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Evaluation of polyolefin-based macroporous separators for high temperature Li-ion batteries

机译:高温锂离子电池用聚烯烃基大孔隔膜的评估

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Macroporous separators are critical components in liquid electrolyte batteries. Besides preventing physical contact between electrodes, they enable free ionic transport, electronic isolation and thermal shutdown. Nevertheless, separators also increase electrical resistance and takes up limited space inside the battery, affecting ionic conductivity. Widely used in lithium-ion batteries, commercial polyolefin-based separators operate in a limited temperature range, mainly ranging from -20 degrees C to + 60 degrees C. The purpose of this contribution is to assess the possibility to use these separators in lithium-ion batteries operating at extended temperatures, i.e. between -20 degrees C and 120 degrees C. For this purpose, four commercially available macroporous separators based on polyethylene and polypropylene, were investigated. To determine the effect of temperature on their performance, they were aged for one week at 120 degrees C. Evolution of their morphology and thermomechanical behavior was investigated using XRD, SEM, DSC, TGA and DMA. The thermal aging impact on the ionic conductivity was also investigated using LP30 (R) as reference electrolyte. Thermal aging, i.e. partial clogging of the porosity, was found to have significant effects mainly on mechanical strength, morphology and conductivity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:大孔隔板是液体电解质电池中的关键组件。除了防止电极之间的物理接触外,它们还可以实现自由离子迁移,电子隔离和热关机。但是,隔板也会增加电阻,并占用电池内部的有限空间,从而影响离子导电性。商用聚烯烃基隔膜广泛用于锂离子电池,在有限的温度范围内运行,温度范围主要为-20摄氏度至+ 60摄氏度。该贡献的目的是评估在锂电池中使用这些隔膜的可能性。离子电池在扩展温度下(即-20摄氏度至120摄氏度之间)工作。为此,研究了四种基于聚乙烯和聚丙烯的市售大孔隔膜。为了确定温度对其性能的影响,将它们在120摄氏度下老化了一周。使用XRD,SEM,DSC,TGA和DMA研究了它们的形貌和热机械行为。还使用LP30(R)作为参比电解质研究了热老化对离子电导率的影响。发现热老化,即孔隙的部分堵塞,对机械强度,形态和电导率具有重要影响。 (C)2016 Elsevier Ltd.保留所有权利。

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