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Identification of solid electrolyte interphase formed on graphite electrode cycled in trifluoroethyl aliphatic carboxylate-based electrolytes for low-temperature lithium-ion batteries

机译:低温锂离子电池的三氟乙基脂肪族羧酸盐基电解质中循环的石墨电极上形成的固态电解质相的鉴定

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摘要

Trifluoroethyl aliphatic carboxylates with different length of carbon-chain in acyl groups have been introduced into carbonate-based electrolyte as co-solvents to improve the low-temperature performance of lithium-ion batteries, both in capacity retention and lowering polarization of graphite electrode. To identify the further influence of trifluoroethyl aliphatic carboxylates on graphite electrode, the components and properties of the surface film on graphite electrode cycled in different electrolytes are investigated using Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), and electrochemical measurements. The IR and XPS results show that the chemical species of the solid electrolyte interphase (SEI) on graphite electrode strongly depend on the selection of co-solvent. For instance, among those species, the content of RCOOLi increases with an increasing number of carbon atoms in RCOOCH2CF3 molecule, wherein R was an alkyl with 1, 3, or 5 carbon atoms. We suggest that the thickness and components of the SEI film play a crucial role on the enhanced low-temperature performance of the lithium-ion batteries.
机译:将具有不同碳原子长度的酰基的三氟乙基脂肪族羧酸盐作为助溶剂引入碳酸盐基电解质中,以改善锂离子电池的低温性能,既保持容量,又降低石墨电极的极化。为了确定三氟乙基脂肪族羧酸盐对石墨电极的进一步影响,使用傅立叶变换红外光谱(FTIR),X射线光电子能谱(XPS)和电化学方法研究了在不同电解液中循环的石墨电极上的表面膜的成分和性能。测量。 IR和XPS结果表明,石墨电极上固体电解质中间相(SEI)的化学种类强烈取决于助溶剂的选择。例如,在那些物种中,RCOOLi的含量随着RCOOCH2CF3分子中碳原子数目的增加而增加,其中R是具有1、3或5个碳原子的烷基。我们认为,SEI膜的厚度和成分对增强锂离子电池的低温性能起着至关重要的作用。

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