Polymer electrolytes for potassium batteries: incorporating ionic liquids to enhance the room temperature ionic conductivity

被引:0
作者
Chen, Jinyu [1 ,2 ]
Ebrahimi-Koodehi, Sohelia [3 ]
Iliev, Boyan [4 ]
Steinberg, Yuval [5 ]
Leskes, Michal [5 ]
Schubert, Thomas J. S. [4 ]
Castillo-Martinez, Elizabeth [3 ]
Bresser, Dominic [1 ,2 ]
Zarrabeitia, Maider [1 ,2 ]
机构
[1] Helmholtz Inst Ulm HIU, Helmholtzstr 11, D-89081 Ulm, Germany
[2] Karlsruhe Inst Technol KIT, POB 3640, D-76021 Karlsruhe, Germany
[3] Univ Complutense Madrid, Dept Inorgan Chem, Madrid 28040, Spain
[4] Iolitec Ionic Liquids Technol GmbH, Zukunftspark 9, D-74076 Heilbronn, Germany
[5] Weizmann Inst Sci, Dept Mol Chem & Mat Sci, IL-761000 Rehovot, Israel
关键词
CATHODE;
D O I
10.1039/d5ta02762d
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Exploring the next generation of batteries based on sustainable materials is crucial for transitioning to a post-lithium-technology era. Potassium-based technology is one of the candidates that could fulfil the sustainability criteria. The electrolyte plays a crucial role in battery performance, being responsible for ionic transport, cycling performance, working temperature, and safety. Polyethylene oxide (PEO)-based solid polymer electrolytes (SPEs) have been extensively studied. However, one of the drawbacks of SPEs is their poor ionic conductivity at room temperature (RT). Quasi-solid and solvent-free polymer electrolytes are a promising solution to this issue, combining the benefits of a liquid phase and SPEs. This work focuses on the development of cross-linked PEO, fluorinated K salt, and ionic liquid (IL)-based solvent-free SPEs for potassium batteries. The designed cross-linked ternary solvent-free SPEs are thoroughly characterized both physicochemically and electrochemically, achieving ionic conductivities of up to 1.6 x 10-3 S cm-1 at 20 degrees C. The solvent-free SPEs were tested in K cells at 20 degrees C, using a Prussian white (PW) cathode as a proof-of-concept. The effects that different fluorinated anions, such as bis(fluoromethanesulfonyl) imide (FSI-) and bis(trifluoromethanesulfonyl) imide (TFSI-), have on the electrochemical performance were analysed by investigating the solid electrolyte interphase (SEI) formed on the K metal surface through electrochemical impedance spectroscopy (EIS), X-ray photoelectron spectroscopy (XPS) and magic-angle spinning solid-state nuclear magnetic resonance spectroscopy (MAS-ssNMR).
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页码:25476 / 25488
页数:13
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