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Semi-Embedding Zn-Co(3)O(4) Derived from Hybrid ZIFs into Wood-Derived Carbon for High-Performance Supercapacitors

Transition metal oxides (TMOs) can provide high theoretical capacitance due to the change of multiple valence states of transition metals. However, their intrinsic drawbacks, including poor electrical conductivity, lower energy density, and huge volume expansion, will result in the pulverization of...

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Autores principales: Xiong, Wanning, Ouyang, Jie, Wang, Xiaoman, Hua, Ziheng, Zhao, Linlin, Li, Mengyao, Lu, Yuxin, Yin, Wei, Liu, Gonggang, Zhou, Cui, Luo, Yongfeng, Xu, Binghui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739616/
https://www.ncbi.nlm.nih.gov/pubmed/36500661
http://dx.doi.org/10.3390/molecules27238572
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author Xiong, Wanning
Ouyang, Jie
Wang, Xiaoman
Hua, Ziheng
Zhao, Linlin
Li, Mengyao
Lu, Yuxin
Yin, Wei
Liu, Gonggang
Zhou, Cui
Luo, Yongfeng
Xu, Binghui
author_facet Xiong, Wanning
Ouyang, Jie
Wang, Xiaoman
Hua, Ziheng
Zhao, Linlin
Li, Mengyao
Lu, Yuxin
Yin, Wei
Liu, Gonggang
Zhou, Cui
Luo, Yongfeng
Xu, Binghui
author_sort Xiong, Wanning
collection PubMed
description Transition metal oxides (TMOs) can provide high theoretical capacitance due to the change of multiple valence states of transition metals. However, their intrinsic drawbacks, including poor electrical conductivity, lower energy density, and huge volume expansion, will result in the pulverization of electrode materials and restricted electrochemical kinetics, thus leading to poor rate capability and rapid capacity fading. Composite electrodes based on transition metal oxides and carbon-based materials are considered to be promising candidates for overcoming these limitations. Herein, we reported a preparation method of hybrid ZIFs derived Zn-doped Co(3)O(4)/carbon (Zn-Co(3)O(4)/C-230) particles semi-embedded in wood-derived carbon skeleton for integrated electrodes. A large specific surface area, excellent conductivity, and electrochemical stability provide a larger electrochemical activity and potential window for the electrode. Prepared Zn-Co(3)O(4)@CW-230 electrode (0.6 mm thick) displays ultrahigh area specific capacitances of 7.83 and 6.46 F cm(−2) at the current densities of 5 and 30 mA cm(−2), respectively. Moreover, a symmetric supercapacitor assembled by two identical Zn-Co(3)O(4)@CW-230 electrodes delivers a superior area-specific capacitance of 2.61 F cm(−2) at the current densities of 5 mA cm(−2) and great energy densities of 0.36 mWh cm(−2) (6.0 mWh cm(−3)) at 2.5 mW cm(−2), while maintaining 97.3% of initial capacitance over 10,000 cycles. It notably outperforms those of most carbon-based metal oxides, endowing the Zn-Co(3)O(4)@CW-230 with extensive prospects for practical application.
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spelling pubmed-97396162022-12-11 Semi-Embedding Zn-Co(3)O(4) Derived from Hybrid ZIFs into Wood-Derived Carbon for High-Performance Supercapacitors Xiong, Wanning Ouyang, Jie Wang, Xiaoman Hua, Ziheng Zhao, Linlin Li, Mengyao Lu, Yuxin Yin, Wei Liu, Gonggang Zhou, Cui Luo, Yongfeng Xu, Binghui Molecules Article Transition metal oxides (TMOs) can provide high theoretical capacitance due to the change of multiple valence states of transition metals. However, their intrinsic drawbacks, including poor electrical conductivity, lower energy density, and huge volume expansion, will result in the pulverization of electrode materials and restricted electrochemical kinetics, thus leading to poor rate capability and rapid capacity fading. Composite electrodes based on transition metal oxides and carbon-based materials are considered to be promising candidates for overcoming these limitations. Herein, we reported a preparation method of hybrid ZIFs derived Zn-doped Co(3)O(4)/carbon (Zn-Co(3)O(4)/C-230) particles semi-embedded in wood-derived carbon skeleton for integrated electrodes. A large specific surface area, excellent conductivity, and electrochemical stability provide a larger electrochemical activity and potential window for the electrode. Prepared Zn-Co(3)O(4)@CW-230 electrode (0.6 mm thick) displays ultrahigh area specific capacitances of 7.83 and 6.46 F cm(−2) at the current densities of 5 and 30 mA cm(−2), respectively. Moreover, a symmetric supercapacitor assembled by two identical Zn-Co(3)O(4)@CW-230 electrodes delivers a superior area-specific capacitance of 2.61 F cm(−2) at the current densities of 5 mA cm(−2) and great energy densities of 0.36 mWh cm(−2) (6.0 mWh cm(−3)) at 2.5 mW cm(−2), while maintaining 97.3% of initial capacitance over 10,000 cycles. It notably outperforms those of most carbon-based metal oxides, endowing the Zn-Co(3)O(4)@CW-230 with extensive prospects for practical application. MDPI 2022-12-05 /pmc/articles/PMC9739616/ /pubmed/36500661 http://dx.doi.org/10.3390/molecules27238572 Text en © 2022 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
Xiong, Wanning
Ouyang, Jie
Wang, Xiaoman
Hua, Ziheng
Zhao, Linlin
Li, Mengyao
Lu, Yuxin
Yin, Wei
Liu, Gonggang
Zhou, Cui
Luo, Yongfeng
Xu, Binghui
Semi-Embedding Zn-Co(3)O(4) Derived from Hybrid ZIFs into Wood-Derived Carbon for High-Performance Supercapacitors
title Semi-Embedding Zn-Co(3)O(4) Derived from Hybrid ZIFs into Wood-Derived Carbon for High-Performance Supercapacitors
title_full Semi-Embedding Zn-Co(3)O(4) Derived from Hybrid ZIFs into Wood-Derived Carbon for High-Performance Supercapacitors
title_fullStr Semi-Embedding Zn-Co(3)O(4) Derived from Hybrid ZIFs into Wood-Derived Carbon for High-Performance Supercapacitors
title_full_unstemmed Semi-Embedding Zn-Co(3)O(4) Derived from Hybrid ZIFs into Wood-Derived Carbon for High-Performance Supercapacitors
title_short Semi-Embedding Zn-Co(3)O(4) Derived from Hybrid ZIFs into Wood-Derived Carbon for High-Performance Supercapacitors
title_sort semi-embedding zn-co(3)o(4) derived from hybrid zifs into wood-derived carbon for high-performance supercapacitors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739616/
https://www.ncbi.nlm.nih.gov/pubmed/36500661
http://dx.doi.org/10.3390/molecules27238572
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