Influence of lithium-xyxlo-difluoromethane-1,1-bis(sulfonyl)imide as electrlyte additive on the reversibility of lithium metal batteries

Murmann P, Boerner M, Cekic-Laskovic I, Winter M

Research article (journal) | Peer reviewed

Abstract

Electrolyte solutions containing lithium-cyclo-difluoromethane-1,1-bis(sulfonyl)imide (LiDMSI) as an additive were specifically designed for measurements in lithium plating-stripping model experiments on copper electrodes. LiDMSI was implemented into two different electrolyte solutions. The first electrolyte setup consisted of a 1M solution of LiTFSI in PC as an electrolyte which is known to show a comparably limited performance for reversible Li deposition. The second setup was comprised 1M LiAsF6 in 1,3-dioxolane as the base electrolyte which depicts a well-tested performance for lithium deposition–dissolution. The addition of LiDMSI yielded significantly improved results in regard to Coulombic efficiencies and cycling stability in both electrolyte compositions. Furthermore, it negated the formation of high surface area, e.g., dendritic lithium, which depicts the main source for the limited safety of rechargeable lithium metal batteries. In the case of the PC-based electrolyte system, the LiDMSI-containing electrolyte illustrates a slightly lowered over-potential on the copper substrate, while for the dioxolane-based setup the over-potentials were almost completely equal. In order to compare the morphologies of the lithium deposits, SEM images were utilized.

Details about the publication

JournalJournal of Applied Electrochemistry
Volumexxx
Page range1-10
StatusPublished
Release year2016 (11/01/2016)
Language in which the publication is writtenEnglish
KeywordsElectrolyte additives; Lithium metal battery; Solid electrolyte interphase (SEI); Lithium-cyclo-difluoromethane-1,1-bis(sulfonyl)imide (LiDMSI); Deposition–dissolution; Plating–stripping

Authors from the University of Münster

Börner, Markus
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Cekic-Laskovic, Isidora
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Murmann, Patrick
Münster Electrochemical Energy Technology Battery Research Center (MEET)
Winter, Martin
Münster Electrochemical Energy Technology Battery Research Center (MEET)