Cargando…

A Facile Method to Prepare Silver Doped Graphene Combined with Polyaniline for High Performances of Filter Paper Based Flexible Electrode

A flexible filter paper based composite electrode was prepared via the convenient one-step synthesis of silver doped graphene for the first time, followed by in-situ polymerization of aniline monomers. Using L-ascorbic acid for simultaneous reduction of grapheme oxide and silver nitrate, we provided...

Descripción completa

Detalles Bibliográficos
Autores principales: Jiao, Shasha, Li, Tiehu, Xiong, Chuanyin, Tang, Chen, Li, Hao, Zhao, Tingkai, Dang, Alei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835218/
https://www.ncbi.nlm.nih.gov/pubmed/31658659
http://dx.doi.org/10.3390/nano9101434
_version_ 1783466619642576896
author Jiao, Shasha
Li, Tiehu
Xiong, Chuanyin
Tang, Chen
Li, Hao
Zhao, Tingkai
Dang, Alei
author_facet Jiao, Shasha
Li, Tiehu
Xiong, Chuanyin
Tang, Chen
Li, Hao
Zhao, Tingkai
Dang, Alei
author_sort Jiao, Shasha
collection PubMed
description A flexible filter paper based composite electrode was prepared via the convenient one-step synthesis of silver doped graphene for the first time, followed by in-situ polymerization of aniline monomers. Using L-ascorbic acid for simultaneous reduction of grapheme oxide and silver nitrate, we provided a new and green method to prepare graphene hybrid sheets without toxicity. It was found that the as-fabricated hybrid electrode formed a three-dimensional porous architecture, which not only increased the specific surface area of composite, but also facilitated the ion diffusion of the electrolyte. In addition, according to the tests of electrochemical performances, the flexible hybrid electrode subsequently exhibited exceptional specific capacitance of 437.3 F/g, energy density of 1133.5 W·h/kg and power density of 88.8 kW/kg, respectively. Meanwhile, the as-prepared hybrid demonstrated a good cycling stability with only 10.99% specific capacitance deterioration after 5000 times of cycling. This preparation technology presented here shows great potential for the development and application of wearable and portable energy storage devices, particularly for flexible supercapacitors. Moreover, this study puts forward a general, simple and low-cost route of fabricating a novel flexible electrode on a large scale, eventually for environmental protection.
format Online
Article
Text
id pubmed-6835218
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-68352182019-11-25 A Facile Method to Prepare Silver Doped Graphene Combined with Polyaniline for High Performances of Filter Paper Based Flexible Electrode Jiao, Shasha Li, Tiehu Xiong, Chuanyin Tang, Chen Li, Hao Zhao, Tingkai Dang, Alei Nanomaterials (Basel) Article A flexible filter paper based composite electrode was prepared via the convenient one-step synthesis of silver doped graphene for the first time, followed by in-situ polymerization of aniline monomers. Using L-ascorbic acid for simultaneous reduction of grapheme oxide and silver nitrate, we provided a new and green method to prepare graphene hybrid sheets without toxicity. It was found that the as-fabricated hybrid electrode formed a three-dimensional porous architecture, which not only increased the specific surface area of composite, but also facilitated the ion diffusion of the electrolyte. In addition, according to the tests of electrochemical performances, the flexible hybrid electrode subsequently exhibited exceptional specific capacitance of 437.3 F/g, energy density of 1133.5 W·h/kg and power density of 88.8 kW/kg, respectively. Meanwhile, the as-prepared hybrid demonstrated a good cycling stability with only 10.99% specific capacitance deterioration after 5000 times of cycling. This preparation technology presented here shows great potential for the development and application of wearable and portable energy storage devices, particularly for flexible supercapacitors. Moreover, this study puts forward a general, simple and low-cost route of fabricating a novel flexible electrode on a large scale, eventually for environmental protection. MDPI 2019-10-10 /pmc/articles/PMC6835218/ /pubmed/31658659 http://dx.doi.org/10.3390/nano9101434 Text en © 2019 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
Jiao, Shasha
Li, Tiehu
Xiong, Chuanyin
Tang, Chen
Li, Hao
Zhao, Tingkai
Dang, Alei
A Facile Method to Prepare Silver Doped Graphene Combined with Polyaniline for High Performances of Filter Paper Based Flexible Electrode
title A Facile Method to Prepare Silver Doped Graphene Combined with Polyaniline for High Performances of Filter Paper Based Flexible Electrode
title_full A Facile Method to Prepare Silver Doped Graphene Combined with Polyaniline for High Performances of Filter Paper Based Flexible Electrode
title_fullStr A Facile Method to Prepare Silver Doped Graphene Combined with Polyaniline for High Performances of Filter Paper Based Flexible Electrode
title_full_unstemmed A Facile Method to Prepare Silver Doped Graphene Combined with Polyaniline for High Performances of Filter Paper Based Flexible Electrode
title_short A Facile Method to Prepare Silver Doped Graphene Combined with Polyaniline for High Performances of Filter Paper Based Flexible Electrode
title_sort facile method to prepare silver doped graphene combined with polyaniline for high performances of filter paper based flexible electrode
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835218/
https://www.ncbi.nlm.nih.gov/pubmed/31658659
http://dx.doi.org/10.3390/nano9101434
work_keys_str_mv AT jiaoshasha afacilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT litiehu afacilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT xiongchuanyin afacilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT tangchen afacilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT lihao afacilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT zhaotingkai afacilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT dangalei afacilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT jiaoshasha facilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT litiehu facilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT xiongchuanyin facilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT tangchen facilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT lihao facilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT zhaotingkai facilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode
AT dangalei facilemethodtopreparesilverdopedgraphenecombinedwithpolyanilineforhighperformancesoffilterpaperbasedflexibleelectrode