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首页> 外文期刊>Journal of Fluorine Chemistry >Preparation and characterization of trifluoroethyl aliphatic carboxylates as co-solvents for the carbonate-based electrolyte of lithium-ion batteries
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Preparation and characterization of trifluoroethyl aliphatic carboxylates as co-solvents for the carbonate-based electrolyte of lithium-ion batteries

机译:三氟乙基脂肪族羧酸盐作为锂离子电池碳酸盐电解质助溶剂的制备和表征

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摘要

In this work, a series of trifluoroethyl aliphatic carboxylates with different carbon-chain lengths in acyl group are prepared and investigated as the co-solvents for the carbonate-based electrolyte of lithium-ion batteries. The trifluoroethyl aliphatic carbonates are synthesized by a modified one-step approach, using aliphatic carboxylic acid and trifluoroethanol as the raw materials (molar ratio, 1.2:1), hydrogen ion exchange resin as the catalyst and silica gel drier as the de-hydration. The structure and electrochemical properties of the final products have been characterized by FTIR, ~1H NMR, GC-MS, viscosity, conductivity meter and electrochemical measurements. The structure characterizations show that the final products have high purity. Electrochemical tests present that the co-solvents are able to improve the electrochemical performances of graphite electrode at low temperature. In particular, we find that an addition of trifluoroethyl n-hexanoate (TFENH) into 1 M LiPF6/EC + EMC electrolyte can significantly decrease the Li de-intercalation potential of graphite by 540 mV and achieve a high capacity retention of 92% at 218 K. The electrochemical impedance spectroscopy (EIS) measurements indicate that the observed performance improvement at low temperature is associated with the decreased surface film resistance (Rsei) by the addition of co-solvents.
机译:在这项工作中,制备了一系列在酰基上具有不同碳链长度的三氟乙基脂肪族羧酸盐,并作为锂离子电池碳酸盐基电解质的助溶剂进行了研究。采用改进的一步法,以脂肪族羧酸和三氟乙醇为原料(摩尔比为1.2:1),氢离子交换树脂为催化剂,硅胶干燥剂为脱水物,通过改进的一步法合成三氟乙基脂肪族碳酸酯。最终产品的结构和电化学性能已通过FTIR,〜1H NMR,GC-MS,粘度,电导率仪和电化学测量进行了表征。结构表征表明最终产物具有高纯度。电化学测试表明,助溶剂能够改善低温下石墨电极的电化学性能。特别是,我们发现在1 M LiPF6 / EC + EMC电解液中添加正己酸三氟乙酯(TFENH)可以显着降低石墨的Li脱嵌电势540 mV,并在218时实现92%的高容量保持率K.电化学阻抗谱(EIS)测量表明,在低温下观察到的性能改善与通过添加助溶剂降低的表面膜电阻(Rsei)有关。

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