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Advanced binder-free electrodes based on CoMn(2)O(4)@Co(3)O(4) core/shell nanostructures for high-performance supercapacitors
Three-dimensional (3D) hierarchical CoMn(2)O(4)@Co(3)O(4) core/shell nanoneedle/nanosheet arrays for high-performance supercapacitors were designed and synthesized on Ni foam by a two-step hydrothermal route. The hybrid nanostructure exhibits much more excellent capacitive behavior compared with eit...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9085651/ https://www.ncbi.nlm.nih.gov/pubmed/35548211 http://dx.doi.org/10.1039/c8ra06289g |
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author | Chen, Xiaobo Liu, Xiao Liu, Yongxu Zhu, Yameng Zhuang, Guoce Zheng, Wei Cai, Zhenyu Yang, Peizhi |
author_facet | Chen, Xiaobo Liu, Xiao Liu, Yongxu Zhu, Yameng Zhuang, Guoce Zheng, Wei Cai, Zhenyu Yang, Peizhi |
author_sort | Chen, Xiaobo |
collection | PubMed |
description | Three-dimensional (3D) hierarchical CoMn(2)O(4)@Co(3)O(4) core/shell nanoneedle/nanosheet arrays for high-performance supercapacitors were designed and synthesized on Ni foam by a two-step hydrothermal route. The hybrid nanostructure exhibits much more excellent capacitive behavior compared with either the pristine CoMn(2)O(4) nanoneedle arrays alone or Co(3)O(4) nanosheets alone. The formation of an interconnected pore hybrid system is quite beneficial for the facile electrolyte penetration and fast electron transport. The CoMn(2)O(4)@Co(3)O(4) electrode can achieve a high specific capacitance of 1627 F g(−1) at 1 A g(−1) and 1376 F g(−1) at 10 A g(−1). In addition, an asymmetric supercapacitor (ASC) was assembled by using the CoMn(2)O(4)@Co(3)O(4) core/shell hybrid nanostructure arrays on Ni foam as a positive electrode and activated carbon as a negative electrode in an aqueous 3 M KOH electrolyte. A specific capacitance of 125.8 F g(−1) at 1 A g(−1) (89.2% retention after 5000 charge/discharge cycles at a current density of 2 A g(−1)) and a high energy density of 44.8 W h kg(−1) was obtained. The results indicate that the obtained unique integrated CoMn(2)O(4)@Co(3)O(4) nanoarchitecture may show great promise as ASC electrodes for potential applications in energy storage. |
format | Online Article Text |
id | pubmed-9085651 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-90856512022-05-10 Advanced binder-free electrodes based on CoMn(2)O(4)@Co(3)O(4) core/shell nanostructures for high-performance supercapacitors Chen, Xiaobo Liu, Xiao Liu, Yongxu Zhu, Yameng Zhuang, Guoce Zheng, Wei Cai, Zhenyu Yang, Peizhi RSC Adv Chemistry Three-dimensional (3D) hierarchical CoMn(2)O(4)@Co(3)O(4) core/shell nanoneedle/nanosheet arrays for high-performance supercapacitors were designed and synthesized on Ni foam by a two-step hydrothermal route. The hybrid nanostructure exhibits much more excellent capacitive behavior compared with either the pristine CoMn(2)O(4) nanoneedle arrays alone or Co(3)O(4) nanosheets alone. The formation of an interconnected pore hybrid system is quite beneficial for the facile electrolyte penetration and fast electron transport. The CoMn(2)O(4)@Co(3)O(4) electrode can achieve a high specific capacitance of 1627 F g(−1) at 1 A g(−1) and 1376 F g(−1) at 10 A g(−1). In addition, an asymmetric supercapacitor (ASC) was assembled by using the CoMn(2)O(4)@Co(3)O(4) core/shell hybrid nanostructure arrays on Ni foam as a positive electrode and activated carbon as a negative electrode in an aqueous 3 M KOH electrolyte. A specific capacitance of 125.8 F g(−1) at 1 A g(−1) (89.2% retention after 5000 charge/discharge cycles at a current density of 2 A g(−1)) and a high energy density of 44.8 W h kg(−1) was obtained. The results indicate that the obtained unique integrated CoMn(2)O(4)@Co(3)O(4) nanoarchitecture may show great promise as ASC electrodes for potential applications in energy storage. The Royal Society of Chemistry 2018-09-10 /pmc/articles/PMC9085651/ /pubmed/35548211 http://dx.doi.org/10.1039/c8ra06289g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/ |
spellingShingle | Chemistry Chen, Xiaobo Liu, Xiao Liu, Yongxu Zhu, Yameng Zhuang, Guoce Zheng, Wei Cai, Zhenyu Yang, Peizhi Advanced binder-free electrodes based on CoMn(2)O(4)@Co(3)O(4) core/shell nanostructures for high-performance supercapacitors |
title | Advanced binder-free electrodes based on CoMn(2)O(4)@Co(3)O(4) core/shell nanostructures for high-performance supercapacitors |
title_full | Advanced binder-free electrodes based on CoMn(2)O(4)@Co(3)O(4) core/shell nanostructures for high-performance supercapacitors |
title_fullStr | Advanced binder-free electrodes based on CoMn(2)O(4)@Co(3)O(4) core/shell nanostructures for high-performance supercapacitors |
title_full_unstemmed | Advanced binder-free electrodes based on CoMn(2)O(4)@Co(3)O(4) core/shell nanostructures for high-performance supercapacitors |
title_short | Advanced binder-free electrodes based on CoMn(2)O(4)@Co(3)O(4) core/shell nanostructures for high-performance supercapacitors |
title_sort | advanced binder-free electrodes based on comn(2)o(4)@co(3)o(4) core/shell nanostructures for high-performance supercapacitors |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9085651/ https://www.ncbi.nlm.nih.gov/pubmed/35548211 http://dx.doi.org/10.1039/c8ra06289g |
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