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Updated: Jun 19, 2026

Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications
Published on: August 12, 2013
Ternary Potassium Single Cation Ionic Liquid Electrolyte for Potassium Secondary Batteries
Hiroki Yamamoto1,2, Keigo Kubota2, Jinkwang Hwang1
1Graduate School of Energy Science, Kyoto University, Kyoto 606-8501, Japan.
Abstract:
Potassium single cation ionic liquids (K-SCILs), which solely contain K+ as the cationic species, realize exceptionally high K+ concentrations and exhibit unique physicochemical and electrochemical properties. However, K-SCILs tend to have high melting points due to the smaller size of K+ than those of bulky organic cations, resulting in high operating temperatures for battery applications. In this study, a K-SCIL with a melting point below that of K metal (64 °C) was developed by evolving a binary system to a ternary one. The resulting K-SCIL, K[FSA]0.33[FTA]0.33[TfO]0.33 (FSA-: bis(fluorosulfonyl)amide, FTA-: (fluorosulfonyl)(trifluoromethanesulfonyl)amide, and TfO-: trifluoromethanesulfonate), has a low melting point of 50 °C with a high K+ concentration of 9.3 mol dm-3 at 55 °C. It allows the safe handling of K metal and exhibits improved solid K metal deposition/dissolution compared to a conventional organic electrolyte. The K-SCIL does not involve the formation of a K+ concentration gradient near the electrode surface, which is demonstrated by the applicability of large currents exceeding a limiting current density assumed by calculation. Furthermore, stable K+ intercalation/deintercalation into/from graphite was successfully demonstrated at 55 °C, highlighting the potential of this K-SCIL for advanced potassium battery applications.
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