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In situ neutron radiography of lithium-ion batteries: the gas evolution on graphite electrodes during the charging

机译:锂离子电池的原位中子射线照相:充电过程中石墨电极上的气体逸出

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In situ neutron radiography (NR) was used to study the gas evolution on graphite electrodes in lithium-ion cells containing different PVDF-based gel-type electrolytes. The amount of gas bubbles and channels was calculated by image analysis. Gas production was extremely high in the case of the electrolyte containing ethylene carbonate (EC) and propylene carbonate (PC) (2:3, w/w), 1 M LiClO_4. About 60% of the electrode surface consisted of the gas phase which resulted in an inhomogeneous local current distribution. In contrast, the electrolyte containing EC and γ-butyrolactone (GBL) (1:1, w/w), 1 M LiBF_4 only showed a small increase of the gas volume between the electrodes of about 3%. In situ NR also revealed the displacement of the electrolyte due to gas evolution and volume changes of the electrodes.
机译:原位中子射线照相(NR)用于研究包含不同PVDF基凝胶型电解质的锂离子电池中石墨电极上的气体逸出。通过图像分析计算气泡和通道的量。在含有碳酸亚乙酯(EC)和碳酸亚丙酯(PC)(2:3,w / w),1 M LiClO_4的电解质的情况下,气体产生极高。电极表面的约60%由气相组成,导致局部电流分布不均匀。相比之下,含有EC和γ-丁内酯(GBL)(1:1,w / w),1 M LiBF_4的电解质仅显示电极之间的气体体积小幅增加,约为3%。原位NR还显示由于气体逸出和电极体积变化而引起的电解质置换。

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