Novel ternary nanocomposites of MWCNTs/PANI/MoS2: preparation, characterization and enhanced electrochemical capacitance

In this work, nanoflower-like MoS2 grown on the surface of multi-walled carbon nanotubes (MWCNTs)/polyaniline (PANI) nano-stem is synthesized via a facile in situ polymerization and hydrothermal method. Such a novel hierarchical structure commendably promotes the contact of PANI and electrolyte for...

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Main Authors: Ranran Zhang, Yu Liao, Shuangli Ye, Ziqiang Zhu, Jun Qian
Format: Article
Language:English
Published: The Royal Society 2018-01-01
Series:Royal Society Open Science
Subjects:
Online Access:https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171365
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spelling doaj-26b09e1b88b84bc9b52ff2b08bbf82fc2020-11-25T03:57:37ZengThe Royal SocietyRoyal Society Open Science2054-57032018-01-015110.1098/rsos.171365171365Novel ternary nanocomposites of MWCNTs/PANI/MoS2: preparation, characterization and enhanced electrochemical capacitanceRanran ZhangYu LiaoShuangli YeZiqiang ZhuJun QianIn this work, nanoflower-like MoS2 grown on the surface of multi-walled carbon nanotubes (MWCNTs)/polyaniline (PANI) nano-stem is synthesized via a facile in situ polymerization and hydrothermal method. Such a novel hierarchical structure commendably promotes the contact of PANI and electrolyte for faradaic energy storage. In the meanwhile, the double-layer capacitance of MoS2 is effectively used. The morphology and chemical composition of the as-prepared samples are characterized by scanning and transmission electron microscopies, X-ray diffraction and Fourier transform infrared spectra. The electrochemical performance of the samples is evaluated by cyclic voltammogram and galvanostatic charge–discharge measurements. It is found that the specific capacitance of the obtained MWCNTs/PANI/MoS2 hybrid is 542.56 F g−1 at a current density of 0.5 A g−1. Furthermore, the MWCNTs/PANI/MoS2 hybrid also exhibits good rate capability (62.5% capacity retention at 10 A g−1) and excellent cycling stability (73.71% capacitance retention) over 3000 cycles.https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171365mwcntspanimos2nanocompositeelectrochemical capacitance
collection DOAJ
language English
format Article
sources DOAJ
author Ranran Zhang
Yu Liao
Shuangli Ye
Ziqiang Zhu
Jun Qian
spellingShingle Ranran Zhang
Yu Liao
Shuangli Ye
Ziqiang Zhu
Jun Qian
Novel ternary nanocomposites of MWCNTs/PANI/MoS2: preparation, characterization and enhanced electrochemical capacitance
Royal Society Open Science
mwcnts
pani
mos2
nanocomposite
electrochemical capacitance
author_facet Ranran Zhang
Yu Liao
Shuangli Ye
Ziqiang Zhu
Jun Qian
author_sort Ranran Zhang
title Novel ternary nanocomposites of MWCNTs/PANI/MoS2: preparation, characterization and enhanced electrochemical capacitance
title_short Novel ternary nanocomposites of MWCNTs/PANI/MoS2: preparation, characterization and enhanced electrochemical capacitance
title_full Novel ternary nanocomposites of MWCNTs/PANI/MoS2: preparation, characterization and enhanced electrochemical capacitance
title_fullStr Novel ternary nanocomposites of MWCNTs/PANI/MoS2: preparation, characterization and enhanced electrochemical capacitance
title_full_unstemmed Novel ternary nanocomposites of MWCNTs/PANI/MoS2: preparation, characterization and enhanced electrochemical capacitance
title_sort novel ternary nanocomposites of mwcnts/pani/mos2: preparation, characterization and enhanced electrochemical capacitance
publisher The Royal Society
series Royal Society Open Science
issn 2054-5703
publishDate 2018-01-01
description In this work, nanoflower-like MoS2 grown on the surface of multi-walled carbon nanotubes (MWCNTs)/polyaniline (PANI) nano-stem is synthesized via a facile in situ polymerization and hydrothermal method. Such a novel hierarchical structure commendably promotes the contact of PANI and electrolyte for faradaic energy storage. In the meanwhile, the double-layer capacitance of MoS2 is effectively used. The morphology and chemical composition of the as-prepared samples are characterized by scanning and transmission electron microscopies, X-ray diffraction and Fourier transform infrared spectra. The electrochemical performance of the samples is evaluated by cyclic voltammogram and galvanostatic charge–discharge measurements. It is found that the specific capacitance of the obtained MWCNTs/PANI/MoS2 hybrid is 542.56 F g−1 at a current density of 0.5 A g−1. Furthermore, the MWCNTs/PANI/MoS2 hybrid also exhibits good rate capability (62.5% capacity retention at 10 A g−1) and excellent cycling stability (73.71% capacitance retention) over 3000 cycles.
topic mwcnts
pani
mos2
nanocomposite
electrochemical capacitance
url https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171365
work_keys_str_mv AT ranranzhang novelternarynanocompositesofmwcntspanimos2preparationcharacterizationandenhancedelectrochemicalcapacitance
AT yuliao novelternarynanocompositesofmwcntspanimos2preparationcharacterizationandenhancedelectrochemicalcapacitance
AT shuangliye novelternarynanocompositesofmwcntspanimos2preparationcharacterizationandenhancedelectrochemicalcapacitance
AT ziqiangzhu novelternarynanocompositesofmwcntspanimos2preparationcharacterizationandenhancedelectrochemicalcapacitance
AT junqian novelternarynanocompositesofmwcntspanimos2preparationcharacterizationandenhancedelectrochemicalcapacitance
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