Geminal Dicationic Ionic Liquid-Based Freestanding Ion Membrane for High-Safety Lithium Batteries.

ACS Appl Mater Interfaces

State Key Laboratory for Physical Chemistry of Solid Surfaces, Department of Chemistry, College of Chemistry and Chemical Engineering, iChem (Collaborative Innovation Center of Chemistry for Energy Materials), Engineering Research Centre of Electrochemical Technologies of Ministry of Education, Xiamen University, Xiamen 361005, China.

Published: April 2021

AI Article Synopsis

  • Researchers are aiming to develop a new ion membrane with high ionic conductivity and safety for energy storage applications.
  • Geminal dicationic ionic liquids (GDILs) were synthesized to create a flexible ion conductive material called iMembrane, which operates effectively as a freestanding film.
  • The iMembrane exhibits excellent thermal and electrochemical stability, and safely accommodates lithium-ion movement without dangerous side reactions, making it a promising option for improving the safety and energy density of lithium batteries.

Article Abstract

A freestanding ion membrane with high ionic conductivity, electrochemical compatibility, satisfactory strength, and safety is a goal pursued for advanced energy storage. Geminal dicationic ionic liquids (GDILs) are expected to be designed and synthesized as a basic building block for the target ionic conductors. Herein, we fabricated a GDIL-based flexible ion conductive material, which appears and behaves as a freestanding film, an ion membrane actually, denoted as iMembrane. The iMembrane presented high thermal stability, broad electrochemical stability, and capable ionic conductivity. Stable lithium-ion intercalation/de-intercalation can be achieved at the iMembrane/graphite interface without co-intercalation of imidazole rings, which is attributed to the specific anion-derived solid electrolyte interphase. Moreover, iMembrane is well compatible with the lithium metal anode and LiFePO cathode. The soft-packed batteries assembled with iMembrane were punctured with a nail without any fire or smoke. Hence, as an ionic membrane in nonprotonic, iMembrane is promising to enhance safety and energy density of lithium batteries.

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Source
http://dx.doi.org/10.1021/acsami.0c22605DOI Listing

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