Regulating Diffusion Coefficient of Li+ by High Binding Energy Anion towards Ultra‐Low Temperature Lithium‐ion Batteries

Author:

Chen Qiu1,Luo Pan1,Liao Li1,Shen Yin1,Luo Xiaoshuang1,Li Xinpeng1,Wen Xuanzhong1,Song Jialin1,Yu Bo1,Chen Junchen1,Guo Bingshu1,Wang Mingshan1,Huang Yun1,Liu Fuliang2,Liu Jiangtao2,Li Zhedong3,Ma Jingrun3,Wang Shuiyong4,Li Xing1ORCID

Affiliation:

1. School of New Energy and Materials Southwest Petroleum University Chengdu 610500 China

2. State Key Laboratory of Advanced Chemical Power Sources Guizhou Meiling Power Sources Co. Ltd. Zunyi 563003 China

3. Zhongbo Longhui Equipment Group Co., Ltd Changxing 313100 China

4. Suzhou Nuclear Power Research Institute Co., Ltd Suzhou 215004 China

Abstract

AbstractElectrolyte design is the optimal strategy to achieve extremely low temperature operation of lithium‐ion batteries. Here, the diffusion coefficient of Li+ is proposed to improve the ion transport kinetics at low temperatures. The diffusion coefficient of Li+ is improved by constructing a Li+ solvation sheath with weak steric effects. Specifically, high binding energy BF4 anions are added to a 1 M LiPF6 in propyl acetate (PA) electrolyte. Since the binding energy of Li+ with BF4 is greater than that of PA. Therefore, the small‐sized BF4 replaces the large‐sized PA molecule to form a Li+ solvation sheath with a weak steric effect, which increases the diffusion coefficient of Li+. Using the high diffusion coefficient electrolyte, the 800 mAh pouch cell retain 91 % and 75 % of its room temperature capacity at −40 °C(0.5 C rate) and −60 °C (0.2 C rate), respectively. And it also shows stable cycling at −40 °C. This work provides a new strategy for designing low‐temperature electrolytes of lithium‐ion batteries.

Funder

National Natural Science Foundation of China

Science and Technology Department of Sichuan Province

Publisher

Wiley

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