Functionally Decorated Carbon Nanotube Networks for Energy Storage in Supercapacitors

A novel approach has been developed for the fabrication of Fe3O4 decorated multiwalled carbon nanotubes (MWCNT) for energy storage in negative electrodes of electrochemical supercapacitors. Synthesis of Fe3O4 was performed in the presence of MWCNT, dispersed using various cationic and anionic polyar...

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Main Authors: Mohamed Nawwar, Rakesh P. Sahu, Ishwar K. Puri, Igor Zhitomirsky
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-03-01
Series:Frontiers in Energy Research
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fenrg.2020.00046/full
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author Mohamed Nawwar
Rakesh P. Sahu
Rakesh P. Sahu
Ishwar K. Puri
Ishwar K. Puri
Igor Zhitomirsky
author_facet Mohamed Nawwar
Rakesh P. Sahu
Rakesh P. Sahu
Ishwar K. Puri
Ishwar K. Puri
Igor Zhitomirsky
author_sort Mohamed Nawwar
collection DOAJ
description A novel approach has been developed for the fabrication of Fe3O4 decorated multiwalled carbon nanotubes (MWCNT) for energy storage in negative electrodes of electrochemical supercapacitors. Synthesis of Fe3O4 was performed in the presence of MWCNT, dispersed using various cationic and anionic polyaromatic dispersants. The comparison of experimental results obtained using different dispersants provided an insight into the influence of the chemical structure of the dispersant molecules on the microstructure of the Fe3O4-MWCNT materials. It was found that positively charged groups and chelating catechol ligands of the dispersants facilitated the formation of Fe3O4 decorated MWCNT with low agglomeration. The Fe3O4 -MWCNT materials, prepared using different dispersants were used for the fabrication of electrodes with mass loading of 40 mg cm−2. The highest capacitance was obtained in 0.5 M Na2SO4 electrolyte for Fe3O4 decorated MWCNT prepared using cationic celestine blue dye as a dispersant. Improved cyclic voltammetry profile was obtained using FeOOH as an additive. Asymmetric devices were fabricated and tested based on the Fe3O4 decorated MWCNT negative electrodes and MnO2-MWCNT positive electrodes.
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spelling doaj.art-e5a17f315bee4bfe9e3559dddabf3a8b2022-12-21T20:25:58ZengFrontiers Media S.A.Frontiers in Energy Research2296-598X2020-03-01810.3389/fenrg.2020.00046536199Functionally Decorated Carbon Nanotube Networks for Energy Storage in SupercapacitorsMohamed Nawwar0Rakesh P. Sahu1Rakesh P. Sahu2Ishwar K. Puri3Ishwar K. Puri4Igor Zhitomirsky5Department of Materials Science and Engineering, McMaster University, Hamilton, ON, CanadaDepartment of Materials Science and Engineering, McMaster University, Hamilton, ON, CanadaDepartment of Mechanical Engineering, McMaster University, Hamilton, ON, CanadaDepartment of Materials Science and Engineering, McMaster University, Hamilton, ON, CanadaDepartment of Mechanical Engineering, McMaster University, Hamilton, ON, CanadaDepartment of Materials Science and Engineering, McMaster University, Hamilton, ON, CanadaA novel approach has been developed for the fabrication of Fe3O4 decorated multiwalled carbon nanotubes (MWCNT) for energy storage in negative electrodes of electrochemical supercapacitors. Synthesis of Fe3O4 was performed in the presence of MWCNT, dispersed using various cationic and anionic polyaromatic dispersants. The comparison of experimental results obtained using different dispersants provided an insight into the influence of the chemical structure of the dispersant molecules on the microstructure of the Fe3O4-MWCNT materials. It was found that positively charged groups and chelating catechol ligands of the dispersants facilitated the formation of Fe3O4 decorated MWCNT with low agglomeration. The Fe3O4 -MWCNT materials, prepared using different dispersants were used for the fabrication of electrodes with mass loading of 40 mg cm−2. The highest capacitance was obtained in 0.5 M Na2SO4 electrolyte for Fe3O4 decorated MWCNT prepared using cationic celestine blue dye as a dispersant. Improved cyclic voltammetry profile was obtained using FeOOH as an additive. Asymmetric devices were fabricated and tested based on the Fe3O4 decorated MWCNT negative electrodes and MnO2-MWCNT positive electrodes.https://www.frontiersin.org/article/10.3389/fenrg.2020.00046/fullcarbon nanotubeiron oxideenergysupercapacitordispersant
spellingShingle Mohamed Nawwar
Rakesh P. Sahu
Rakesh P. Sahu
Ishwar K. Puri
Ishwar K. Puri
Igor Zhitomirsky
Functionally Decorated Carbon Nanotube Networks for Energy Storage in Supercapacitors
Frontiers in Energy Research
carbon nanotube
iron oxide
energy
supercapacitor
dispersant
title Functionally Decorated Carbon Nanotube Networks for Energy Storage in Supercapacitors
title_full Functionally Decorated Carbon Nanotube Networks for Energy Storage in Supercapacitors
title_fullStr Functionally Decorated Carbon Nanotube Networks for Energy Storage in Supercapacitors
title_full_unstemmed Functionally Decorated Carbon Nanotube Networks for Energy Storage in Supercapacitors
title_short Functionally Decorated Carbon Nanotube Networks for Energy Storage in Supercapacitors
title_sort functionally decorated carbon nanotube networks for energy storage in supercapacitors
topic carbon nanotube
iron oxide
energy
supercapacitor
dispersant
url https://www.frontiersin.org/article/10.3389/fenrg.2020.00046/full
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