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Rate-Dependent, Li-Ion Insertion/Deinsertion Behavior of LiFePO4 Cathodes in Commercial 18650 LiFePO4 Cells

机译:LiFePO4阴极在商用18650 LiFePO4电池中的速率依赖性锂离子插入/插入行为

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摘要

We have performed operando synchrotron high-energy X-ray diffraction (XRD) to obtain nonintrusive, real-time monitoring of the dynamic chemical and structural changes in commercial 18650 LiFePO4/C cells under realistic cycling conditions. The results indicate a nonequilibrium lithium insertion and extraction in the LiFePO4 cathode, with neither the LiFePO4 phase nor the FePO4 phase maintaining a static composition during lithium insertion/extraction. On the basis of our observations, we propose that the LiFePO4 cathode simultaneously experiences both a two-phase reaction mechanism and a dual-phase solid-solution reaction mechanism over the entire range of the flat voltage plateau, with this dual-phase solid-solution behavior being strongly dependent on charge/ discharge rates. The proposed dual-phase solid-solution mechanism may explain the remarkable rate capability of LiFePO4 in commercial cells.
机译:我们已经进行了操作同步加速器高能X射线衍射(XRD),以在现实的循环条件下获得对商业18650 LiFePO4 / C细胞动态化学和结构变化的非侵入性实时监测。结果表明,LiFePO4阴极中锂离子的插入和萃取过程不平衡,LiFePO4相和FePO4相在锂插入/提取过程中均不保持静态组成。根据我们的观察结果,我们建议LiFePO4阴极在平坦电压平台的整个范围内同时经历两相反应机制和双相固溶反应机制,并且该双相固溶体行为很大程度上取决于充电/放电速率。提出的双相固溶机理可以解释LiFePO4在商业电池中的显着速率能力。

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