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Study on Cycle Life of Lithium-Ion Batteries Using in Situ ~7Li Solid-State Nuclear Magnetic Resonance

机译:原位〜7LI固态核磁共振研究锂离子电池循环寿命研究

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The capacity fade of lithium ion battery (LIB) was investigated using ~7Li solid-state nuclear magnetic resonance (NMR). The LIB cells composed of graphite (Gr) or hard carbon (HC) and LiCoO_2 (LCO) were used. The peak intensity for stored Li in carbon (Gr and HC) showed good proportionality to the cell capacity. The proportional constants for every after 100 cycles did not change largely, while the section of the peak intensity vs. cell capacity plot changed with cycle. This change in the section explained well the cell capacity fade, showing that "slippage" was related to the capacity loss in lower stages due to voltage profile of carbons. The peak analysis also found "captured" Li loss as another cause of capacity fade. The NMR measurement also found new storage peak and change in solid electrolyte interface (SEI) related peak after long cycle test.
机译:使用〜7LI固态核磁共振(NMR)研究了锂离子电池(LIB)的容量淡出。使用由石墨(GR)或硬碳(HC)和LiCoO_2(LCO)组成的Lib细胞。碳(GR和HC)中储存Li的峰强度显示出良好的电池容量。每次100次循环后的比例常数在很大程度上没有变化,而峰值强度与小区容量图的截面随周期而变化。该部分的这种变化良好地解释了电池容量褪色,表明“滑动”与由于碳的电压曲线引起的较低阶段的容量损耗有关。峰值分析还发现“捕获”锂损失,作为另一个容量褪色的原因。 NMR测量还发现,长循环试验后,还发现了新的储存峰值和固体电解质接口(SEI)相关峰的变化。

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