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Facile and Nonradiation Pretreated Membrane as a High Conductive Separator for Li-Ion Batteries

机译:易用和无辐射预处理的膜,可作为锂离子电池的高导电隔膜

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摘要

Polyolefin membranes are widely used as separators in commercialized Li-ion batteries. They have less polarized surfaces compared with polarized molecules of electrolyte, leading to a poor wetting state for separators. Radiation pretreatments are often adopted to solve such a problem. Unfortunately, they can only activate several nanometers deep from the surface, which limits the performance improvement. Here we report a facile and scalable method to polarize polyolefm membranes via a chemical oxidation route. On the surfaces of pretreated membrane, layers of poly(ethylene oxide) and poly(acrylic acid) can easily be coated, thus resulting in a high Li-ion conductivity of the membrane. Assembled with this decorated separator in button cells, both high-voltage (Li1.2Mn0.54Co0.13Ni0.13O2) and moderate-voltage (LiFePO4) cathode materials show better electrochemical performances than those assembled with pristine polyolefin separators.
机译:聚烯烃膜被广泛用作商业化锂离子电池的隔膜。与电解质的极化分子相比,它们的极化表面更少,从而导致隔膜的润湿状态差。通常采用辐射预处理来解决该问题。不幸的是,它们只能激活距表面深处几纳米的表面,这限制了性能的提高。在这里,我们报告了一种通过化学氧化途径极化聚烯烃膜的简便且可扩展的方法。在预处理膜的表面上,聚环氧乙烷和聚丙烯酸层可以很容易地被涂覆,从而导致膜的高锂离子电导率。在纽扣电池中用这种装饰隔离膜组装后,高压(Li1.2Mn0.54Co0.13Ni0.13O2)和中压(LiFePO4)阴极材料都比用原始聚烯烃隔离膜组装的阴极材料表现出更好的电化学性能。

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