Challenges in XPS Analysis of PEO‐LiTFSI‐based Solid Electrolytes: How to Overcome X‐ray‐Induced Photodecomposition

Author:

Yusim Yuriy12ORCID,Moryson Yannik12ORCID,Seipp Kevin3,Sann Joachim12ORCID,Henss Anja12ORCID

Affiliation:

1. Institute of Physical Chemistry Justus Liebig University Giessen Heinrich-Buff-Ring 17 35392 Giessen Germany

2. Center for Materials Research (ZfM/LaMa) Justus Liebig University Giessen Heinrich-Buff-Ring 16 35392 Giessen Germany

3. Department of Chemistry Johannes Gutenberg University Duesbergweg 10–14 55128 Mainz Germany

Abstract

AbstractThe cycle life of poly(ethylene oxide) (PEO) batteries containing lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) is hindered by interfacial (electro)chemical electrolyte decomposition, a process traditionally examined via X‐ray photoelectron spectroscopy (XPS). Our research presents a critical examination of X‐ray induced photodecomposition, commonly misinterpreted as (electro)chemical electrolyte decomposition, in PEO‐LiTFSI systems and those with NCM cathodes. We provide novel insights into this X‐ray induced photodecomposition process and show that it is particularly pronounced when LiTFSI is dissolved and not in its pure state. Most importantly, we reveal that cryogenic measurement conditions can almost completely mitigate this photodecomposition. This insight not only deepens the understanding of photodecomposition within XPS analyses but also provides a transformative approach to the accurate characterization of electrolyte materials in lithium batteries.

Publisher

Wiley

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