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Study of Membrane Degradation in High-Power Lithium-Ion Cells

机译:高功率锂离子电池膜降解的研究

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Impedance spectra of Celgard~R 2300 membranes that were removed from high-power Li-ion cells showed a significant rise in membrane ionic resistivity for cells that were cycled or stored at elevated temperatures. Atomic force microscopy images revealed dramatic changes in membrane surface morphology. Swelling of the membrane polypropylene fibers and the presence of particles of electrode active material in the membrane pores effectively reduced the membrane porosity, and thereby account for the membrane impedance rise and part of the cell power loss. These results not only indicate that membrane degradation can contribute significantly to Li-ion cell power loss at elevated temperatures, but also reveal mechanisms of membrane degradation.
机译:从高功率锂离子电池中取出的Celgard〜R 2300膜的阻抗谱显示,在高温下循环或存储的电池的膜离子电阻率显着提高。原子力显微镜图像揭示了膜表面形态的巨大变化。膜聚丙烯纤维的溶胀和膜孔中电极活性物质颗粒的存在有效地降低了膜的孔隙率,从而解决了膜阻抗升高和部分电池功率损失的问题。这些结果不仅表明膜降解可以在高温下显着促进锂离子电池的功率损耗,而且还揭示了膜降解的机理。

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