电解质
乙二醇
锂(药物)
冰点
水溶液
材料科学
离子电导率
化学工程
电导率
无机化学
化学
电极
有机化学
物理
工程类
内分泌学
物理化学
热力学
医学
作者
Artur Tron,Seonghun Jeong,Yeong Don Park,Junyoung Mun
出处
期刊:ACS Sustainable Chemistry & Engineering
[American Chemical Society]
日期:2019-08-02
卷期号:7 (17): 14531-14538
被引量:79
标识
DOI:10.1021/acssuschemeng.9b02042
摘要
Low-temperature performance of the rechargeable batteries is limited because of a narrow temperature range of the electrolyte. Despite the aqueous electrolyte having a lower freezing point than the ethelyenecarbonate for conventional lithium-ion batteries, its freezing point is as high as 0 °C. Antifreeze additive of ethylene glycol for aqueous electrolyte solutions is used to improve the low-temperature performance of aqueous rechargeable lithium-ion batteries. The suitable contents of ethylene glycol expand the temperature range of aqueous electrolyte, pursuing a balance between the low freezing point and high ionic conductivity, and thus enhancing their cyclic performance and decreasing the polarization of electrode reactions. Furthermore, the improvement of the lithium-ion intercalation and deintercalation processes in the nano-LiFePO4 material at low temperature is controlled by varying the content of the antifreeze additive to provide a high ionic conductivity of an aqueous electrolyte solution having 1 M of Li2SO4 depending on the temperature, ranging from 0 to −20 °C. In addition, ethylene glycol for aqueous electrolyte solutions can be used to improve high-performance batteries operating at sub-zero temperatures. The aqueous rechargeable lithium-ion batteries having antifreezing additives are beneficial for various extreme operations of electric vehicles, high-altitude drones, submarine, robotics, and aerospace applications.
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