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用于安全锂离子电池的非易燃高压液体电解质配方设计

Design of Non-Incendive High-Voltage Liquid Electrolyte Formulation for Safe Lithium-Ion Batteries.

作者信息

Kwak Sehyun, An Kihun, Tran Yen Hai Thi, Song Seung-Wan

机构信息

Department of Chemical Engineering and Applied Chemistry, Chungnam National University, Daejeon, 34134, Republic of Korea.

出版信息

ChemSusChem. 2022 Feb 18;15(4):e202102546. doi: 10.1002/cssc.202102546. Epub 2021 Dec 23.

DOI:10.1002/cssc.202102546
PMID:34939746
Abstract

Battery safety has an ever-increasing significance and is required for consumer's safety. The high flammability of traditional organic liquid electrolyte, which consists of ethylene carbonate and highly flammable linear carbonate, is one of the major reasons for thermal runaway and battery fire events. Replacement of flammable liquid electrolyte with non-incendive one is urgently needed for safe lithium-ion batteries. A fluorinated linear sulfate paired with 1 m LiPF was developed and evaluated as a solvent of non-incendive liquid electrolyte for a use in high-voltage (4.4 V) and high-temperature (45 °C) LiNi Mn Co O (NCM811) chemistry-based lithium-ion batteries. Non-incendive liquid electrolyte containing sulfate with two trifluoroethyl groups exhibited superior anodic and thermal stability and promoted cathode-electrolyte and anode-electrolyte interfacial stability, compared to flammable traditional electrolyte. Non-incendive electrolyte showed markedly improved 300 cycle performance of an industrial graphite‖NCM811 lithium-ion pouch cell with a nominal capacity of 730 mAh under harsh conditions, and high safety of 10 V overcharge abuse tolerance, from which safe and high-performing high-energy lithium-ion batteries and battery-powered electric vehicles and energy storage system are anticipated.

摘要

电池安全具有日益重要的意义,是消费者安全所必需的。传统有机液体电解质具有高易燃性,其由碳酸亚乙酯和高度易燃的线性碳酸酯组成,这是热失控和电池起火事件的主要原因之一。为了实现安全的锂离子电池,迫切需要用不燃性电解质替代易燃性液体电解质。一种与1 m LiPF配对的氟化线性硫酸盐被开发出来,并被评估为用于基于高压(4.4 V)和高温(45 °C)的LiNi Mn Co O(NCM811)化学体系的锂离子电池的不燃性液体电解质溶剂。与易燃的传统电解质相比,含有两个三氟乙基硫酸盐的不燃性液体电解质表现出优异的阳极和热稳定性,并促进了阴极 - 电解质和阳极 - 电解质界面稳定性。在苛刻条件下,不燃性电解质使标称容量为730 mAh的工业石墨‖NCM811锂离子软包电池的300次循环性能得到显著改善,并且具有10 V过充电滥用耐受性的高安全性,由此有望实现安全且高性能的高能锂离子电池以及电池供电的电动汽车和储能系统。

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