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Tertiary polyamines as additives to lithium-ion battery electrolytes

机译:锂离子电池电解质的第三次多胺作为添加剂

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Pentamethyldiethylenetriamine (PMDT), tetra(ethylene glycol)dimethyl ether (tetraglyme), and the crown ether 12-Crown-4 were investigated as electrolyte additives for lithium-ion cells using graphite anodes. Cyclic voltammetry at glassy carbonelectrodes in 1M LiPF{sub}6/propylene carbonate (PC) solutions containing PMDT, 12-Crown-4 or tetraglyme additive showed that the PMDT additive was electrochemically oxidized at ~3.5 V vs. lithium reference. The 12-Crown-4 and tetraglyme, on the otherhand, were found to be stable to ~4.5 V where the control electrolyte without any additive was oxidized. Ionic conductivity measurements of the same solutions showed that all three additives enhanced the conductivity of 1M LiPF{sub}6/PC solution at 25°C. Lithium cycling studies in PC solutions using graphite electrodes showed that the 12-Crown-4 and tetraglyme additives allowed reversible lithium intercalation into graphite, whereas PMDT additive did not have any effect. However, PMDT additive was foundto reduce the irreversible capacity loss on the first cycle in ethylene carbonate-propylene carbonate electrolyte solutions.
机译:五甲基二亚甲基三胺(PMDT),四(乙二醇)二甲醚(四甘醇),以及使用石墨阳极作为锂离子电池的电解质添加剂的电解质添加剂。在1M LiPF {Sub} 6 /碳酸亚丙酯(PC)含有PMDT,12-Crown-4或四平均添加剂的溶液中的循环伏安法显示PMDT添加剂在〜3.5V与锂参考中电化学氧化。发现12-冠4和四棱镜,另一个稳定于〜4.5V,其中没有任何添加剂的控制电解质被氧化。相同溶液的离子电导率测量表明,所有三种添加剂在25°C时增强了1M LiPF {Sub} 6 / PC溶液的电导率。使用石墨电极的PC解决方案中的锂循环研究表明,12冠4和四平均添加剂允许可逆锂嵌入到石墨中,而PMDT添加剂没有任何效果。然而,发现PMDT添加剂降低碳酸亚丙酯碳酸亚乙酯溶液中的第一循环的不可逆容量损失。

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