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利用 LC-IT-TOF-MS 对有机溶剂型锂离子电池电解液的分解进行定性研究。

Qualitative Investigation of the Decomposition of Organic Solvent Based Lithium Ion Battery Electrolytes with LC-IT-TOF-MS.

机构信息

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

Shimadzu Europa GmbH, Albert-Hahn-Straße 6-10, 47269 Duisburg, Germany.

出版信息

Anal Chem. 2016 Nov 15;88(22):11160-11168. doi: 10.1021/acs.analchem.6b03379. Epub 2016 Oct 26.

Abstract

The development of a novel high performance liquid chromatography (HPLC) method hyphenated to an ion-trap time-of-flight mass spectrometer (IT-TOF-MS) for the separation and identification of constituents from common organic carbonate solvent-based electrolyte systems in lithium ion batteries (LIBs) is presented in this work. The method development was conducted for the qualitative structural elucidation of electrolyte main constituents with a special focus on the aging products of these components. The determination of their limits of detection was performed as well. Four different LiPF-based LIB electrolytes were investigated in this study. The selected aging procedures for the electrolytes were thermal aging (storage at 60 °C for 2 weeks, storage at 60 °C in the presence of 2 vol % water contamination for 2 weeks) and electrochemical aging for 100 cycles at 2C. After thermal aging, several aging products were identified. The formation of organic phosphate aging products and several organofluorophosphates aging products was observed after thermal aging with water. Additionally, the content of carbonate aging products increased. After electrochemical aging, several carbonate aging products were detected. Electrochemical aging at 60 °C leads to the additional generation of organofluorophosphate aging products.

摘要

本工作提出了一种新型高效液相色谱(HPLC)方法,该方法与离子阱飞行时间质谱(IT-TOF-MS)联用,用于分离和鉴定锂离子电池(LIB)中常见的有机碳酸酯基电解质体系中的成分。该方法的开发用于对电解质主要成分进行定性结构阐明,特别关注这些成分的老化产物。还对其检测限进行了测定。本研究考察了四种不同的基于 LiPF 的 LIB 电解质。选择了热老化(在 60°C 下储存 2 周,在 60°C 下存在 2 体积%水污染物的情况下储存 2 周)和电化学老化(在 2C 下进行 100 个循环)这两种老化程序。热老化后,鉴定出了几种老化产物。热老化后有水存在时,观察到了有机磷酸酯老化产物和几种有机氟磷酸酯老化产物的形成。此外,碳酸盐老化产物的含量增加。电化学老化后,检测到了几种碳酸盐老化产物。在 60°C 下进行电化学老化会导致额外生成有机氟磷酸盐老化产物。

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