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Silver Nanoparticles Embedded on Reduced Graphene Oxide@Copper Oxide Nanocomposite for High Performance Supercapacitor Applications

In this work, silver (Ag) decorated reduced graphene oxide (rGO) coated with ultrafine CuO nanosheets (Ag-rGO@CuO) was prepared by the combination of a microwave-assisted hydrothermal route and a chemical methodology. The prepared Ag-rGO@CuO was characterized for its morphological features by field...

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Autores principales: Ansari, Akhalakur Rahman, Ansari, Sajid Ali, Parveen, Nazish, Ansari, Mohammad Omaish, Osman, Zurina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8434351/
https://www.ncbi.nlm.nih.gov/pubmed/34501128
http://dx.doi.org/10.3390/ma14175032
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author Ansari, Akhalakur Rahman
Ansari, Sajid Ali
Parveen, Nazish
Ansari, Mohammad Omaish
Osman, Zurina
author_facet Ansari, Akhalakur Rahman
Ansari, Sajid Ali
Parveen, Nazish
Ansari, Mohammad Omaish
Osman, Zurina
author_sort Ansari, Akhalakur Rahman
collection PubMed
description In this work, silver (Ag) decorated reduced graphene oxide (rGO) coated with ultrafine CuO nanosheets (Ag-rGO@CuO) was prepared by the combination of a microwave-assisted hydrothermal route and a chemical methodology. The prepared Ag-rGO@CuO was characterized for its morphological features by field emission scanning electron microscopy and transmission electron microscopy while the structural characterization was performed by X-ray diffraction and Raman spectroscopy. Energy-dispersive X-ray analysis was undertaken to confirm the elemental composition. The electrochemical performance of prepared samples was studied by cyclic voltammetry and galvanostatic charge-discharge in a 2M KOH electrolyte solution. The CuO nanosheets provided excellent electrical conductivity and the rGO sheets provided a large surface area with good mesoporosity that increases electron and ion mobility during the redox process. Furthermore, the highly conductive Ag nanoparticles upon the rGO@CuO surface further enhanced electrochemical performance by providing extra channels for charge conduction. The ternary Ag-rGO@CuO nanocomposite shows a very high specific capacitance of 612.5 to 210 Fg(−1) compared against rGO@CuO which has a specific capacitance of 375 to 87.5 Fg(−1) and the CuO nanosheets with a specific capacitance of 113.75 to 87.5 Fg(−1) at current densities 0.5 and 7 Ag(−1), respectively.
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spelling pubmed-84343512021-09-12 Silver Nanoparticles Embedded on Reduced Graphene Oxide@Copper Oxide Nanocomposite for High Performance Supercapacitor Applications Ansari, Akhalakur Rahman Ansari, Sajid Ali Parveen, Nazish Ansari, Mohammad Omaish Osman, Zurina Materials (Basel) Article In this work, silver (Ag) decorated reduced graphene oxide (rGO) coated with ultrafine CuO nanosheets (Ag-rGO@CuO) was prepared by the combination of a microwave-assisted hydrothermal route and a chemical methodology. The prepared Ag-rGO@CuO was characterized for its morphological features by field emission scanning electron microscopy and transmission electron microscopy while the structural characterization was performed by X-ray diffraction and Raman spectroscopy. Energy-dispersive X-ray analysis was undertaken to confirm the elemental composition. The electrochemical performance of prepared samples was studied by cyclic voltammetry and galvanostatic charge-discharge in a 2M KOH electrolyte solution. The CuO nanosheets provided excellent electrical conductivity and the rGO sheets provided a large surface area with good mesoporosity that increases electron and ion mobility during the redox process. Furthermore, the highly conductive Ag nanoparticles upon the rGO@CuO surface further enhanced electrochemical performance by providing extra channels for charge conduction. The ternary Ag-rGO@CuO nanocomposite shows a very high specific capacitance of 612.5 to 210 Fg(−1) compared against rGO@CuO which has a specific capacitance of 375 to 87.5 Fg(−1) and the CuO nanosheets with a specific capacitance of 113.75 to 87.5 Fg(−1) at current densities 0.5 and 7 Ag(−1), respectively. MDPI 2021-09-03 /pmc/articles/PMC8434351/ /pubmed/34501128 http://dx.doi.org/10.3390/ma14175032 Text en © 2021 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
Ansari, Akhalakur Rahman
Ansari, Sajid Ali
Parveen, Nazish
Ansari, Mohammad Omaish
Osman, Zurina
Silver Nanoparticles Embedded on Reduced Graphene Oxide@Copper Oxide Nanocomposite for High Performance Supercapacitor Applications
title Silver Nanoparticles Embedded on Reduced Graphene Oxide@Copper Oxide Nanocomposite for High Performance Supercapacitor Applications
title_full Silver Nanoparticles Embedded on Reduced Graphene Oxide@Copper Oxide Nanocomposite for High Performance Supercapacitor Applications
title_fullStr Silver Nanoparticles Embedded on Reduced Graphene Oxide@Copper Oxide Nanocomposite for High Performance Supercapacitor Applications
title_full_unstemmed Silver Nanoparticles Embedded on Reduced Graphene Oxide@Copper Oxide Nanocomposite for High Performance Supercapacitor Applications
title_short Silver Nanoparticles Embedded on Reduced Graphene Oxide@Copper Oxide Nanocomposite for High Performance Supercapacitor Applications
title_sort silver nanoparticles embedded on reduced graphene oxide@copper oxide nanocomposite for high performance supercapacitor applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8434351/
https://www.ncbi.nlm.nih.gov/pubmed/34501128
http://dx.doi.org/10.3390/ma14175032
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