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A hard X-ray photoelectron spectroscopy study on the solid electrolyte interphase of a lithium 4,5-dicyano-2-(trifluoromethyl)imidazolide based electrolyte for Si-electrodes

机译:硬质X射线光电子能谱研究基于4,5-二氰基-2-(三氟甲基)咪唑啉锂的硅电极电解质的固体电解质相

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摘要

This report focuses on the relatively new salt, lithium 4,5-dicyano-2-(trifluoromethyl)imidazolide (LiTDI), and its functionality together with a silicon based composite electrode in a half-cell lithium ion battery context. LiTDI is a promising alternative to the commonly used LiPF6 salt because it does not form HF which can decompose the oxide layer on Si. The formation of a solid electrolyte interphase (SEI) as well as the development of the active Si-particles are investigated during the first electrochemical lithiation and de-lithiation. Characterizations are carried out at different state of charge with scanning electron microscopy (SEM) as well as hard x-ray photoelectron spectroscopy (HAXPES) at two different photon energies. This enables a depth resolved picture of the reaction processes and gives an idea of the chemical buildup of the SEI. The SEI is formed by solvent and LiTDI decomposition products and its composition is similar to SEI formed by other carbonate based electrolytes. The LiTDI salt or its decomposition products are not in itself reactive towards the active Si-material and no unwanted side reactions occurs with the active Si-particles. Despite some decomposition of the LiTDI salt, it is a promising alternative for electrolytes aimed towards Si-based electrodes.
机译:本报告重点关注半电池锂离子电池中相对较新的盐4,5-二氰基-2-(三氟甲基)咪唑啉锂(LiTDI)及其功能以及硅基复合电极。 LiTDI是常用的LiPF6盐的一种有前途的替代品,因为它不形成可分解Si上氧化物层的HF。在第一次电化学锂化和去锂化过程中,研究了固体电解质中间相(SEI)的形成以及活性Si粒子的发展。使用扫描电子显微镜(SEM)和硬X射线光电子能谱(HAXPES)在两种不同的光子能量下,以不同的电荷状态进行表征。这样可以对反应过程进行深入解析,并给出了SEI的化学组成的概念。 SEI由溶剂和LiTDI分解产物形成,其成分类似于由其他基于碳酸盐的电解质形成的SEI。 LiTDI盐或其分解产物本身对活性硅材料不具有反应性,并且不会与活性硅粒子发生不希望的副反应。尽管LiTDI盐发生了一些分解,但它仍是用于硅基电极的电解质的有希望的替代品。

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