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Enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted PP separator

Even after a decade of research and rapid development of lithium–sulfur (Li–S) batteries, the infamous shuttle effect of lithium polysulfide is still the major challenge hindering the commercialization of Li–S batteries. In order to further address this issue, a functionalized PP separator is obtain...

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Autores principales: Zhou, Haifeng, Tang, Qunli, Xu, Qianer, Zhang, Yan, Huang, Cong, Xu, Yali, Hu, Aiping, Chen, Xiaohua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9053766/
https://www.ncbi.nlm.nih.gov/pubmed/35517231
http://dx.doi.org/10.1039/d0ra02833a
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author Zhou, Haifeng
Tang, Qunli
Xu, Qianer
Zhang, Yan
Huang, Cong
Xu, Yali
Hu, Aiping
Chen, Xiaohua
author_facet Zhou, Haifeng
Tang, Qunli
Xu, Qianer
Zhang, Yan
Huang, Cong
Xu, Yali
Hu, Aiping
Chen, Xiaohua
author_sort Zhou, Haifeng
collection PubMed
description Even after a decade of research and rapid development of lithium–sulfur (Li–S) batteries, the infamous shuttle effect of lithium polysulfide is still the major challenge hindering the commercialization of Li–S batteries. In order to further address this issue, a functionalized PP separator is obtained through selective single-sided chemical tailoring, and then organosiloxane fumigation grafting. During the charge–discharge process, the grafted functional groups can effectively block the transportation of the dissolved polysulfides through strong chemical anchoring, inhibit the shuttle effect and greatly enhance the cycle stability of the Li–S battery. Interestingly, the specially designed single-sided enlarged channel structure formed by chemical tailoring can well accommodate the deposition with intermediate polysulfides on the separator surface toward the cathode chamber, resulting in enhanced initial discharge capacity and rate performance. Compared to the battery assembled with PP, the Li–S battery employing the separator grafted with a 3-ureidopropyltrimethoxysilane (PP–O(x−)–U) displays better electrochemical performance. Even at 2C, it can still deliver a high capacity of 786 mA h g(−1), and retain a capacity of 410 mA h g(−1) with a low capacity fading of 0.095% per cycle over 500 cycles. This work provides a very promising and feasible strategy for the development of a special functionalization PP separator for Li–S batteries with high electrochemical performance.
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spelling pubmed-90537662022-05-04 Enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted PP separator Zhou, Haifeng Tang, Qunli Xu, Qianer Zhang, Yan Huang, Cong Xu, Yali Hu, Aiping Chen, Xiaohua RSC Adv Chemistry Even after a decade of research and rapid development of lithium–sulfur (Li–S) batteries, the infamous shuttle effect of lithium polysulfide is still the major challenge hindering the commercialization of Li–S batteries. In order to further address this issue, a functionalized PP separator is obtained through selective single-sided chemical tailoring, and then organosiloxane fumigation grafting. During the charge–discharge process, the grafted functional groups can effectively block the transportation of the dissolved polysulfides through strong chemical anchoring, inhibit the shuttle effect and greatly enhance the cycle stability of the Li–S battery. Interestingly, the specially designed single-sided enlarged channel structure formed by chemical tailoring can well accommodate the deposition with intermediate polysulfides on the separator surface toward the cathode chamber, resulting in enhanced initial discharge capacity and rate performance. Compared to the battery assembled with PP, the Li–S battery employing the separator grafted with a 3-ureidopropyltrimethoxysilane (PP–O(x−)–U) displays better electrochemical performance. Even at 2C, it can still deliver a high capacity of 786 mA h g(−1), and retain a capacity of 410 mA h g(−1) with a low capacity fading of 0.095% per cycle over 500 cycles. This work provides a very promising and feasible strategy for the development of a special functionalization PP separator for Li–S batteries with high electrochemical performance. The Royal Society of Chemistry 2020-05-12 /pmc/articles/PMC9053766/ /pubmed/35517231 http://dx.doi.org/10.1039/d0ra02833a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhou, Haifeng
Tang, Qunli
Xu, Qianer
Zhang, Yan
Huang, Cong
Xu, Yali
Hu, Aiping
Chen, Xiaohua
Enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted PP separator
title Enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted PP separator
title_full Enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted PP separator
title_fullStr Enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted PP separator
title_full_unstemmed Enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted PP separator
title_short Enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted PP separator
title_sort enhanced performance of lithium–sulfur batteries based on single-sided chemical tailoring, and organosiloxane grafted pp separator
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9053766/
https://www.ncbi.nlm.nih.gov/pubmed/35517231
http://dx.doi.org/10.1039/d0ra02833a
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