Lithium-ion batteries based on SnO2 electrodes and a LiTFSI-Pip14TFSI ionic liquid electrolyte
Journal article, 2017

The performance of lithium-ion batteries (LIBs) comprising SnO2 electrodes and an ionic liquid (IL) based electrolyte, i.e., 0.5 M LiTFSI in Pip14TFSI, has been studied at room temperature (i.e., 22°C) and 80°C. While the high viscosity and low conductivity of the electrolyte resulted in high overpotentials and low capacities at room temperature, the SnO2 performance at 80°C was found to be analogous to that seen at room temperature using a standard LP40 electrolyte (i.e., 1 M LiPF6 dissolved in 1:1 ethylene carbonate and diethyl carbonate). Significant reduction of the IL was, however, found at 80°C, which resulted in low coulombic efficiencies during the first 20 cycles, most likely due to a growing SEI layer and the formation of soluble IL reduction products. X-ray photoelectron spectroscopy studies of the cycled SnO2 electrodes indicated the presence of an at least 10 nm thick solid electrolyte interphase (SEI) layer composed of inorganic components such as lithium fluoride, sulfates, and nitrides as well as organic species containing C-H, C-F and C-N bonds.

Author

Solveig Böhme

Uppsala University

Manfred Kerner

Chalmers, Physics, Condensed Matter Physics

Johan Scheers

Chalmers, Physics, Condensed Matter Physics

Patrik Johansson

Chalmers, Physics, Condensed Matter Physics

Kristina Edström

Uppsala University

Leif Nyholm

Uppsala University

Journal of the Electrochemical Society

0013-4651 (ISSN) 1945-7111 (eISSN)

Vol. 164 4 A701-A708

Driving Forces

Sustainable development

Areas of Advance

Energy

Materials Science

Subject Categories

Other Physics Topics

Chemical Sciences

DOI

10.1149/2.0861704jes

More information

Latest update

8/22/2022