Enhanced electrochemical performance of in situ polymerized V2O5-PANI nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state-based supercapacitor device

In the present study, in situ polymerization of anilinium hydrochloride over V2O5 was used to prepare PANI nanocomposites with varying weight percentage of V2O5 (10, 20 and 30 wt%). V2O5 nanoparticles were synthesized using a simple chemical approach and their purity was confirmed through Rietveld r...

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Main Authors: Yugesh Singh Thakur, Aman Deep Acharya, Sakshi Sharma, Sagar Bisoyi, Bhawna
Format: Article
Language:English
Published: Elsevier 2024-01-01
Series:Results in Chemistry
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211715623004988
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author Yugesh Singh Thakur
Aman Deep Acharya
Sakshi Sharma
Sagar Bisoyi
Bhawna
author_facet Yugesh Singh Thakur
Aman Deep Acharya
Sakshi Sharma
Sagar Bisoyi
Bhawna
author_sort Yugesh Singh Thakur
collection DOAJ
description In the present study, in situ polymerization of anilinium hydrochloride over V2O5 was used to prepare PANI nanocomposites with varying weight percentage of V2O5 (10, 20 and 30 wt%). V2O5 nanoparticles were synthesized using a simple chemical approach and their purity was confirmed through Rietveld refinement. It confirmed the advantageous electrochemical activity of V2O5 with a higher oxidation state of vanadium (V+5), enabling efficient electron storage. For fabricated electrode materials, the pair of redox peaks as well as their shape in CV suggests the faradic pseudocapacitive properties. Among all prepared electrodes, 20 wt% V2O5-PANI (PV2) nanocomposite demonstrates maximum specific capacitance of 820.5 Fg−1 at a current density of 1 Ag−1 with decent capacitive retention of 88 % after 1000 charge–discharge cycles. PV2 electrode also has a lower charge transfer resistance (Rct) of 0.5 Ω and lesser solution resistance (Ro) of 0.31 Ω in 6 M KOH electrolyte which is also responsible for good electrochemical performance. The higher capacitance value and decent stability of PV2 confirmed its ordered structure with more active sites shown through FESEM, which significantly contributes to efficient ion and electron transfer. In addition, the symmetric supercapacitor configuration of PV2 electrodes exhibits good energy and power densities of 4.6 Wh kg−1 and 80.7 W kg−1, respectively. Finally, the ignition of a red LED using three PV2//PV2 symmetric devices connected in series underscores its potential to advance energy storage applications.
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spelling doaj.art-cf683f53775947bc8dfabcd9310b1d492023-12-18T04:24:14ZengElsevierResults in Chemistry2211-71562024-01-017101259Enhanced electrochemical performance of in situ polymerized V2O5-PANI nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state-based supercapacitor deviceYugesh Singh Thakur0Aman Deep Acharya1Sakshi Sharma2Sagar Bisoyi3 Bhawna4Department of Physics, Lovely Professional University, Phagwara, 144402 Punjab, IndiaDepartment of Physics, Lovely Professional University, Phagwara, 144402 Punjab, India; Corresponding author.Department of Physics, Lovely Professional University, Phagwara, 144402 Punjab, IndiaDepartment of Physics, School of Applied Science, KIIT Deemed to be University, Bhubaneswar 751024, IndiaVikram University, Ujjain 456010, MP, IndiaIn the present study, in situ polymerization of anilinium hydrochloride over V2O5 was used to prepare PANI nanocomposites with varying weight percentage of V2O5 (10, 20 and 30 wt%). V2O5 nanoparticles were synthesized using a simple chemical approach and their purity was confirmed through Rietveld refinement. It confirmed the advantageous electrochemical activity of V2O5 with a higher oxidation state of vanadium (V+5), enabling efficient electron storage. For fabricated electrode materials, the pair of redox peaks as well as their shape in CV suggests the faradic pseudocapacitive properties. Among all prepared electrodes, 20 wt% V2O5-PANI (PV2) nanocomposite demonstrates maximum specific capacitance of 820.5 Fg−1 at a current density of 1 Ag−1 with decent capacitive retention of 88 % after 1000 charge–discharge cycles. PV2 electrode also has a lower charge transfer resistance (Rct) of 0.5 Ω and lesser solution resistance (Ro) of 0.31 Ω in 6 M KOH electrolyte which is also responsible for good electrochemical performance. The higher capacitance value and decent stability of PV2 confirmed its ordered structure with more active sites shown through FESEM, which significantly contributes to efficient ion and electron transfer. In addition, the symmetric supercapacitor configuration of PV2 electrodes exhibits good energy and power densities of 4.6 Wh kg−1 and 80.7 W kg−1, respectively. Finally, the ignition of a red LED using three PV2//PV2 symmetric devices connected in series underscores its potential to advance energy storage applications.http://www.sciencedirect.com/science/article/pii/S2211715623004988PolyanilineV2O5V2O5-PANI nanocompositesRietveld refinementElectron density mapsSpecific capacitance and Supercapacitor device
spellingShingle Yugesh Singh Thakur
Aman Deep Acharya
Sakshi Sharma
Sagar Bisoyi
Bhawna
Enhanced electrochemical performance of in situ polymerized V2O5-PANI nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state-based supercapacitor device
Results in Chemistry
Polyaniline
V2O5
V2O5-PANI nanocomposites
Rietveld refinement
Electron density maps
Specific capacitance and Supercapacitor device
title Enhanced electrochemical performance of in situ polymerized V2O5-PANI nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state-based supercapacitor device
title_full Enhanced electrochemical performance of in situ polymerized V2O5-PANI nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state-based supercapacitor device
title_fullStr Enhanced electrochemical performance of in situ polymerized V2O5-PANI nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state-based supercapacitor device
title_full_unstemmed Enhanced electrochemical performance of in situ polymerized V2O5-PANI nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state-based supercapacitor device
title_short Enhanced electrochemical performance of in situ polymerized V2O5-PANI nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state-based supercapacitor device
title_sort enhanced electrochemical performance of in situ polymerized v2o5 pani nanocomposites and its practical application confirmation by assembling ionic liquid as well as solid state based supercapacitor device
topic Polyaniline
V2O5
V2O5-PANI nanocomposites
Rietveld refinement
Electron density maps
Specific capacitance and Supercapacitor device
url http://www.sciencedirect.com/science/article/pii/S2211715623004988
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