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Review | Open Access

Ionic liquid/poly(ionic liquid)-based electrolytes for lithium batteries

Xinyu Maa, Jiangtao Yua, Yin HuaJohn Texterb ( )Feng Yana ( )
Jiangsu Engineering Laboratory of Novel Functional Polymeric Materials, Jiangsu Key Laboratory of Advanced Negative Carbon Technologies College of Chemistry, Suzhou Key Laboratory of Soft Material and New Energy, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China
Polymer and Coating Technology, Coating Research Institute, School of Engineering, College of Engineering and Technology, Eastern Michigan University, Ypsilanti, MI 48197, USA

† These authors contributed equally to this work.

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Abstract

The growing demand for portable electronic devices, electric vehicles, and large-scale advanced energy storage has aroused increasing interest in the development of high energy density lithium batteries. The electrolyte is an important component of lithium batteries and is an essential part of performance and safety improvements. Commercially available electrolytes mainly consist of lithium salts and organic carbonate solvents that are prone to decomposition due to their narrow electrochemical windows and tend to react with lithium metal anodes forming an unstable solid electrode/electrolyte interface (SEI). In particular, the flammability of organic solvents raises concerns about battery safety. Ionic liquid/poly(ionic liquid) (IL/PIL)-based electrolytes enable batteries with good safety, high energy/power density and long-term stability. This review focuses on the applications of IL/PIL-based liquid, quasi-solid, and solid electrolytes and electrolyte additives in lithium batteries. The perspectives and challenges of IL/PIL electrolytes in the field of lithium batteries are also proposed.

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Industrial Chemistry & Materials
Pages 39-59

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Cite this article:
Ma X, Yu J, Hu Y, et al. Ionic liquid/poly(ionic liquid)-based electrolytes for lithium batteries. Industrial Chemistry & Materials, 2023, 1(1): 39-59. https://doi.org/10.1039/d2im00051b

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Received: 30 November 2022
Accepted: 28 December 2022
Published: 12 January 2023
© 2023 The Author(s). Co‐published by the Institute of Process Engineering, Chinese Academy of Sciences and the Royal Society of Chemistry

This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.