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Microporous gel polymer electrolytes for lithium rechargeable battery application

机译:用于锂可充电电池的微孔凝胶聚合物电解质

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摘要

Microporous poly(vinylidene fluoride)/poly(methyl methacrylate) (PVDF/PMMA) membranes were prepared using the phase-separation method. Then, the membranes were immersed in liquid electrolyte to form polymer electrolytes. The effects of PMMA on the morphology, degree of crystallinity, porosity, and electrolyte uptake of the PVDF membrane were studied. The addition of PMMA increased the pore size, porosity and electrolyte uptake of the PVDF membrane, which in turn increased the ionic conductivity of the polymer electrolyte. The maximum ionic conductivity at room temperature was 1.21 × 10−3 S cm−1 for Sample E70. The polymer electrolyte was investigated, along with lithium iron phosphate (LiFePO4) as cathode for all solid-state lithium-ion rechargeable batteries. The lithium metal/E70/LiFePO4 cell yielded a stable discharge capacity of 133 mAh g−1 after up to 50 cycles at a current density of 8.5 mA g−1.
机译:使用相分离法制备了微孔聚偏二氟乙烯/聚甲基丙烯酸甲酯(PVDF / PMMA)膜。然后,将膜浸入液体电解质中以形成聚合物电解质。研究了PMMA对PVDF膜的形貌,结晶度,孔隙率和电解质吸收的影响。 PMMA的添加增加了PVDF膜的孔径,孔隙率和电解质吸收,进而增加了聚合物电解质的离子电导率。样品E70在室温下的最大离子电导率为1.21×10-3 S cm-1。研究了聚合物电解质,以及磷酸锂铁(LiFePO4)作为所有固态锂离子可充电电池的阴极。锂金属/ E70 / LiFePO4电池在经过50个循环之后,在8.5 mA g-1的电流密度下产生了133 mAh g-1的稳定放电容量。

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