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Effect of the degree of porosity on the performance of poly(vinylidene fluoride-trifluoroethylene)/poly(ethylene oxide) blend membranes for lithium-ion battery separators

机译:孔隙度对锂离子电池隔膜用聚偏二氟乙烯-三氟乙烯/聚环氧乙烷共混膜性能的影响

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摘要

Porous polymer membranes based on poly(vinylidene fluoride-trifluoroethylene)/poly(ethylene oxide) copolymers, P(VDF-TrFE)/PEO, are prepared through the, from partial to total, elimination of PEO, leading to interconnected micropores in the polymer blends. Electrolyte uptake, thermal and mechanical properties depend on the amount of PEO present in the polymer blend. Further, the degree of crystallinity of PEO and the elastic modulus (E´) of the polymer blend decrease with increasing PEO removal. Electrical properties of the polymer blend membranes are influenced by the porosity and are dominated by diffusion. The temperature dependence of ionic conductivity follows the Arrhenius behavior. It is the highest for the membranes with a volume fraction of pores of 44% (i.e, 90% PEO removal), reaching a value of 0.54 mS.cm-1 at room temperature. Battery performance was determined by assembling Li/C-LiFePO4 swagelok cells. The polymer blends with 90% PEO removal exhibit rate (124 mAhg-1 at C/5 and 47 mAhg-1 at 2C) and cycling capabilities suitable for lithium ion battery applications.
机译:通过部分消除全部PEO,从而消除聚合物中相互连接的微孔,制得了基于聚偏二氟乙烯-三氟乙烯/聚环氧乙烷共聚物P(VDF-TrFE)/ PEO的多孔聚合物膜混合。电解质的吸收,热和机械性能取决于聚合物共混物中PEO的含量。此外,PEO的结晶度和聚合物共混物的弹性模量(E´)随着PEO去除率的增加而降低。聚合物共混物膜的电性能受孔隙率影响,并受扩散支配。离子电导率的温度依赖性遵循Arrhenius行为。对于具有44%(即90%PEO去除率)的孔体积比的膜而言,它是最高的,在室温下达到0.54 mS.cm-1的值。电池性能是通过组装Li / C-LiFePO4 swagelok电池确定的。聚合物共混物具有90%的PEO去除率(C / 5下为124 mAhg-1,2C下为47 mAhg-1)和适用于锂离子电池应用的循环能力。

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