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A Liquid Inorganic Electrolyte Showing an Unusually High Lithium Ion Transference Number: A Concentrated Solution of LiAlCl4 in Sulfur Dioxide

机译:显示异常高的锂离子迁移数的液体无机电解质:LiAlCl4在二氧化硫中的浓缩溶液

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摘要

We report on studies of an inorganic electrolyte: LiAlCl4 in liquid sulfur dioxide. Concentrated solutions show a very high conductivity when compared with typical electrolytes for lithium ion batteries that are based on organic solvents. Our investigations include conductivity measurements and measurements of transference numbers via nuclear magnetic resonance (NMR) and by a classical direct method, Hittorf’s method. For the use of Hittorf’s method, it is necessary to measure the concentration of the electrolyte in a selected cell compartment before and after electrochemical polarization very precisely. This task was finally performed by potentiometric titration after hydrolysis of the salt. The Haven ratio was determined to estimate the association behavior of this very concentrated electrolyte solution. The measured unusually high transference number of the lithium cation of the studied most concentrated solution, a molten solvate LiAlCl4 × 1.6SO2, makes this electrolyte a promising alternative for lithium ion cells with high power ability.
机译:我们报告了一种无机电解质的研究:液态二氧化硫中的LiAlCl4。与基于有机溶剂的锂离子电池的典型电解质相比,浓缩溶液显示出很高的电导率。我们的研究包括电导率测量和通过核磁共振(NMR)以及经典直接方法(Hittorf方法)的转移数测量。对于使用Hittorf的方法,有必要非常精确地测量电化学极化前后选定电池仓中电解质的浓度。盐水解后,最后通过电位滴定法完成了该任务。确定避风港比率以估计这种非常浓缩的电解质溶液的缔合行为。在研究的最浓溶液(熔融的溶剂化物LiAlCl4×1.6SO2)中,锂阳离子的异常高的转移数被测量,使该电解质成为具有高功率能力的锂离子电池的有前途的替代品。

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