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Stabilizing the Li$_{1.3}$Al$_{0.3}$Ti$_{1.7}$ (PO$_{4}$) $_{3}$|Li Interface for High Efficiency and Long Lifespan Quasi-Solid-State Lithium Metal Batteries

Chen, Zhen 1; Stepien, Dominik 1; Wu, Fanglin 1; Zarrabeitia, Maider ORCID iD icon 1; Liang, Hai-Peng 1; Kim, Jae-Kwang; Kim, Guk-Tae 1; Passerini, Stefano 2
1 Karlsruher Institut für Technologie (KIT)
2 Helmholtz-Institut Ulm (HIU), Karlsruher Institut für Technologie (KIT)

Abstract:

To tackle the poor chemical/electrochemical stability of Li$_{1+x }$Al$_{x}$Ti$_{2-x}$(PO$_{4}$) $_{3}$ (LATP) against Li and poor electrode|electrolyte interfacial contact, a thin poly[2,3-bis(2,2,6,6-tetramethylpiperidine-N-oxycarbonyl)norbornene] (PTNB) protection layer is applied with a small amount of ionic liquid electrolyte (ILE). This enables study of the impact of ILEs with modulated composition, such as 0.3 lithium bis(fluoromethanesulfonyl)imide (LiFSI)-0.7 N-butyl-N-methylpyrrolidinium bis(fluoromethanesulfonyl)imide (Pyr$_{14}$FSI) and 0.3 LiFSI-0.35 Pyr14FSI-0.35 N-butyl-N-methylpyrrolidinium bis(trifluoromethanesulfonyl)imide (Pyr$_{14}$TFSI), on the interfacial stability of PTNB@Li||PTNB@Li and PTNB@Li||LiNi$_{0.8}$Co$_{0.1}$Mn$_{0.1}$O$_{2}$ cells. The addition of Pyr$_{14}$TFSI leads to better thermal and electrochemical stability. Furthermore, Pyr$_{14}$TFSI facilitates the formation of a more stable Li|hybrid electrolyte interface, as verified by the absence of lithium “pitting corrosion islands” and fibrous dendrites, leading to a substantially extended lithium stripping-plating cycling lifetime (>900 h). Even after 500 cycles (0.5C), PTNB@Li||LiNi$_{0.8}$Co$_{0.1}$Mn$_{0.1}$O$_{2}$ cells achieve an impressive capacity retention of 89.1 % and an average Coulombic efficiency of 98.6 %. ... mehr


Verlagsausgabe §
DOI: 10.5445/IR/1000146039
Veröffentlicht am 11.05.2022
Originalveröffentlichung
DOI: 10.1002/cssc.202200038
Scopus
Zitationen: 12
Web of Science
Zitationen: 19
Dimensions
Zitationen: 12
Cover der Publikation
Zugehörige Institution(en) am KIT Helmholtz-Institut Ulm (HIU)
Publikationstyp Zeitschriftenaufsatz
Publikationsjahr 2022
Sprache Englisch
Identifikator ISSN: 1864-5631, 1864-564X
KITopen-ID: 1000146039
HGF-Programm 38.02.01 (POF IV, LK 01) Fundamentals and Materials
Erschienen in ChemSusChem
Verlag Wiley-VCH Verlag
Band 15
Heft 12
Seiten e202200038
Bemerkung zur Veröffentlichung This article also appears in: Hot Topic: Batteries and Supercapacitors
Vorab online veröffentlicht am 16.03.2022
Nachgewiesen in Web of Science
Dimensions
Scopus
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