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Postmortem analysis of calendar-aged graphite/LiFePO_4 cells

机译:日历老化石墨/ LiFePO_4电池的事后分析

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A series of graphite/LFP commercial cells, stored under 3 different conditions of temperature (30,45, and 60 ℃) and SOC (30, 65, and 100%) during up to 8 months, are disassembled and analyzed in order to identify aging phenomena. The recovered positive and negative electrodes are studied using X-ray diffraction, scanning electron microscopy, Fourier transform infrared spectroscopy, and electrochemical testing. The maximum lithium stoichiometry in the recovered cathodes, derived both from XRD data and from electrochemical titration, decreases with an increase of storage temperature and storage SOC. This result confirms that the capacity fade of the commercial cells is caused by the loss of cyclable lithium. From capacity measurements on individual electrodes, any loss of active material is ruled out Cyclable lithium loss arises from the growth of the solid electrolyte interphase at the anode, as outlined by the presence of a thick and fluffy film at the graphite particle surface for severe aging conditions (e.g., T = 60 ℃ and SOC = 100%) and an increase of the impedance. Evidence for side reactions at the LFP electrode is provided as well, as demonstrated by the presence of F-rich particles and an impedance increase for the electrodes that aged the most.
机译:分解并分析了在3个不同温度(30、45和60℃)和SOC(30、65和100%)的条件下(长达8个月)存储的一系列石墨/ LFP商业电池,以进行识别老化现象。使用X射线衍射,扫描电子显微镜,傅立叶变换红外光谱和电化学测试研究回收的正极和负极。从XRD数据和电化学滴定得出的回收阴极最大锂化学计量随着存储温度和存储SOC的增加而降低。该结果证实了商用电池的容量衰减是由可循环锂的损失引起的。根据单个电极的容量测量,排除了活性物质的任何损失。可循环的锂损失是由于阳极处的固体电解质中间相的生长而引起的,这可归因于石墨颗粒表面存在厚而蓬松的膜,从而严重老化了。条件(例如T = 60℃和SOC = 100%)和阻抗增加。还提供了LFP电极发生副反应的证据,如富F颗粒的存在和最老化电极的阻抗增加所证明。

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