Stenzel Yannick Philipp, Henschel Jonas, Winter Martin, Nowak Sascha
University of Münster, MEET Battery Research Center Corrensstraße 46 48149 Münster Germany
Helmholtz-Institute Münster (HI MS), IEK-12, Forschungszentrum Jülich GmbH Corrensstraße 46 48149 Münster Germany.
RSC Adv. 2019 Apr 11;9(20):11413-11419. doi: 10.1039/c9ra01291e. eCollection 2019 Apr 9.
The lithium ion battery (LIB) is the most popular choice for powering consumer electronics, grid storage and electric vehicles. Decomposition reactions in LIBs, leading to so-called aging, are the main reason for loss of capacity and power and will affect LIB safety. Organo(fluoro)phosphates (O(F)Ps) as decomposition products of LIB electrolytes have been identified in several studies in the literature but quantitative data of O(F)Ps in LIBs are only scarcely available. In terms of toxicity, this substance class is highly relevant as it shows structural similarities to chemical warfare agents. Thus, approaches that can deliver quantitative data are in need. In this study, acidic O(F)Ps were quantified with an inductively coupled plasma-sector field-mass spectrometer (ICP-SF-MS) after separation of species with hydrophilic interaction liquid chromatography (HILIC). The formation of OFPs exceeds the amount of non-fluorine containing OPs by a factor of up to 15. A total of 16 different O(F)P compounds could successfully be quantified. Organic mass spectrometry was used for the assignment of quantitative data.
锂离子电池(LIB)是为消费电子产品、电网储能和电动汽车供电的最常用选择。锂离子电池中的分解反应会导致所谓的老化,这是容量和功率损失的主要原因,并且会影响锂离子电池的安全性。文献中的多项研究已鉴定出有机(氟)磷酸盐(O(F)P)作为锂离子电池电解质的分解产物,但关于锂离子电池中O(F)P的定量数据却鲜有报道。就毒性而言,这类物质具有高度相关性,因为它与化学战剂在结构上有相似之处。因此,需要能够提供定量数据的方法。在本研究中,通过亲水作用液相色谱(HILIC)分离物种后,使用电感耦合等离子体扇形场质谱仪(ICP-SF-MS)对酸性O(F)P进行了定量分析。含氟有机磷酸盐的生成量比不含氟的有机磷酸盐高出多达15倍。总共16种不同的O(F)P化合物得以成功定量。使用有机质谱法对定量数据进行了归属。