High-Performance Cells Containing Lithium Metal Anodes, LiNi<sub>0.6</sub>Co<sub>0.2</sub>Mn<sub>0.2</sub>O<sub>2</sub> (NCM 622) Cathodes, and Fluoroethylene Carbonate-Based Electrolyte Solution with Practical Loading

Gregory Salitra(Bar-Ilan University), Elena Markevich(Bar-Ilan University), Michal Afri(Bar-Ilan University), Yosef Talyosef(Bar-Ilan University), Pascal Hartmann(BASF (Germany)), Joern Kulisch(BASF (Germany)), Yang‐Kook Sun(Hanyang University), Doron Aurbach(Bar-Ilan University)
ACS Applied Materials & Interfaces
May 22, 2018
Cited by 95

Abstract

for more than 600 cycles, whereas symmetric Li|Li cells demonstrate stable performance for more than 1000 cycles even at higher areal capacity and current density. We attribute the excellent performance of both Li|NCM and Li|Li cells to the formation of a stable and efficient solid electrolyte interphase (SEI) on the surface of the Li metal electrodes cycled in FEC-based electrolyte solutions. The composition of the SEI on the Li and the NCM electrodes is analyzed by X-ray photoelectron spectroscopy and Fourier transform infrared spectroscopy. A drastic capacity fading of Li|NCM cells is observed, followed by spontaneous capacity recovery during prolonged cycling. This phenomenon depends on the current density and the amount of the electrolyte solution and relates to kinetic limitations because of SEI formation on the Li anodes in the FEC-based electrolyte solution.


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