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Effect of cyano dipolar groups on the performance of lithium-ion battery electrospun polyimide gel electrolyte membranes

机译:氰基偶极基团对锂离子电池电纺聚酰亚胺凝胶电解质膜性能的影响

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摘要

Three polyimide membranes (polymer 0CN, copolymers 0CN/2CN (50/50) and polymer 2CN), with and without [Formula presented] dipolar groups, have been prepared by electrospinning and evaluated as lithium-ion battery separators. The prepared membranes show average fiber diameters between 0.5 and 1.09 μm and a degree of porosity of ~ 80%. The thermal stability, uptake, tortuosity and ionic conductivity values are influenced by the presence of the [Formula presented] dipolar groups in the polyimide polymer chain. The best battery performance in LFP/Li system is obtained for the 0CN sample, which shows discharge capacity values of 149.7 mAh·g− 1, 146.5 mAh·g− 1 and 124.6 mAh·g− 1 at C/20, C/10 and C/5, respectively. The obtained high solution uptake, ionic conductivity values and rate capability show that these materials are promising candidates for battery separators for rechargeable lithium-ion batteries, when compared to glass microfiber separators.
机译:通过电纺丝制备了具有和不具有[给出的式]偶极基团的三种聚酰亚胺膜(聚合物0CN,共聚物0CN / 2CN(50/50)和聚合物2CN),并被评价为锂离子电池隔膜。制备的膜表现出的平均纤维直径在0.5和1.09μm之间,孔隙率约为80%。热稳定性,吸收率,曲折度和离子电导率值受聚酰亚胺聚合物链中存在[公式]偶极基团的影响。对于0CN样品,在LFP / Li系统中获得了最佳的电池性能,在C / 20,C / 10下,其放电容量值分别为149.7 mAh·g-1、146.5 mAh·g-1和124.6 mAh·g-1。和C / 5。与玻璃微纤维隔板相比,所获得的高溶液吸收,离子电导率值和倍率性能表明,这些材料是可再充电锂离子电池隔板的有前途的候选材料。

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