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A fluoride-selective electrode (Fse) for the quantification of fluoride in lithium-ion battery (Lib) electrolytes

机译:用于定量锂离子电池(Lib)电解质中氟化物的氟化物选择电极(Fse)

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摘要

In this work, a fluoride-selective electrode (FSE) was applied with regard to the analysis of fluoride in lithium hexafluorophosphate-based lithium-ion battery (LIB) electrolytes. The influence of linear organic carbonate solvents dimethyl carbonate (DMC), ethyl methyl carbonate (EMC) and diethyl carbonate (DEC) which are used as co-solvents in battery electrolytes was investigated. The developed FSE method for the analysis of battery electrolytes was comprehensively validated in view of the (1) trueness and recovery rates (nominal vs. actual comparison; influence of different amounts of electrolytes on the performance of the electrode; recovery rates of defined differences in concentration), (2) precision (intra-day precision and inter-day precision), (3) selectivity (influence of the carbonate solvents on different fluoride concentrations; interferents) and (4) linearity and range. Statistical analysis was performed to evaluate the data and to characterize the reproducibility of the method. The determination of the commercially available LP30 (1 mol LiPF6 and ethylene carbonate/dimethyl carbonate (EC : DMC, 50 : 50 wt%)) electrolyte stored over 47 days and at 80 °C, by the FSE technique was compared to the fluoride analysis by ion chromatography (IC). While interferences in the IC method resulted in false-high concentrations, the FSE operated free from interferences, selective and specific. The validation of the method was successfully carried out and enables new areas of application.
机译:在这项工作中,对于六氟磷酸锂基锂​​离子电池(LIB)电解质中的氟化物分析,采用了氟化物选择电极(FSE)。研究了在电池电解质中用作助溶剂的线性有机碳酸酯溶剂碳酸二甲酯(DMC),碳酸乙基甲基酯(EMC)和碳酸二乙酯(DEC)的影响。鉴于(1)真实性和回收率(标称值与实际值的比较;不同数量的电解液对电极性能的影响;所定义差异的回收率),对开发的用于分析电池电解液的FSE方法进行了全面验证。浓度),(2)精度(日内精度和日间精度),(3)选择性(碳酸盐溶剂对不同氟化物浓度的影响;干扰物)和(4)线性和范围。进行统计分析以评估数据并表征该方法的可重复性。通过FSE技术将在47°C和80°C下储存的市售LP30(1 mol LiPF6和碳酸亚乙酯/碳酸二甲酯(EC:DMC,50:50 wt%))电解质的测定与氟化物分析进行了比较通过离子色谱法(IC)。尽管离子色谱法中的干扰导致浓度过高,但FSE的运作不受干扰,选择性干扰和特异性干扰。该方法的验证已成功进行,并开辟了新的应用领域。

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