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Delaying Thermal Runaway of Li-ion Batteries: From Electrolyte Perspective

机译:延迟锂离子电池的热失控:从电解质的角度

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1. The key to inhibiting thermal runaway and preventing cell propagation is to reduce the self-heating rate of a given cell 2. It is possible to modify conventional electrolyte systems so as to achieve lower self-heating due to sluggish electrode-electrolyte reaction kinetics 3. ARC results correlated with thermal runaway & propagation tests 4. NOHMs drop-in electrolyte approach carries significance in not just safer individual cells but also in safer overall battery packs.
机译:1.抑制热失控和防止电池扩散的关键是降低给定电池的自加热速率。2.可以修改常规电解质系统,以降低电极-电解质反应动力学,从而降低自加热。 3. ARC结果与热失控和传播测试相关。4. NOHM的插入式电解质方法不仅对更安全的单个电池而且对更安全的整体电池组都具有重要意义。

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