Ultrathin positively charged electrode skin for durable anion-intercalation battery chemistries
dc.bibliographicCitation.firstPage | 760 | |
dc.bibliographicCitation.issue | 1 | |
dc.bibliographicCitation.journalTitle | Nature Communications | eng |
dc.bibliographicCitation.volume | 14 | |
dc.contributor.author | Sabaghi, Davood | |
dc.contributor.author | Wang, Zhiyong | |
dc.contributor.author | Bhauriyal, Preeti | |
dc.contributor.author | Lu, Qiongqiong | |
dc.contributor.author | Morag, Ahiud | |
dc.contributor.author | Mikhailovia, Daria | |
dc.contributor.author | Hashemi, Payam | |
dc.contributor.author | Li, Dongqi | |
dc.contributor.author | Neumann, Christof | |
dc.contributor.author | Liao, Zhongquan | |
dc.contributor.author | Dominic, Anna Maria | |
dc.contributor.author | Nia, Ali Shaygan | |
dc.contributor.author | Dong, Renhao | |
dc.contributor.author | Zschech, Ehrenfried | |
dc.contributor.author | Turchanin, Andrey | |
dc.contributor.author | Heine, Thomas | |
dc.contributor.author | Yu, Minghao | |
dc.contributor.author | Feng, Xinliang | |
dc.date.accessioned | 2023-06-02T15:00:34Z | |
dc.date.available | 2023-06-02T15:00:34Z | |
dc.date.issued | 2023 | |
dc.description.abstract | The anion-intercalation chemistries of graphite have the potential to construct batteries with promising energy and power breakthroughs. Here, we report the use of an ultrathin, positively charged two-dimensional poly(pyridinium salt) membrane (C2DP) as the graphite electrode skin to overcome the critical durability problem. Large-area C2DP enables the conformal coating on the graphite electrode, remarkably alleviating the electrolyte. Meanwhile, the dense face-on oriented single crystals with ultrathin thickness and cationic backbones allow C2DP with high anion-transport capability and selectivity. Such desirable anion-transport properties of C2DP prevent the cation/solvent co-intercalation into the graphite electrode and suppress the consequent structure collapse. An impressive PF6−-intercalation durability is demonstrated for the C2DP-covered graphite electrode, with capacity retention of 92.8% after 1000 cycles at 1 C and Coulombic efficiencies of > 99%. The feasibility of constructing artificial ion-regulating electrode skins with precisely customized two-dimensional polymers offers viable means to promote problematic battery chemistries. | eng |
dc.description.version | publishedVersion | eng |
dc.identifier.uri | https://oa.tib.eu/renate/handle/123456789/12274 | |
dc.identifier.uri | http://dx.doi.org/10.34657/11306 | |
dc.language.iso | eng | |
dc.publisher | [London] : Nature Publishing Group UK | |
dc.relation.doi | https://doi.org/10.1038/s41467-023-36384-5 | |
dc.relation.essn | 2041-1723 | |
dc.rights.license | CC BY 4.0 Unported | |
dc.rights.uri | https://creativecommons.org/licenses/by/4.0 | |
dc.subject.ddc | 500 | |
dc.subject.other | anion | eng |
dc.subject.other | durability | eng |
dc.subject.other | electrode | eng |
dc.subject.other | fuel cell | eng |
dc.subject.other | graphite | eng |
dc.subject.other | membrane | eng |
dc.title | Ultrathin positively charged electrode skin for durable anion-intercalation battery chemistries | eng |
dc.type | Article | eng |
dc.type | Text | eng |
tib.accessRights | openAccess | |
wgl.contributor | IFWD | |
wgl.subject | Chemie | ger |
wgl.type | Zeitschriftenartikel | ger |
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