Cargando…

A Freestanding Chitin-Derived Hierarchical Nanocomposite for Developing Electrodes in Future Supercapacitor Industry

Crustacean cuticles are receiving extensive attention for its potential in developing environmentally friendly and high energy density electrodes for supercapacitor applications. In the current work, the demineralized tergite cuticle of mantis shrimp was employed as a precursor for the fabrication p...

Descripción completa

Detalles Bibliográficos
Autores principales: Dong, Zheng, Chen, Chen, Wen, Kaihua, Zhao, Xiaoyi, Guo, Xihong, Zhou, Zhongzheng, Chang, Guangcai, Zhang, Yi, Dong, Yuhui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8747728/
https://www.ncbi.nlm.nih.gov/pubmed/35012217
http://dx.doi.org/10.3390/polym14010195
_version_ 1784630898196480000
author Dong, Zheng
Chen, Chen
Wen, Kaihua
Zhao, Xiaoyi
Guo, Xihong
Zhou, Zhongzheng
Chang, Guangcai
Zhang, Yi
Dong, Yuhui
author_facet Dong, Zheng
Chen, Chen
Wen, Kaihua
Zhao, Xiaoyi
Guo, Xihong
Zhou, Zhongzheng
Chang, Guangcai
Zhang, Yi
Dong, Yuhui
author_sort Dong, Zheng
collection PubMed
description Crustacean cuticles are receiving extensive attention for its potential in developing environmentally friendly and high energy density electrodes for supercapacitor applications. In the current work, the demineralized tergite cuticle of mantis shrimp was employed as a precursor for the fabrication porous biochar. The structural benefits of the cuticle, including the hierarchical nanofiber networks, and the interpenetrating pore systems were maximumly retained, providing a high carbon content and specific surface area scaffold. Graphene oxide sheets were deposited across the biochar through the pore canal systems to further increase the conductivity of the biochar, forming a novel freestanding carbon composite. Throughout the modification process, the material products were examined by a range of methods, which showed desired structural, chemical and functional properties. Our work demonstrates that high performance carbon materials can be manufactured using a simple and green process to realize the great potential in energy storage applications.
format Online
Article
Text
id pubmed-8747728
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87477282022-01-11 A Freestanding Chitin-Derived Hierarchical Nanocomposite for Developing Electrodes in Future Supercapacitor Industry Dong, Zheng Chen, Chen Wen, Kaihua Zhao, Xiaoyi Guo, Xihong Zhou, Zhongzheng Chang, Guangcai Zhang, Yi Dong, Yuhui Polymers (Basel) Article Crustacean cuticles are receiving extensive attention for its potential in developing environmentally friendly and high energy density electrodes for supercapacitor applications. In the current work, the demineralized tergite cuticle of mantis shrimp was employed as a precursor for the fabrication porous biochar. The structural benefits of the cuticle, including the hierarchical nanofiber networks, and the interpenetrating pore systems were maximumly retained, providing a high carbon content and specific surface area scaffold. Graphene oxide sheets were deposited across the biochar through the pore canal systems to further increase the conductivity of the biochar, forming a novel freestanding carbon composite. Throughout the modification process, the material products were examined by a range of methods, which showed desired structural, chemical and functional properties. Our work demonstrates that high performance carbon materials can be manufactured using a simple and green process to realize the great potential in energy storage applications. MDPI 2022-01-04 /pmc/articles/PMC8747728/ /pubmed/35012217 http://dx.doi.org/10.3390/polym14010195 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
Dong, Zheng
Chen, Chen
Wen, Kaihua
Zhao, Xiaoyi
Guo, Xihong
Zhou, Zhongzheng
Chang, Guangcai
Zhang, Yi
Dong, Yuhui
A Freestanding Chitin-Derived Hierarchical Nanocomposite for Developing Electrodes in Future Supercapacitor Industry
title A Freestanding Chitin-Derived Hierarchical Nanocomposite for Developing Electrodes in Future Supercapacitor Industry
title_full A Freestanding Chitin-Derived Hierarchical Nanocomposite for Developing Electrodes in Future Supercapacitor Industry
title_fullStr A Freestanding Chitin-Derived Hierarchical Nanocomposite for Developing Electrodes in Future Supercapacitor Industry
title_full_unstemmed A Freestanding Chitin-Derived Hierarchical Nanocomposite for Developing Electrodes in Future Supercapacitor Industry
title_short A Freestanding Chitin-Derived Hierarchical Nanocomposite for Developing Electrodes in Future Supercapacitor Industry
title_sort freestanding chitin-derived hierarchical nanocomposite for developing electrodes in future supercapacitor industry
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8747728/
https://www.ncbi.nlm.nih.gov/pubmed/35012217
http://dx.doi.org/10.3390/polym14010195
work_keys_str_mv AT dongzheng afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT chenchen afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT wenkaihua afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT zhaoxiaoyi afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT guoxihong afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT zhouzhongzheng afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT changguangcai afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT zhangyi afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT dongyuhui afreestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT dongzheng freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT chenchen freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT wenkaihua freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT zhaoxiaoyi freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT guoxihong freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT zhouzhongzheng freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT changguangcai freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT zhangyi freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry
AT dongyuhui freestandingchitinderivedhierarchicalnanocompositefordevelopingelectrodesinfuturesupercapacitorindustry