An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte

Searching for alternative materials that have biodegradable properties is one of the efforts to increase knowledge and green technology that contributes to the reduction of waste produced from electronics. A biodegradable biopolymer electrolyte system based on polyvinyl alcohol-chitosan blend is pre...

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Main Authors: Aziz, M. F., Shamsuri, N. A., Hamsan, M. H., Yusof, Y. M., Azam, M. A., Aziz, Shujahadeen B., Rusdi, Hashlina, Kadir, M. F. Z., Shukur, M. F.
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Published: Wiley 2024
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Online Access:http://eprints.um.edu.my/44313/
https://doi.org/10.1002/app.54781
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spelling my.um.eprints.443132024-07-05T03:43:28Z http://eprints.um.edu.my/44313/ An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte Aziz, M. F. Shamsuri, N. A. Hamsan, M. H. Yusof, Y. M. Azam, M. A. Aziz, Shujahadeen B. Rusdi, Hashlina Kadir, M. F. Z. Shukur, M. F. TD Environmental technology. Sanitary engineering TP Chemical technology Searching for alternative materials that have biodegradable properties is one of the efforts to increase knowledge and green technology that contributes to the reduction of waste produced from electronics. A biodegradable biopolymer electrolyte system based on polyvinyl alcohol-chitosan blend is prepared using an easy and affordable method called solution cast technique. Lithium acetate (LiOAc) and ethylene carbonate (EC) are incorporated as charge carrier and plasticizing agent. The plasticization effect of EC concentrations on physical structure has been investigated and reported. The real and imaginary parts of dielectric permittivity confirmed that the highest dielectric constant and loss values are recorded at low-frequencies regions. A disruption in the crystalline region of the film can be observed with the existence of LiOAc and EC. The inclusion of EC promotes the ions dissociation thus enhanced the amorphous region of the electrolytes which is beneficial for ionic conduction. Linear sweep voltammetry analysis revealed that the highest conducting electrolyte is electrochemically stable up to 1.82 V. No redox peaks are shown in the cyclic voltammetry of the fabricated supercapacitor. The supercapacitor showed a great performance with average specific capacitance of 130 F g(-1). Wiley 2024 Article PeerReviewed Aziz, M. F. and Shamsuri, N. A. and Hamsan, M. H. and Yusof, Y. M. and Azam, M. A. and Aziz, Shujahadeen B. and Rusdi, Hashlina and Kadir, M. F. Z. and Shukur, M. F. (2024) An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte. Journal of Applied Polymer Science, 141 (2). ISSN 0021-8995, DOI https://doi.org/10.1002/app.54781 <https://doi.org/10.1002/app.54781>. https://doi.org/10.1002/app.54781 10.1002/app.54781
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TD Environmental technology. Sanitary engineering
TP Chemical technology
spellingShingle TD Environmental technology. Sanitary engineering
TP Chemical technology
Aziz, M. F.
Shamsuri, N. A.
Hamsan, M. H.
Yusof, Y. M.
Azam, M. A.
Aziz, Shujahadeen B.
Rusdi, Hashlina
Kadir, M. F. Z.
Shukur, M. F.
An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte
description Searching for alternative materials that have biodegradable properties is one of the efforts to increase knowledge and green technology that contributes to the reduction of waste produced from electronics. A biodegradable biopolymer electrolyte system based on polyvinyl alcohol-chitosan blend is prepared using an easy and affordable method called solution cast technique. Lithium acetate (LiOAc) and ethylene carbonate (EC) are incorporated as charge carrier and plasticizing agent. The plasticization effect of EC concentrations on physical structure has been investigated and reported. The real and imaginary parts of dielectric permittivity confirmed that the highest dielectric constant and loss values are recorded at low-frequencies regions. A disruption in the crystalline region of the film can be observed with the existence of LiOAc and EC. The inclusion of EC promotes the ions dissociation thus enhanced the amorphous region of the electrolytes which is beneficial for ionic conduction. Linear sweep voltammetry analysis revealed that the highest conducting electrolyte is electrochemically stable up to 1.82 V. No redox peaks are shown in the cyclic voltammetry of the fabricated supercapacitor. The supercapacitor showed a great performance with average specific capacitance of 130 F g(-1).
format Article
author Aziz, M. F.
Shamsuri, N. A.
Hamsan, M. H.
Yusof, Y. M.
Azam, M. A.
Aziz, Shujahadeen B.
Rusdi, Hashlina
Kadir, M. F. Z.
Shukur, M. F.
author_facet Aziz, M. F.
Shamsuri, N. A.
Hamsan, M. H.
Yusof, Y. M.
Azam, M. A.
Aziz, Shujahadeen B.
Rusdi, Hashlina
Kadir, M. F. Z.
Shukur, M. F.
author_sort Aziz, M. F.
title An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte
title_short An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte
title_full An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte
title_fullStr An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte
title_full_unstemmed An elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte
title_sort elucidation of symmetric supercapacitor with crustacean-based polymer blend electrolyte
publisher Wiley
publishDate 2024
url http://eprints.um.edu.my/44313/
https://doi.org/10.1002/app.54781
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score 13.188404