首页> 外文期刊>Journal of the American Chemical Society >In Situ Magic-Angle Spinning ~7Li NMR Analysis of a Full Electrochemical Lithium-Ion Battery Using a Jelly Roll Cell Design
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In Situ Magic-Angle Spinning ~7Li NMR Analysis of a Full Electrochemical Lithium-Ion Battery Using a Jelly Roll Cell Design

机译:使用果冻卷电池设计的全电化学锂离子电池的原位魔角旋转〜7Li NMR分析

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摘要

A new in situ magic angle spinning (MAS) Li-7 nuclear magnetic resonance (NMR) strategy allowing for the observation of a full lithium-ion cell is introduced. Increased spectral resolution is achieved through a novel jelly roll cell design, which allowed these studies to be performed for the first time under MAS conditions (MAS rate 10 kHz). The state of charge, metallic lithium plating and solid-electrolyte interface (SEI) formation was captured for the first charge/discharge cycle of a full electrochemical cell (LiCoO2/graphite). This strategy can be used to monitor both anode and cathode electrodes concurrently, which is valuable for tracking the lithium distribution in a full cell in real time and may also enable identification of causes of capacity loss that are not readily available from bulk electrochemical analyses, or other post-mortem strategies.
机译:引入了一种新的原位魔角旋转(MAS)Li-7核磁共振(NMR)策略,可以观察到完整的锂离子电池。通过新颖的果冻卷电池设计可实现更高的光谱分辨率,这使这些研究首次在MAS条件(MAS速率为10 kHz)下进行。在完整电化学电池(LiCoO2 /石墨)的第一个充电/放电循环中,记录了电荷状态,金属锂镀层和固体电解质界面(SEI)的形成。此策略可用于同时监视阳极和阴极,这对于实时跟踪整个电池中的锂分布非常有价值,并且还可以识别容量损失的原因,而这些原因是批量电化学分析中不容易获得的,或者其他验尸策略。

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