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Polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries

Free-standing and flexible carbon nanofiber membranes (CNMs) with a three-dimensional network structure were fabricated based on PMDA/ODA polyimide by combining electrospinning, imidization, and carbonization strategies. The influence of carbonization temperature on the physical-chemical characteris...

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Autores principales: Xu, Hang, Yin, Chuanqiang, Hou, Xinran, Gong, Man, Yang, Changshu, Xu, Lexiang, Luo, Jinpeng, Ma, Lei, Zhou, Lang, Li, Xiaomin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9361005/
https://www.ncbi.nlm.nih.gov/pubmed/36043084
http://dx.doi.org/10.1039/d2ra03368b
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author Xu, Hang
Yin, Chuanqiang
Hou, Xinran
Gong, Man
Yang, Changshu
Xu, Lexiang
Luo, Jinpeng
Ma, Lei
Zhou, Lang
Li, Xiaomin
author_facet Xu, Hang
Yin, Chuanqiang
Hou, Xinran
Gong, Man
Yang, Changshu
Xu, Lexiang
Luo, Jinpeng
Ma, Lei
Zhou, Lang
Li, Xiaomin
author_sort Xu, Hang
collection PubMed
description Free-standing and flexible carbon nanofiber membranes (CNMs) with a three-dimensional network structure were fabricated based on PMDA/ODA polyimide by combining electrospinning, imidization, and carbonization strategies. The influence of carbonization temperature on the physical-chemical characteristics of CNMs was investigated in detail. The electrochemical performances of CNMs as free-standing electrodes without any binder or conducting materials for lithium-ion batteries were also discussed. Furthermore, the surface state and internal carbon structure had an important effect on the nitrogen state, electrical conductivity, and wettability of CNMs, and then further affected the electrochemical performances. The CNMs/Li metal half-cells exhibited a satisfying charge–discharge cycle performance and excellent rate performance. They showed that the reversible specific capacity of CNMs carbonized at 700 °C could reach as high as 430 mA h g(−1) at 50 mA g(−1), and the value of the specific capacity remained at 206 mA h g(−1) after 500 cycles at a high current density of 1 A g(−1). Overall, the newly developed carbon nanofiber membranes will be a promising candidate for flexible electrodes used in high-power lithium-ion batteries, supercapacitors and sodium-ion batteries.
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spelling pubmed-93610052022-08-29 Polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries Xu, Hang Yin, Chuanqiang Hou, Xinran Gong, Man Yang, Changshu Xu, Lexiang Luo, Jinpeng Ma, Lei Zhou, Lang Li, Xiaomin RSC Adv Chemistry Free-standing and flexible carbon nanofiber membranes (CNMs) with a three-dimensional network structure were fabricated based on PMDA/ODA polyimide by combining electrospinning, imidization, and carbonization strategies. The influence of carbonization temperature on the physical-chemical characteristics of CNMs was investigated in detail. The electrochemical performances of CNMs as free-standing electrodes without any binder or conducting materials for lithium-ion batteries were also discussed. Furthermore, the surface state and internal carbon structure had an important effect on the nitrogen state, electrical conductivity, and wettability of CNMs, and then further affected the electrochemical performances. The CNMs/Li metal half-cells exhibited a satisfying charge–discharge cycle performance and excellent rate performance. They showed that the reversible specific capacity of CNMs carbonized at 700 °C could reach as high as 430 mA h g(−1) at 50 mA g(−1), and the value of the specific capacity remained at 206 mA h g(−1) after 500 cycles at a high current density of 1 A g(−1). Overall, the newly developed carbon nanofiber membranes will be a promising candidate for flexible electrodes used in high-power lithium-ion batteries, supercapacitors and sodium-ion batteries. The Royal Society of Chemistry 2022-08-09 /pmc/articles/PMC9361005/ /pubmed/36043084 http://dx.doi.org/10.1039/d2ra03368b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Xu, Hang
Yin, Chuanqiang
Hou, Xinran
Gong, Man
Yang, Changshu
Xu, Lexiang
Luo, Jinpeng
Ma, Lei
Zhou, Lang
Li, Xiaomin
Polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries
title Polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries
title_full Polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries
title_fullStr Polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries
title_full_unstemmed Polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries
title_short Polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries
title_sort polyimide-derived carbon nanofiber membranes as free-standing anodes for lithium-ion batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9361005/
https://www.ncbi.nlm.nih.gov/pubmed/36043084
http://dx.doi.org/10.1039/d2ra03368b
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