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锂离子电池电解液中酸性有机氟膦酸盐的制备亲水相互作用色谱法。

Preparative hydrophilic interaction liquid chromatography of acidic organofluorophosphates formed in lithium ion battery electrolytes.

机构信息

University of Münster, MEET Battery Research Center, Corrensstraße 46, 48149 Münster, Germany.

HILICON AB, Tvistevägen 48, 907 36 Umeå, Sweden.

出版信息

J Chromatogr A. 2019 Oct 11;1603:438-441. doi: 10.1016/j.chroma.2019.07.008. Epub 2019 Jul 8.

Abstract

The expansion of lithium ion battery (LIB) application is accompanied by the growth of battery pack sizes. This progression emphasizes the consideration of electrolyte safety as well as environmental aspects in case of abuse, accident, or recycling. Hexafluorophosphate is one of the most commonly used conducting salt anions in electrolytes. It has great potential to degrade to various acidic and non-acidic organo(fluoro)phosphates with presence of water and during battery cell operation. Consequently, toxicological investigation on these organo(fluoro)phosphates has emerged because they either have structural similarities as chemical warfare agents or play a widespread physiological role as phosphates in the human body. This circumstance underlines the need of isolated examination of these compounds for safety assessment. In this work, we used hydrophilic interaction liquid chromatography for the extraction of acidic organofluorophosphates from thermally aged LIB electrolytes. The developed two-step fractionation method provided high separation selectivity towards acidic head groups, which allowed the separation of undesired matrix and target compounds. These findings facilitate isolated toxicological investigations on organofluorophosphates that are beneficial for environmental and safety research, the battery cell industry, and human safety surveillance in regard to aged LIB electrolytes.

摘要

锂离子电池 (LIB) 的应用扩展伴随着电池组尺寸的增长。这种发展趋势强调了在滥用、事故或回收的情况下,对电解质安全以及环境方面的考虑。六氟磷酸盐是电解质中最常用的导电盐阴离子之一。在有水存在和电池单元运行期间,它很有可能降解为各种酸性和非酸性有机(氟)磷酸盐。因此,由于这些有机(氟)磷酸盐要么与化学战剂具有结构相似性,要么在人体中作为磷酸盐发挥广泛的生理作用,对它们进行毒理学研究已经出现。这种情况强调了需要对这些化合物进行单独的安全评估。在这项工作中,我们使用亲水相互作用液相色谱法从热老化的 LIB 电解质中提取酸性有机氟磷酸盐。开发的两步分级方法对酸性头基具有高的分离选择性,允许分离不需要的基质和目标化合物。这些发现有助于对有机氟磷酸盐进行单独的毒理学研究,这有利于环境和安全研究、电池行业以及对老化的 LIB 电解质的人类安全监测。

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