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Multifunction Web-like Polymeric Network Bacterial Cellulose Derived from SCOBY as Both Electrodes and Electrolytes for Pliable and Low-Cost Supercapacitor
In this work, bacterial cellulose (BC)-based polymer derived from a symbiotic culture of bacteria and yeast (SCOBY) are optimized as both electrodes and electrolytes to fabricate a flexible and free-standing supercapacitor. BC is a multifunction and versatile polymer. Montmorillonite (MMT) and sodiu...
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9371068/ https://www.ncbi.nlm.nih.gov/pubmed/35956709 http://dx.doi.org/10.3390/polym14153196 |
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author | Hamsan, Muhamad Hafiz Halim, Norhana Abdul Demon, Siti Zulaikha Ngah Sa’aya, Nurul Syahirah Nasuha Kadir, Mohd Fakhrul Zamani Abidin, Zul Hazrin Zainal Poad, Nursaadah Ahmad Kasim, Nurul Farhana Abu Razali, Nur Amira Mamat Aziz, Shujahadeen B. Ahmad, Khairol Amali Miskon, Azizi Nor, Norazman Mohamad |
author_facet | Hamsan, Muhamad Hafiz Halim, Norhana Abdul Demon, Siti Zulaikha Ngah Sa’aya, Nurul Syahirah Nasuha Kadir, Mohd Fakhrul Zamani Abidin, Zul Hazrin Zainal Poad, Nursaadah Ahmad Kasim, Nurul Farhana Abu Razali, Nur Amira Mamat Aziz, Shujahadeen B. Ahmad, Khairol Amali Miskon, Azizi Nor, Norazman Mohamad |
author_sort | Hamsan, Muhamad Hafiz |
collection | PubMed |
description | In this work, bacterial cellulose (BC)-based polymer derived from a symbiotic culture of bacteria and yeast (SCOBY) are optimized as both electrodes and electrolytes to fabricate a flexible and free-standing supercapacitor. BC is a multifunction and versatile polymer. Montmorillonite (MMT) and sodium bromide (NaBr) are used to improve mechanical strength and as the ionic source, respectively. From XRD analysis, it is found that the addition of MMT and NaBr has reduced the crystallinity of the electrolyte. Most interaction within the electrolyte happens in the region of the OH band, as verified using FTIR analysis. A maximum room temperature conductivity of (1.09 ± 0.02) × 10(−3) S/cm is achieved with 30 wt.% NaBr. The highest conducting SCOBY-based electrolytes have a decompose voltage and ionic transference number of 1.48 V and 0.97, respectively. The multiwalled carbon nanotube is employed as the active material held by the fibrous network of BC. Cyclic voltammetry shows a rectangular shape CV plot with the absence of a redox peak. The supercapacitor is charged and discharged in a zig-zag-shaped Perspex plate for 1000 cycles with a decent performance. |
format | Online Article Text |
id | pubmed-9371068 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-93710682022-08-12 Multifunction Web-like Polymeric Network Bacterial Cellulose Derived from SCOBY as Both Electrodes and Electrolytes for Pliable and Low-Cost Supercapacitor Hamsan, Muhamad Hafiz Halim, Norhana Abdul Demon, Siti Zulaikha Ngah Sa’aya, Nurul Syahirah Nasuha Kadir, Mohd Fakhrul Zamani Abidin, Zul Hazrin Zainal Poad, Nursaadah Ahmad Kasim, Nurul Farhana Abu Razali, Nur Amira Mamat Aziz, Shujahadeen B. Ahmad, Khairol Amali Miskon, Azizi Nor, Norazman Mohamad Polymers (Basel) Article In this work, bacterial cellulose (BC)-based polymer derived from a symbiotic culture of bacteria and yeast (SCOBY) are optimized as both electrodes and electrolytes to fabricate a flexible and free-standing supercapacitor. BC is a multifunction and versatile polymer. Montmorillonite (MMT) and sodium bromide (NaBr) are used to improve mechanical strength and as the ionic source, respectively. From XRD analysis, it is found that the addition of MMT and NaBr has reduced the crystallinity of the electrolyte. Most interaction within the electrolyte happens in the region of the OH band, as verified using FTIR analysis. A maximum room temperature conductivity of (1.09 ± 0.02) × 10(−3) S/cm is achieved with 30 wt.% NaBr. The highest conducting SCOBY-based electrolytes have a decompose voltage and ionic transference number of 1.48 V and 0.97, respectively. The multiwalled carbon nanotube is employed as the active material held by the fibrous network of BC. Cyclic voltammetry shows a rectangular shape CV plot with the absence of a redox peak. The supercapacitor is charged and discharged in a zig-zag-shaped Perspex plate for 1000 cycles with a decent performance. MDPI 2022-08-05 /pmc/articles/PMC9371068/ /pubmed/35956709 http://dx.doi.org/10.3390/polym14153196 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Hamsan, Muhamad Hafiz Halim, Norhana Abdul Demon, Siti Zulaikha Ngah Sa’aya, Nurul Syahirah Nasuha Kadir, Mohd Fakhrul Zamani Abidin, Zul Hazrin Zainal Poad, Nursaadah Ahmad Kasim, Nurul Farhana Abu Razali, Nur Amira Mamat Aziz, Shujahadeen B. Ahmad, Khairol Amali Miskon, Azizi Nor, Norazman Mohamad Multifunction Web-like Polymeric Network Bacterial Cellulose Derived from SCOBY as Both Electrodes and Electrolytes for Pliable and Low-Cost Supercapacitor |
title | Multifunction Web-like Polymeric Network Bacterial Cellulose Derived from SCOBY as Both Electrodes and Electrolytes for Pliable and Low-Cost Supercapacitor |
title_full | Multifunction Web-like Polymeric Network Bacterial Cellulose Derived from SCOBY as Both Electrodes and Electrolytes for Pliable and Low-Cost Supercapacitor |
title_fullStr | Multifunction Web-like Polymeric Network Bacterial Cellulose Derived from SCOBY as Both Electrodes and Electrolytes for Pliable and Low-Cost Supercapacitor |
title_full_unstemmed | Multifunction Web-like Polymeric Network Bacterial Cellulose Derived from SCOBY as Both Electrodes and Electrolytes for Pliable and Low-Cost Supercapacitor |
title_short | Multifunction Web-like Polymeric Network Bacterial Cellulose Derived from SCOBY as Both Electrodes and Electrolytes for Pliable and Low-Cost Supercapacitor |
title_sort | multifunction web-like polymeric network bacterial cellulose derived from scoby as both electrodes and electrolytes for pliable and low-cost supercapacitor |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9371068/ https://www.ncbi.nlm.nih.gov/pubmed/35956709 http://dx.doi.org/10.3390/polym14153196 |
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