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Electrospun sandwich polysulfonamide/polyacrylonitrile/polysulfonamide composite nanofibrous membranes for lithium-ion batteries

机译:锂离子电池用电纺夹层聚磺酰胺/聚丙烯腈/聚磺酰胺复合纳米纤维膜

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The demands for novel approaches that ensure stability in lithium-ion batteries are increasing and have led to the development of new materials and fabrication strategies. In this study, sandwich structure-like polysulfonamide (PSA)/polyacrylonitrile (PAN)/polysulfonamide (PSA) composite nanofibrous membranes were prepared via an electrospinning method and used as a separator in lithium-ion batteries. The spinning time of each polymer nanofiber layer of the composite membranes was respectively and precisely controlled to maximize the merits of each component. It was found that the PSA/PAN/PSA composite nanofibrous membranes exhibited superior thermal stability and excellent porosity, liquid electrolyte uptake and ionic conductivity, showing obvious enhancement as compared to those of the commercial microporous polyolefin separator (Celgard 2400), pure PSA and pure PAN membranes. In addition, they were evaluated in the assembled Li/LiFePO _(4) cells with an electrolyte solution, and good cycling performance and C-rate capacity were obtained; especially for the case of the PP6P membrane, the first discharge capacity of the battery reached 152?mA h g ~(?1) , and the discharge capacity retention ratio was 85.94% from 0.2C to 2C; moreover, the battery displayed highest capacity retention ratio after 70 cycles, which was found to be 96.2% of its initial discharge capacity. Therefore, the PSA/PAN/PSA composite nanofibrous membranes can be regarded as a promising candidate for application in lithium-ion batteries.
机译:对确保锂离子电池稳定性的新颖方法的需求不断增长,并导致了新材料和制造策略的发展。在这项研究中,通过电纺丝法制备了类似三明治结构的聚磺酰胺(PSA)/聚丙烯腈(PAN)/聚磺酰胺(PSA)复合纳米纤维膜,并将其用作锂离子电池的隔膜。分别并精确地控制复合膜的每个聚合物纳米纤维层的纺丝时间以最大化每种组分的优点。发现PSA / PAN / PSA复合纳米纤维膜表现出优异的热稳定性和优异的孔隙率,液体电解质吸收和离子电导率,与市售的微孔聚烯烃隔膜(Celgard 2400),纯PSA和纯PAN膜。另外,用电解质溶液在组装的Li / LiFePO_(4)电池中对其进行了评估,并获得了良好的循环性能和C速率容量。特别是对于PP6P膜,电池的首次放电容量达到152ΩmAh g〜(Ω1),从0.2C到2C,放电容量保持率为85.94%。此外,该电池在70次循环后显示出最高的容量保持率,被发现为其初始放电容量的96.2%。因此,PSA / PAN / PSA复合纳米纤维膜可被视为在锂离子电池中应用的有前途的候选者。

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