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Conducting polymer-coated MIL-101/S composite with scale-like shell structure for improving Li–S batteries

Lithium–sulfur batteries are regarded as a promising energy storage system. However, they are plagued by rapid capacity decay, low coulombic efficiency, a severe shuttle effect and low sulfur loading in cathodes. To address these problems, effective carriers are highly demanded to encapsulate sulfur...

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Detalles Bibliográficos
Autores principales: Jin, Wen-Wu., Li, He-Jun., Zou, Ji-Zhao., Zeng, Shao-Zhong., Li, Qing-Duan., Xu, Guo-Zhong., Sheng, Hong-Chao., Wang, Bei-Bei., Si, Yun-Hui., Yu, Liang., Zeng, Xie-Rong.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9077768/
https://www.ncbi.nlm.nih.gov/pubmed/35539531
http://dx.doi.org/10.1039/c7ra12800b
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author Jin, Wen-Wu.
Li, He-Jun.
Zou, Ji-Zhao.
Zeng, Shao-Zhong.
Li, Qing-Duan.
Xu, Guo-Zhong.
Sheng, Hong-Chao.
Wang, Bei-Bei.
Si, Yun-Hui.
Yu, Liang.
Zeng, Xie-Rong.
author_facet Jin, Wen-Wu.
Li, He-Jun.
Zou, Ji-Zhao.
Zeng, Shao-Zhong.
Li, Qing-Duan.
Xu, Guo-Zhong.
Sheng, Hong-Chao.
Wang, Bei-Bei.
Si, Yun-Hui.
Yu, Liang.
Zeng, Xie-Rong.
author_sort Jin, Wen-Wu.
collection PubMed
description Lithium–sulfur batteries are regarded as a promising energy storage system. However, they are plagued by rapid capacity decay, low coulombic efficiency, a severe shuttle effect and low sulfur loading in cathodes. To address these problems, effective carriers are highly demanded to encapsulate sulfur in order to extend the cycle life. Herein, we introduced a doped-PEDOT:PSS-coated MIL-101/S multi-core–shell structured composite. The unique structure of MIL-101, large specific area and conductive shell ensure high dispersion of sulfur in the composite and minimize the loss of polysulfides to the electrolyte. The doped-PEDOT:PSS-coated sulfur electrodes exhibited an increase in initial capacity and an improvement in rate characteristics. After 192 cycles at the current density of 0.1C, a doped-PEDOT:PSS-coated MIL-101/S electrode maintained a capacity of 606.62 mA h g(−1), while the MIL-101/S@PEDOT:PSS electrode delivered a capacity of 456.69 mA h g(−1). The EIS measurement revealed that the surface modification with the conducting polymer provided a lower resistance to the sulfur electrode, which resulted in better electrochemical behaviors in Li–S battery applications. Test results indicate that the MIL-101/S@doped-PEDOT:PSS is a promising host material for the sulfur cathode in the lithium–sulfur battery applications.
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spelling pubmed-90777682022-05-09 Conducting polymer-coated MIL-101/S composite with scale-like shell structure for improving Li–S batteries Jin, Wen-Wu. Li, He-Jun. Zou, Ji-Zhao. Zeng, Shao-Zhong. Li, Qing-Duan. Xu, Guo-Zhong. Sheng, Hong-Chao. Wang, Bei-Bei. Si, Yun-Hui. Yu, Liang. Zeng, Xie-Rong. RSC Adv Chemistry Lithium–sulfur batteries are regarded as a promising energy storage system. However, they are plagued by rapid capacity decay, low coulombic efficiency, a severe shuttle effect and low sulfur loading in cathodes. To address these problems, effective carriers are highly demanded to encapsulate sulfur in order to extend the cycle life. Herein, we introduced a doped-PEDOT:PSS-coated MIL-101/S multi-core–shell structured composite. The unique structure of MIL-101, large specific area and conductive shell ensure high dispersion of sulfur in the composite and minimize the loss of polysulfides to the electrolyte. The doped-PEDOT:PSS-coated sulfur electrodes exhibited an increase in initial capacity and an improvement in rate characteristics. After 192 cycles at the current density of 0.1C, a doped-PEDOT:PSS-coated MIL-101/S electrode maintained a capacity of 606.62 mA h g(−1), while the MIL-101/S@PEDOT:PSS electrode delivered a capacity of 456.69 mA h g(−1). The EIS measurement revealed that the surface modification with the conducting polymer provided a lower resistance to the sulfur electrode, which resulted in better electrochemical behaviors in Li–S battery applications. Test results indicate that the MIL-101/S@doped-PEDOT:PSS is a promising host material for the sulfur cathode in the lithium–sulfur battery applications. The Royal Society of Chemistry 2018-01-26 /pmc/articles/PMC9077768/ /pubmed/35539531 http://dx.doi.org/10.1039/c7ra12800b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Jin, Wen-Wu.
Li, He-Jun.
Zou, Ji-Zhao.
Zeng, Shao-Zhong.
Li, Qing-Duan.
Xu, Guo-Zhong.
Sheng, Hong-Chao.
Wang, Bei-Bei.
Si, Yun-Hui.
Yu, Liang.
Zeng, Xie-Rong.
Conducting polymer-coated MIL-101/S composite with scale-like shell structure for improving Li–S batteries
title Conducting polymer-coated MIL-101/S composite with scale-like shell structure for improving Li–S batteries
title_full Conducting polymer-coated MIL-101/S composite with scale-like shell structure for improving Li–S batteries
title_fullStr Conducting polymer-coated MIL-101/S composite with scale-like shell structure for improving Li–S batteries
title_full_unstemmed Conducting polymer-coated MIL-101/S composite with scale-like shell structure for improving Li–S batteries
title_short Conducting polymer-coated MIL-101/S composite with scale-like shell structure for improving Li–S batteries
title_sort conducting polymer-coated mil-101/s composite with scale-like shell structure for improving li–s batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9077768/
https://www.ncbi.nlm.nih.gov/pubmed/35539531
http://dx.doi.org/10.1039/c7ra12800b
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