Boosting Lithium Ion Conduction of Carboxylate‐Type Single‐Ion Conducting Polymers through Complexation with Ionic Liquids for Lithium‐Ion Batteries

Author:

Kim Dongwook1ORCID,Nakajima Hideto2,Inokuchi Daisuke2,Yamada Izumi1ORCID,Hwang Jinkwang3ORCID,Abe Takeshi1ORCID,Matsumoto Kazuhiko3ORCID,Inui Naoki1ORCID

Affiliation:

1. Graduate School of Engineering Kyoto University Kyoto 615-8510 Japan

2. Sumitomo Chemical Co., Ltd. Ehime 792-0001 Japan

3. Graduate School of Energy Science Kyoto University Kyoto 606-8501 Japan

Abstract

AbstractSingle‐ion conducting (SIC) polymers, wherein anions are covalently bonded to the polymer chain, selectively facilitate the movement of lithium ions, making them promising polymer electrolytes for lithium‐ion batteries because only lithium ion acts as a charge carrier. Carboxylate‐type SIC polymers offer cost advantages and are facilely prepared compared to conventional types like sulfonylamide‐type SIC polymers. However, they are known to suffer from inefficient dissociation of lithium ions due to their high basicity. In this study, enhancement of lithium‐ion dissociation in carboxylate‐type SIC polymers is investigated by complexing them with ionic liquid (IL). Incorporation of IL with the SIC polymer significantly improves electrochemical properties, achieving a high ionic conductivity close to 2 mS cm−1 and a critical current density of 2.1 mA cm−2 in a Li symmetric cell at 25 °C. The interaction between the SIC polymer and IL is confirmed through infrared and Raman spectroscopy. Electrochemical tests of the Li/LiFePO4 cell exhibit a high reversible capacity of 128.6 mAh g−1 with a cycle retention of 89.9 % after 100 cycles at 1 C (1 C=170 mA g−1) and an excellent recuperation even after rate tests at 6 C.

Funder

Sumitomo Chemical

Publisher

Wiley

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