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Cobalt-Doped Manganese Dioxide Hierarchical Nanostructures for Enhancing Pseudocapacitive Properties

[Image: see text] Herein, overall improvement in the electrochemical performance of manganese dioxide is achieved through fine-tuning the microstructure of partially Co-doped manganese dioxide nanomaterial using facile hydrothermal method with precise control of preparative parameters. The structura...

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Autores principales: Jadhav, Sarika M., Kalubarme, Ramchandra S., Suzuki, Norihiro, Terashima, Chiaki, Mun, Junyoung, Kale, Bharat Bhanudas, Gosavi, Suresh W., Fujishima, Akira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7931399/
https://www.ncbi.nlm.nih.gov/pubmed/33681611
http://dx.doi.org/10.1021/acsomega.0c06150
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author Jadhav, Sarika M.
Kalubarme, Ramchandra S.
Suzuki, Norihiro
Terashima, Chiaki
Mun, Junyoung
Kale, Bharat Bhanudas
Gosavi, Suresh W.
Fujishima, Akira
author_facet Jadhav, Sarika M.
Kalubarme, Ramchandra S.
Suzuki, Norihiro
Terashima, Chiaki
Mun, Junyoung
Kale, Bharat Bhanudas
Gosavi, Suresh W.
Fujishima, Akira
author_sort Jadhav, Sarika M.
collection PubMed
description [Image: see text] Herein, overall improvement in the electrochemical performance of manganese dioxide is achieved through fine-tuning the microstructure of partially Co-doped manganese dioxide nanomaterial using facile hydrothermal method with precise control of preparative parameters. The structural investigation exhibits formation of a multiphase compound accompanied by controlled reflections of α-MnO(2) as well as γ-MnO(2) crystalline phases. The morphological examination manifests the presence of MnO(2) nanowires having a width of 70–80 nm and a length of several microns. The Co-doped manganese dioxide electrode displayed a particular capacitive behavior along with a rising order of capacitance concerning with increased cobalt ion concentration suitable for certain limits. The value of specific capacitance achieved by a 5% Co-doped manganese dioxide sample was 1050 F g(–1) at 0.5 A g(–1), which was nearly threefold greater than that achieved by a bare manganese dioxide electrode. Furthermore, Co-doped manganese dioxide nanocomposite electrode exhibits exceptional capacitance retention (92.7%) till 10,000 cycles. It shows the good cyclability as well as stability of the material. Furthermore, we have demonstrated the solid-state supercapacitor with good energy and power density.
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spelling pubmed-79313992021-03-05 Cobalt-Doped Manganese Dioxide Hierarchical Nanostructures for Enhancing Pseudocapacitive Properties Jadhav, Sarika M. Kalubarme, Ramchandra S. Suzuki, Norihiro Terashima, Chiaki Mun, Junyoung Kale, Bharat Bhanudas Gosavi, Suresh W. Fujishima, Akira ACS Omega [Image: see text] Herein, overall improvement in the electrochemical performance of manganese dioxide is achieved through fine-tuning the microstructure of partially Co-doped manganese dioxide nanomaterial using facile hydrothermal method with precise control of preparative parameters. The structural investigation exhibits formation of a multiphase compound accompanied by controlled reflections of α-MnO(2) as well as γ-MnO(2) crystalline phases. The morphological examination manifests the presence of MnO(2) nanowires having a width of 70–80 nm and a length of several microns. The Co-doped manganese dioxide electrode displayed a particular capacitive behavior along with a rising order of capacitance concerning with increased cobalt ion concentration suitable for certain limits. The value of specific capacitance achieved by a 5% Co-doped manganese dioxide sample was 1050 F g(–1) at 0.5 A g(–1), which was nearly threefold greater than that achieved by a bare manganese dioxide electrode. Furthermore, Co-doped manganese dioxide nanocomposite electrode exhibits exceptional capacitance retention (92.7%) till 10,000 cycles. It shows the good cyclability as well as stability of the material. Furthermore, we have demonstrated the solid-state supercapacitor with good energy and power density. American Chemical Society 2021-02-16 /pmc/articles/PMC7931399/ /pubmed/33681611 http://dx.doi.org/10.1021/acsomega.0c06150 Text en © 2021 The Authors. Published by American Chemical Society This is an open access article published under an ACS AuthorChoice License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Jadhav, Sarika M.
Kalubarme, Ramchandra S.
Suzuki, Norihiro
Terashima, Chiaki
Mun, Junyoung
Kale, Bharat Bhanudas
Gosavi, Suresh W.
Fujishima, Akira
Cobalt-Doped Manganese Dioxide Hierarchical Nanostructures for Enhancing Pseudocapacitive Properties
title Cobalt-Doped Manganese Dioxide Hierarchical Nanostructures for Enhancing Pseudocapacitive Properties
title_full Cobalt-Doped Manganese Dioxide Hierarchical Nanostructures for Enhancing Pseudocapacitive Properties
title_fullStr Cobalt-Doped Manganese Dioxide Hierarchical Nanostructures for Enhancing Pseudocapacitive Properties
title_full_unstemmed Cobalt-Doped Manganese Dioxide Hierarchical Nanostructures for Enhancing Pseudocapacitive Properties
title_short Cobalt-Doped Manganese Dioxide Hierarchical Nanostructures for Enhancing Pseudocapacitive Properties
title_sort cobalt-doped manganese dioxide hierarchical nanostructures for enhancing pseudocapacitive properties
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7931399/
https://www.ncbi.nlm.nih.gov/pubmed/33681611
http://dx.doi.org/10.1021/acsomega.0c06150
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