-09-16 /pmc/articles/PMC7570255/ /pubmed/32947829 http://dx.doi.org/10.3390/polym12092103 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
B. Aziz, Shujahadeen
Brza, Mohamad A.
Brevik, Iver
Hafiz, Muhamad H.
Asnawi, Ahmad S.F.M.
Yusof, Yuhanees M.
Abdulwahid, Rebar T.
Kadir, Mohd F.Z.
Blending and Characteristics of Electrochemical Double-Layer Capacitor Device Assembled from Plasticized Proton Ion Conducting Chitosan:Dextran:NH(4)PF(6) Polymer Electrolytes
title Blending and Characteristics of Electrochemical Double-Layer Capacitor Device Assembled from Plasticized Proton Ion Conducting Chitosan:Dextran:NH(4)PF(6) Polymer Electrolytes
title_full Blending and Characteristics of Electrochemical Double-Layer Capacitor Device Assembled from Plasticized Proton Ion Conducting Chitosan:Dextran:NH(4)PF(6) Polymer Electrolytes
title_fullStr Blending and Characteristics of Electrochemical Double-Layer Capacitor Device Assembled from Plasticized Proton Ion Conducting Chitosan:Dextran:NH(4)PF(6) Polymer Electrolytes
title_full_unstemmed Blending and Characteristics of Electrochemical Double-Layer Capacitor Device Assembled from Plasticized Proton Ion Conducting Chitosan:Dextran:NH(4)PF(6) Polymer Electrolytes
title_short Blending and Characteristics of Electrochemical Double-Layer Capacitor Device Assembled from Plasticized Proton Ion Conducting Chitosan:Dextran:NH(4)PF(6) Polymer Electrolytes
title_sort blending and characteristics of electrochemical double-layer capacitor device assembled from plasticized proton ion conducting chitosan:dextran:nh(4)pf(6) polymer electrolytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7570255/
https://www.ncbi.nlm.nih.gov/pubmed/32947829
http://dx.doi.org/10.3390/polym12092103
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