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Gel polymer electrolyte for lithium-ion batteries using triethyl phosphate solvent and ionic liquid with LiTFSI/LiTDI salts
University of Oulu, Research Unit of Sustainable Chemistry, P.O. 4300, FI-90014 University of Oulu, Finland.
University of Oulu, Opto-Electronics and Measurement Techniques Group, P.O. 4500, FI-90014 University of Oulu, Finland.
University of Oulu, Research Unit of Sustainable Chemistry, P.O. 4300, FI-90014 University of Oulu, Finland.
University of Oulu, Opto-Electronics and Measurement Techniques Group, P.O. 4500, FI-90014 University of Oulu, Finland.
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2026 (English)In: Materials Science & Engineering: B. Solid-state Materials for Advanced Technology, ISSN 0921-5107, E-ISSN 1873-4944, Vol. 333, article id 119801Article in journal (Refereed) Published
Abstract [en]

Batteries are used in daily basis throughout our modern society. Solid-state and semi-solid electrolytes offer optimistic candidate for battery materials by replacing the conventionally used toxic and highly flammable liquid electrolytes. Gel polymer electrolytes (GPE) provide batteries a safe option and mechanical flexibility. GPEs can work without redundant use of rare earth metals like in brittle inorganic solid electrolytes. Ionic liquids and polar aprotic solvents are known to reduce polymer crystallinity, thereby enhancing ionic conductivity (IC) and ion diffusion in polymer electrolytes.

In this study, the addition of 1-methyl-1-propylpyrrolidinium 4,5-dicyano-2-(trifluoromethyl) imidazolate (MPPyrTDI) and various polar processing solvents was investigated using Daikin NEOFLON VT-475 fluoropolymer and poly (vinylidene fluoride-co-hexafluoropropylene), (PVDF-HFP). The resulting GPE membranes exhibited a highly amorphous and polar structure, facilitating efficient ion transport. The membranes demonstrated IC values exceeding 1 mS/cm. When implemented in lithium-ion batteries, the membranes showed stable electrochemical performance of 75 cycles with a capacity of 95 mAh/g, indicating good compatibility with electrode interfaces. These results demonstrate that the developed GPE membranes can serve as safe and efficient alternatives to conventional liquid electrolytes in lithium-ion batteries.

Place, publisher, year, edition, pages
2026. Vol. 333, article id 119801
Keywords [en]
Semi-solid-state battery, Gel polymer electrolyte, Ion diffusion, Fluoropolymer, Polar phase
National Category
Materials Chemistry Condensed Matter Physics
Research subject
Chemistry of Interfaces
Identifiers
URN: urn:nbn:se:ltu:diva-119570DOI: 10.1016/j.mseb.2026.119801OAI: oai:DiVA.org:ltu-119570DiVA, id: diva2:2096660
Funder
European Regional Development Fund (ERDF), A80399Interreg Aurora, 20357574, 20366551Academy of Finland, 320017
Note

Funder: Business Finland R2B (V7270/31/2022); 

Full text license: CC BY

Available from: 2026-08-31 Created: 2026-08-31 Last updated: 2026-08-31Bibliographically approved

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Filippov, AndreiShah, Faiz Ullah

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