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Preparation of Poly(vinylidene fluoride) Lithium-Ion Battery Separators and Their Compatibilization with Ionic Liquid – A Green Solvent Approach

机译:聚(乙烯基氟化物)锂离子电池分离器的制备及其与离子液体的兼容 - 一种绿色溶剂方法

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摘要

Battery separator membranes for lithium-ion batteries have been developed based on poly(vinylidene fluoride), PVDF, and using the “green solvent” - N,N’-dimethylpropyleneurea (DMPU). This separator presents a porous microstructure with a degree of porosity of 20% and pore size below 1 mm, showing excellent mechanical properties. Further, its ionic conductivity, tortuosity and MacMullin number values are 0.1 mS.cm~(-1), 4 and 82, respectively. This PVDF separator membrane was evaluated in Li/C–LiFePO4 half-cells with electrolyte solution showing good cyclability and rate capability, with a discharge value after 50 cycles of 56 mAh.g~(-1) at C, corresponding to 50% of the capacity retention. Its electrochemical performance soaked in ionic liquid presents a discharge capacity of 45 mAh.g~(-1) at C/5- rate and capacity retention of 60%, respectively. Thus, this separator is an appropriate candidate for environmentally friendlier and safer lithium-ion batteries.
机译:基于聚(乙烯基氟化物),PVDF和使用“绿色溶剂” -N,N'-二甲基丙烯脲(DMPU)开发了用于锂离子电池的电池分离器膜。 该分离器提供了一个多孔微观结构,其孔隙率为20%,孔径低于1毫米,显示出极好的机械性能。 此外,其离子电导率,曲折度和MacMullin数值分别为0.1 ms.cm〜(-1),4和82。 该PVDF分离器膜在Li/c – lifepo4半细胞中用电解质溶液评估,显示出良好的可环性和速率能力,在56 mAh的50个周期后,在C处的排放值,C时为相当于50%的56 mAh。 能力保留。 其在离子液体中浸泡的电化学性能的排放能力分别为45 mAh.g〜(-1),分别以C/5-速率和容量保留率分别为60%。 因此,该分离器是环境更友好,更安全的锂离子电池的合适候选者。

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