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SEI Formation and Interfacial Stability of a Si Electrode in a LiTDI-Salt Based Electrolyte with FEC and VC Additives for Li-Ion Batteries

机译:含FEC和VC添加剂的锂离子电池LiTDI-盐基电解质中Si电极的SEI形成和界面稳定性

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摘要

An electrolyte based on the new salt, lithium 4,5-dicyano-2-(trifluoromethyl)imidazolide (LiTDI), is evaluated in combination with nano-Si composite electrodes for potential use in Li-ion batteries. The additives fluoroethylene carbonate (FEC) and vinylene carbonate (VC) are also added to the electrolyte to enable an efficient SEI formation. By employing hard X-ray photoelectron spectroscopy (HAXPES), the SEI formation and the development of the active material is probed during the first 100 cycles. With this electrolyte formulation, the Si electrode can cycle at 1200 mAh g(-1) for more than 100 cycles at a coulombic efficiency of 99%. With extended cycling, a decrease in Si particle size is observed as well as an increase in silicon oxide amount. As opposed to LiPF6 based electrolytes, this electrolyte or its decomposition products has no side reactions with the active Si material. The present results further acknowledge the positive effects of SEI forming additives. It is suggested that polycarbonates and a high LiF content are favorable components in the SEI over other kinds of carbonates formed by ethylene carbonate (EC) and dimethyl carbonate (DMC) decomposition. This work thus confirms that LiTDI in combination with the investigated additives is a promising salt for Si electrodes in future Li-ion batteries.
机译:结合纳米硅复合电极评估了基于新型盐4,5-二氰基-2-(三氟甲基)咪唑啉锂(LiTDI)的电解质在锂离子电池中的潜在应用。添加剂氟碳酸亚乙酯(FEC)和碳酸亚乙烯酯(VC)也被添加到电解质中,以实现有效的SEI形成。通过使用硬X射线光电子能谱(HAXPES),可以在前100个循环中探测SEI的形成和活性物质的形成。使用这种电解质配方,Si电极可在1200 mAh g(-1)下循环100次以上,库仑效率为99%。随着循环的延长,观察到Si粒径减小以及氧化硅量增加。与基于LiPF6的电解质相反,该电解质或其分解产物与活性Si材料无副反应。本结果进一步确认了SEI形成添加剂的积极作用。建议聚碳酸酯和高LiF含量是SEI中优于由碳酸亚乙酯(EC)和碳酸二甲酯(DMC)分解形成的其他种类碳酸盐的有利组分。因此,这项工作证实了LiTDI与所研究的添加剂的组合是未来锂离子电池中有希望用于Si电极的盐。

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