Diehl Marcel, Evertz Marco, Winter Martin, Nowak Sascha
University of Münster, MEET Battery Research Center, Institute of Physical Chemistry Corrensstraße 46 48149 Münster Germany
Helmholtz-Institute Münster, IEK 12, Forschungszentrum Jülich GmbH Corrensstraße 46 48149 Münster Germany.
RSC Adv. 2019 Apr 16;9(21):12055-12062. doi: 10.1039/c9ra02312g. eCollection 2019 Apr 12.
Lithium ion batteries (LIBs) are the energy storage technology of choice in the context of renewable energies and electro-mobility. It is imperative to get a thorough understanding of the aging mechanisms to achieve a prolonged cycle and calendar life. One major drawback of the technology is continuous capacity fading during operation, which is partly attributed to the loss of active lithium, the object of this work's analysis. While lithium ion battery aging is an intensively researched topic, there is still the need to determine the origin of the lost lithium and the lithium migration into the different cell components over time. To achieve this goal, different plasma-based mass spectrometric techniques in combination with isotope analysis are applied to obtain bulk as well as depth-resolved information about lithium ion movement and distribution of lithium in aged LIB cells. Different aging experiments are performed on NCM622/graphite cells with a Li-enriched electrolyte with subsequent Li analysis of the cell components. The results show that the charging rate, as well as the cycle number, has an impact on the Li/Li-abundances and that the overall abundances show a rapid mixing of the isotopic species already after the first charge/discharge cycle for all cell components.
锂离子电池(LIBs)是可再生能源和电动汽车领域首选的储能技术。深入了解老化机制对于延长循环寿命和日历寿命至关重要。该技术的一个主要缺点是在运行过程中容量持续衰减,部分原因是活性锂的损失,这也是本工作分析的对象。虽然锂离子电池老化是一个深入研究的课题,但仍需要确定锂损失的来源以及随着时间推移锂向不同电池组件的迁移情况。为实现这一目标,将不同的基于等离子体的质谱技术与同位素分析相结合,以获取有关老化LIB电池中锂离子移动和锂分布的整体以及深度分辨信息。使用富锂电解质对NCM622/石墨电池进行不同的老化实验,随后对电池组件进行锂分析。结果表明,充电速率以及循环次数对锂/锂丰度有影响,并且对于所有电池组件,在第一次充放电循环后,整体丰度就显示出同位素物种的快速混合。