Stabilizing the Cathode Interphase of LNMO using an Ionic‐liquid based Electrolyte

Author:

Østli Elise R.1ORCID,Mathew Alma2ORCID,Tolchard Julian R.3,Brandell Daniel2ORCID,Svensson Ann Mari1ORCID,Selbach Sverre M.1ORCID,Wagner Nils P.13ORCID

Affiliation:

1. Department of Materials Science and Engineering NTNU Norwegian University of Science and Technology 7491 Trondheim Norway

2. Department of Chemistry – Ångström Laboratory Uppsala University Box 538 75121 Uppsala Sweden

3. SINTEF Industry 7491 Trondheim Norway

Abstract

AbstractThe ionic liquid (IL)‐based electrolyte comprising 1.2 M lithium bis(fluorosulfonyl)imide (LiFSI) in N‐propyl‐N‐methylpyrrolidinium bis(fluorosulfonyl)imide (PYR13FSI) (ILE) has been evaluated as a suitable system for the high‐voltage cathode material LiNi0.5−xMn1.5+xO4 (LNMO) when cycled vs. graphite anodes. The oxidative stability of the ILE was evaluated by linear sweep voltammetry (LSV) and synthetic charge‐discharge profile voltammetry (SCPV) and was found to exceed that of state‐of‐the‐art 1 M LiPF6 in 1 : 1 ethylene carbonate (EC) : diethylcarbonate (DEC) (LP40). Improved cycling performance both at 20 °C and 45 °C was found for LNMO||graphite full cells with the IL electrolyte. X‐ray photoelectron spectroscopy (XPS) analysis showed that robust and predominantly inorganic surface layers were formed on the LNMO cathode using the ILE, which stabilized the electrode. Although the high viscosity of the ILE limits the rate performance at 20 °C, this ILE is a promising alternative electrolyte for use in lithium‐ion batteries (LiBs) with high‐voltage cathodes such as LNMO, especially for use at elevated temperatures.

Funder

Norges Forskningsråd

Publisher

Wiley

Subject

Electrochemistry,Electrical and Electronic Engineering,Energy Engineering and Power Technology

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