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Square-Facet Nanobar MOF-Derived Co(3)O(4)@Co/N-doped CNT Core–Shell-based Nanocomposites as Cathode Materials for High-Performance Supercapacitor Studies

[Image: see text] The binary as well as ternary nanocomposites of the square-facet nanobar Co-MOF-derived Co(3)O(4)@Co/N-CNTs (N-CNTs: nitrogen-doped carbon nanotubes) with Ag NPs and rGO have been synthesized via an easy wet chemical route, and their supercapacitor behavior was then studied. At a c...

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Autores principales: Mulik, Swapnajit V., Dhas, Suprimkumar D., Moholkar, Annasaheb V., Parale, Vinayak G., Park, Hyung-Ho, Koyale, Pramod A., Ghodake, Vijay S., Panda, Dillip K., Delekar, Sagar D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9850747/
https://www.ncbi.nlm.nih.gov/pubmed/36687033
http://dx.doi.org/10.1021/acsomega.2c06369
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author Mulik, Swapnajit V.
Dhas, Suprimkumar D.
Moholkar, Annasaheb V.
Parale, Vinayak G.
Park, Hyung-Ho
Koyale, Pramod A.
Ghodake, Vijay S.
Panda, Dillip K.
Delekar, Sagar D.
author_facet Mulik, Swapnajit V.
Dhas, Suprimkumar D.
Moholkar, Annasaheb V.
Parale, Vinayak G.
Park, Hyung-Ho
Koyale, Pramod A.
Ghodake, Vijay S.
Panda, Dillip K.
Delekar, Sagar D.
author_sort Mulik, Swapnajit V.
collection PubMed
description [Image: see text] The binary as well as ternary nanocomposites of the square-facet nanobar Co-MOF-derived Co(3)O(4)@Co/N-CNTs (N-CNTs: nitrogen-doped carbon nanotubes) with Ag NPs and rGO have been synthesized via an easy wet chemical route, and their supercapacitor behavior was then studied. At a controlled pH of the precursor solution, square-facet nanobars of Co-MOF were first synthesized by the solvothermal method and then pyrolyzed under a controlled nitrogen atmosphere to get a core–shell system of Co(3)O(4)@Co/N-CNTs. In the second step, different compositions of Co(3)O(4)@Co/N-CNT core–shell structures were formed by an ex-situ method with Ag NPs and rGO moieties. Among several bare, binary, and ternary compositions tested in 6 M aqueous KOH electrolyte, a ternary nanocomposite having a 7.0:1.5:1.5 stoichiometric ratio of Co(3)O(4)@Co/N-CNT, Ag NPs, and rGO, respectively, reported the highest specific capacitance (3393.8 F g(–1) at 5 mV s(–1)). The optimized nanocomposite showed the energy density, power density, and Coulombic efficiency of 74.1 W h.kg(–1), 443.7 W.kg(–1), and 101.3%, respectively, with excellent electrochemical stability. After testing an asymmetrical supercapacitor with a Co(3)O(4)@Co/N-CNT/Ag NPs/rGO/nickel foam cathode and an activated carbon/nickel foam anode, it showed 4.9 W h.kg(–1) of energy density and 5000.0 W.kg(–1) of power density.
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spelling pubmed-98507472023-01-20 Square-Facet Nanobar MOF-Derived Co(3)O(4)@Co/N-doped CNT Core–Shell-based Nanocomposites as Cathode Materials for High-Performance Supercapacitor Studies Mulik, Swapnajit V. Dhas, Suprimkumar D. Moholkar, Annasaheb V. Parale, Vinayak G. Park, Hyung-Ho Koyale, Pramod A. Ghodake, Vijay S. Panda, Dillip K. Delekar, Sagar D. ACS Omega [Image: see text] The binary as well as ternary nanocomposites of the square-facet nanobar Co-MOF-derived Co(3)O(4)@Co/N-CNTs (N-CNTs: nitrogen-doped carbon nanotubes) with Ag NPs and rGO have been synthesized via an easy wet chemical route, and their supercapacitor behavior was then studied. At a controlled pH of the precursor solution, square-facet nanobars of Co-MOF were first synthesized by the solvothermal method and then pyrolyzed under a controlled nitrogen atmosphere to get a core–shell system of Co(3)O(4)@Co/N-CNTs. In the second step, different compositions of Co(3)O(4)@Co/N-CNT core–shell structures were formed by an ex-situ method with Ag NPs and rGO moieties. Among several bare, binary, and ternary compositions tested in 6 M aqueous KOH electrolyte, a ternary nanocomposite having a 7.0:1.5:1.5 stoichiometric ratio of Co(3)O(4)@Co/N-CNT, Ag NPs, and rGO, respectively, reported the highest specific capacitance (3393.8 F g(–1) at 5 mV s(–1)). The optimized nanocomposite showed the energy density, power density, and Coulombic efficiency of 74.1 W h.kg(–1), 443.7 W.kg(–1), and 101.3%, respectively, with excellent electrochemical stability. After testing an asymmetrical supercapacitor with a Co(3)O(4)@Co/N-CNT/Ag NPs/rGO/nickel foam cathode and an activated carbon/nickel foam anode, it showed 4.9 W h.kg(–1) of energy density and 5000.0 W.kg(–1) of power density. American Chemical Society 2023-01-04 /pmc/articles/PMC9850747/ /pubmed/36687033 http://dx.doi.org/10.1021/acsomega.2c06369 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Mulik, Swapnajit V.
Dhas, Suprimkumar D.
Moholkar, Annasaheb V.
Parale, Vinayak G.
Park, Hyung-Ho
Koyale, Pramod A.
Ghodake, Vijay S.
Panda, Dillip K.
Delekar, Sagar D.
Square-Facet Nanobar MOF-Derived Co(3)O(4)@Co/N-doped CNT Core–Shell-based Nanocomposites as Cathode Materials for High-Performance Supercapacitor Studies
title Square-Facet Nanobar MOF-Derived Co(3)O(4)@Co/N-doped CNT Core–Shell-based Nanocomposites as Cathode Materials for High-Performance Supercapacitor Studies
title_full Square-Facet Nanobar MOF-Derived Co(3)O(4)@Co/N-doped CNT Core–Shell-based Nanocomposites as Cathode Materials for High-Performance Supercapacitor Studies
title_fullStr Square-Facet Nanobar MOF-Derived Co(3)O(4)@Co/N-doped CNT Core–Shell-based Nanocomposites as Cathode Materials for High-Performance Supercapacitor Studies
title_full_unstemmed Square-Facet Nanobar MOF-Derived Co(3)O(4)@Co/N-doped CNT Core–Shell-based Nanocomposites as Cathode Materials for High-Performance Supercapacitor Studies
title_short Square-Facet Nanobar MOF-Derived Co(3)O(4)@Co/N-doped CNT Core–Shell-based Nanocomposites as Cathode Materials for High-Performance Supercapacitor Studies
title_sort square-facet nanobar mof-derived co(3)o(4)@co/n-doped cnt core–shell-based nanocomposites as cathode materials for high-performance supercapacitor studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9850747/
https://www.ncbi.nlm.nih.gov/pubmed/36687033
http://dx.doi.org/10.1021/acsomega.2c06369
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