Molecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes
Polymer binders in battery electrodes can affect their performance, however design rules are still lacking. Here, the authors reveal why polyelectrolyte binders outperform charge-neutral alternatives in lithium–sulfur batteries, showing how cationic polyelectrolytes can regulate ion transport select...
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Nature Portfolio
2017
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oai:doaj.org-article:1d14dbfca7534c25a4346713d7de1d2b2021-12-02T14:40:36ZMolecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes10.1038/s41467-017-02410-62041-1723https://doaj.org/article/1d14dbfca7534c25a4346713d7de1d2b2017-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-02410-6https://doaj.org/toc/2041-1723Polymer binders in battery electrodes can affect their performance, however design rules are still lacking. Here, the authors reveal why polyelectrolyte binders outperform charge-neutral alternatives in lithium–sulfur batteries, showing how cationic polyelectrolytes can regulate ion transport selectively.Longjun LiTod A. PascalJustin G. ConnellFrank Y. FanStephen M. MecklerLin MaYet-Ming ChiangDavid PrendergastBrett A. HelmsNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-10 (2017) |
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Science Q Longjun Li Tod A. Pascal Justin G. Connell Frank Y. Fan Stephen M. Meckler Lin Ma Yet-Ming Chiang David Prendergast Brett A. Helms Molecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes |
description |
Polymer binders in battery electrodes can affect their performance, however design rules are still lacking. Here, the authors reveal why polyelectrolyte binders outperform charge-neutral alternatives in lithium–sulfur batteries, showing how cationic polyelectrolytes can regulate ion transport selectively. |
format |
article |
author |
Longjun Li Tod A. Pascal Justin G. Connell Frank Y. Fan Stephen M. Meckler Lin Ma Yet-Ming Chiang David Prendergast Brett A. Helms |
author_facet |
Longjun Li Tod A. Pascal Justin G. Connell Frank Y. Fan Stephen M. Meckler Lin Ma Yet-Ming Chiang David Prendergast Brett A. Helms |
author_sort |
Longjun Li |
title |
Molecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes |
title_short |
Molecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes |
title_full |
Molecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes |
title_fullStr |
Molecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes |
title_full_unstemmed |
Molecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes |
title_sort |
molecular understanding of polyelectrolyte binders that actively regulate ion transport in sulfur cathodes |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/1d14dbfca7534c25a4346713d7de1d2b |
work_keys_str_mv |
AT longjunli molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes AT todapascal molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes AT justingconnell molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes AT frankyfan molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes AT stephenmmeckler molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes AT linma molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes AT yetmingchiang molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes AT davidprendergast molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes AT brettahelms molecularunderstandingofpolyelectrolytebindersthatactivelyregulateiontransportinsulfurcathodes |
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1718390220346359808 |