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首页> 外文期刊>Batteries & Supercaps >Designing High-Performant Lithium Battery Electrolytes by Utilizing Two Natures of Li+ Coordination: LiTDI/LiTFSI in Tetraglyme
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Designing High-Performant Lithium Battery Electrolytes by Utilizing Two Natures of Li+ Coordination: LiTDI/LiTFSI in Tetraglyme

机译:通过利用Li+协调的两个本质来设计高性能的锂电池电解质:Tetraglyme中的litdi/litfsi

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摘要

Highly concentrated electrolytes (HCEs) based on glymes, such as tetraglyme (G4), are currently the focus of much battery research, primarily due to their unique properties - especially with respect to ion transport and electrochemical stability. While the LiTFSI-G4 and LiTDI-G4 systems both have been studied extensively, we here design their hybrid electrolytes to answer; will the resulting properties be averages/superpositions or will there be synergies created? We find the latter to be true and demonstrate that the most performant electrolytes are obtained by introducing a minor amount of LiTDI to an LiTFSI based electrolyte, which promotes the disproportionation and formation of "free" cations and at the same to avoid large aggregates - shown comprehensively both experimentally and by different modelling approaches and analyses combined. This electrolyte composition strategy can be generalized to other salts and solvents and thus a route towards a flora of novel battery electrolytes is here suggested.
机译:高度浓缩的电解质(HCE)基于Glymes,例如Tetraglyme(G4),目前是大量电池研究的重点,这主要是由于它们的独特性能 - 尤其是在离子传输和电化学稳定性方面。虽然LITFSI-G4和LITDI-G4系统都经过广泛研究,但我们在这里设计了它们的混合电解质来回答。生成的属性是平均/叠加,还是会创建协同作用?我们发现后者是真实的,并证明了通过向基于LITFSI的电解质引入少量的LITDI来获得最性能的电解质,该电解质促进了“自由”阳离子的侵蚀和形成,并以相同的方式避免了大骨料 - 显示了大骨料 - 显示全面地通过实验和不同的建模方法和分析结合在一起。这种电解质组成策略可以推广到其他盐和溶剂,因此在这里提出了通往新型电池电解质菌群的途径。

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