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Bimetallic Metal-Organic Framework-Derived Carbon Nanotube-Based Frameworks for Enhanced Capacitive Deionization and Zn-Air Battery

Carbon-based materials have attracted intensive attentions for a wide range of energy and environment-related applications. Energy storage/conversion devices with improved performance have been achieved by utilization of metal-organic-framework (MOF)-derived carbon structures as active materials in...

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Autores principales: Shi, Wenhui, Xu, Xilian, Ye, Chenzeng, Sha, Dongyong, Yin, Ruilian, Shen, Xuhai, Liu, Xiaoyue, Liu, Wenxian, Shen, Jiangnan, Cao, Xiehong, Gao, Congjie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6593352/
https://www.ncbi.nlm.nih.gov/pubmed/31275928
http://dx.doi.org/10.3389/fchem.2019.00449
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author Shi, Wenhui
Xu, Xilian
Ye, Chenzeng
Sha, Dongyong
Yin, Ruilian
Shen, Xuhai
Liu, Xiaoyue
Liu, Wenxian
Shen, Jiangnan
Cao, Xiehong
Gao, Congjie
author_facet Shi, Wenhui
Xu, Xilian
Ye, Chenzeng
Sha, Dongyong
Yin, Ruilian
Shen, Xuhai
Liu, Xiaoyue
Liu, Wenxian
Shen, Jiangnan
Cao, Xiehong
Gao, Congjie
author_sort Shi, Wenhui
collection PubMed
description Carbon-based materials have attracted intensive attentions for a wide range of energy and environment-related applications. Energy storage/conversion devices with improved performance have been achieved by utilization of metal-organic-framework (MOF)-derived carbon structures as active materials in recent years. However, the effects of MOF precursors on the performance of derived carbon materials are rarely investigated. Here, we report that the incorporation of small amount of Fe or Ni in Co-based MOFs leads to a significant enhancement for the derived carbon nanotube-based frameworks (CNTFs) in Na(+)/Cl(−) ion electrosorption. Further investigation revealed the enhanced performance can be attributed to the improved specific surface area, electrical conductivity, and electrochemical activity. Notably, the CoFe-CNTF derived from bimetallic CoFe-MOFs achieves a high ion adsorption capacity of 37.0 mg g(−1), superior to most of recently reported carbon-based materials. Furthermore, the CoFe-CNTF also demonstrates high catalytic activity toward oxygen evolution reaction (OER) with a Tafel slope of 87.7 mV dec(−1). After combination with three-dimensional graphene foam (3DG), the resultant CoFe-CNTF-coated 3DG is used as air-cathode to fabricate a flexible all-solid-state Zn-air battery, which exhibits a high open circuit potential of 1.455 V. Importantly, the fabricated flexible battery can light a light-emitting diode (LED) even when it is bent. This work provides new insights into designs of high-performance and flexible electrode based on MOF-derived materials.
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spelling pubmed-65933522019-07-03 Bimetallic Metal-Organic Framework-Derived Carbon Nanotube-Based Frameworks for Enhanced Capacitive Deionization and Zn-Air Battery Shi, Wenhui Xu, Xilian Ye, Chenzeng Sha, Dongyong Yin, Ruilian Shen, Xuhai Liu, Xiaoyue Liu, Wenxian Shen, Jiangnan Cao, Xiehong Gao, Congjie Front Chem Chemistry Carbon-based materials have attracted intensive attentions for a wide range of energy and environment-related applications. Energy storage/conversion devices with improved performance have been achieved by utilization of metal-organic-framework (MOF)-derived carbon structures as active materials in recent years. However, the effects of MOF precursors on the performance of derived carbon materials are rarely investigated. Here, we report that the incorporation of small amount of Fe or Ni in Co-based MOFs leads to a significant enhancement for the derived carbon nanotube-based frameworks (CNTFs) in Na(+)/Cl(−) ion electrosorption. Further investigation revealed the enhanced performance can be attributed to the improved specific surface area, electrical conductivity, and electrochemical activity. Notably, the CoFe-CNTF derived from bimetallic CoFe-MOFs achieves a high ion adsorption capacity of 37.0 mg g(−1), superior to most of recently reported carbon-based materials. Furthermore, the CoFe-CNTF also demonstrates high catalytic activity toward oxygen evolution reaction (OER) with a Tafel slope of 87.7 mV dec(−1). After combination with three-dimensional graphene foam (3DG), the resultant CoFe-CNTF-coated 3DG is used as air-cathode to fabricate a flexible all-solid-state Zn-air battery, which exhibits a high open circuit potential of 1.455 V. Importantly, the fabricated flexible battery can light a light-emitting diode (LED) even when it is bent. This work provides new insights into designs of high-performance and flexible electrode based on MOF-derived materials. Frontiers Media S.A. 2019-06-19 /pmc/articles/PMC6593352/ /pubmed/31275928 http://dx.doi.org/10.3389/fchem.2019.00449 Text en Copyright © 2019 Shi, Xu, Ye, Sha, Yin, Shen, Liu, Liu, Shen, Cao and Gao. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Shi, Wenhui
Xu, Xilian
Ye, Chenzeng
Sha, Dongyong
Yin, Ruilian
Shen, Xuhai
Liu, Xiaoyue
Liu, Wenxian
Shen, Jiangnan
Cao, Xiehong
Gao, Congjie
Bimetallic Metal-Organic Framework-Derived Carbon Nanotube-Based Frameworks for Enhanced Capacitive Deionization and Zn-Air Battery
title Bimetallic Metal-Organic Framework-Derived Carbon Nanotube-Based Frameworks for Enhanced Capacitive Deionization and Zn-Air Battery
title_full Bimetallic Metal-Organic Framework-Derived Carbon Nanotube-Based Frameworks for Enhanced Capacitive Deionization and Zn-Air Battery
title_fullStr Bimetallic Metal-Organic Framework-Derived Carbon Nanotube-Based Frameworks for Enhanced Capacitive Deionization and Zn-Air Battery
title_full_unstemmed Bimetallic Metal-Organic Framework-Derived Carbon Nanotube-Based Frameworks for Enhanced Capacitive Deionization and Zn-Air Battery
title_short Bimetallic Metal-Organic Framework-Derived Carbon Nanotube-Based Frameworks for Enhanced Capacitive Deionization and Zn-Air Battery
title_sort bimetallic metal-organic framework-derived carbon nanotube-based frameworks for enhanced capacitive deionization and zn-air battery
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6593352/
https://www.ncbi.nlm.nih.gov/pubmed/31275928
http://dx.doi.org/10.3389/fchem.2019.00449
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