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首页> 外文期刊>Electrochimica Acta >Alumina/Phenolphthalein Polyetherketone Ceramic Composite Polypropylene Separator Film for Lithium Ion Power Batteries
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Alumina/Phenolphthalein Polyetherketone Ceramic Composite Polypropylene Separator Film for Lithium Ion Power Batteries

机译:锂离子动力电池用氧化铝/酚酞聚醚酮陶瓷复合聚丙烯隔膜

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One way to obtain the lithium ion power battery with better safety performance was to increase the thermal shrinkage resistance of the separator at higher temperature. Phenolphthalein polyetherketone (PEK-C) is a polymer that can withstand high temperature to about 230 degrees C. Here, we developed a new Al2O3 coated composite polypropylene (PP) separator with PEK-C as binder. The coating layer was formed on the surface of the PP separator and both ceramic particles and binder did not infiltrated into the separator along the thickness direction. The composite separator with 4 mu m coating layer provided balanced permeability and thermal shrinkage properties. The composite separator was stable at the electrochemical window for lithium ion battery. The coin cells with composite separator showed better charge/discharge performance than that of the cells with the PP separator. It seemed that the composite separator was helpful for high current density discharge. Also, the battery safety performance test had verified that the Al2O3 coated composite separator with PEK-C as binder had truly improved the safety performance of the coin cells. So, the newly developed Al2O3 coated composite PP separator was a promising safety product for lithium ion power batteries with high energy density. (C) 2015 Elsevier Ltd. All rights reserved.
机译:获得具有更好安全性能的锂离子动力电池的一种方法是在较高温度下增加隔板的抗热收缩性。酚酞聚醚酮(PEK-C)是一种可以承受约230摄氏度高温的聚合物。在这里,我们开发了一种新的以PEK-C为粘合剂的Al2O3涂层复合聚丙烯(PP)隔膜。在PP隔板的表面上形成了涂层,并且陶瓷颗粒和粘合剂均未沿厚度方向渗透到隔板中。具有4微米涂层的复合隔膜提供了平衡的渗透性和热收缩性能。该复合隔板在锂离子电池的电化学窗口处是稳定的。带有复合隔板的纽扣电池的充电/放电性能优于带有PP隔板的纽扣电池。复合隔板似乎有助于高电流密度放电。此外,电池安全性能测试已经证实,以PEK-C为粘合剂的Al2O3涂层复合隔膜确实改善了纽扣电池的安全性能。因此,新开发的Al2O3涂层复合PP隔膜是高能量密度锂离子动力电池的有前途的安全产品。 (C)2015 Elsevier Ltd.保留所有权利。

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