首页> 外文期刊>Journal of Polymer Research >Porous PAN micro/nanofiber membranes with potential application as Lithium-ion battery separators: physical, morphological and thermal properties
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Porous PAN micro/nanofiber membranes with potential application as Lithium-ion battery separators: physical, morphological and thermal properties

机译:多孔平移微/纳米纤维膜具有潜在应用作为锂离子电池分离器:物理,形态和热性能

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摘要

The porous PAN micro/nanofiber membranes with an average diameter of 700-800nm were produced in one step by electrospinning a ternary system of PAN/DMF/H2O with phase separation mechanism. Also, non-porous PAN micro/nanofiber membranes with a similar diameter were prepared. Physical, morphological, mechanical and thermal properties of the porous PAN micro/nanofiber membranes were characterized and compared with those of non-porous PAN membranes. Thermal shrinkage of the porous PAN micro/nanofiber membranes and the Celgard PP separators were examined to be 15% and 95%, respectively, after treating for 45min at 200 degrees C. The porosity impacts of porous PAN micro/nanofiber membranes were explored on some of the effective properties in battery performance. The results revealed that the porous PAN micro/nanofiber membranes had a higher air permeability value than the Celgard PP separators, indicating that the porosity, interconnected pores and ionic conductivity were higher. The porous PAN micro/nanofiber membranes had an enhanced electrolyte wettability, small contact angle and large electrolyte uptake leading to be the most promising candidate for Li-ion battery (LIB) separators.
机译:通过将平底纺出平坦的PAN / DMF / H2O,通过相分离机构静电,在一个步骤中产生平均直径为700-800nm的多孔平移微/纳米纤维膜。而且,制备具有相似直径的无孔平底纤维微/纳米纤维膜。具有多孔平底纤维膜的物理,形态,机械和热性能,并与非多孔锅膜的膜的表征和比较。在200摄氏度下处理45分钟后,将多孔平移微/纳米纤维膜和可分别为95%的热量收缩。电池性能有效性能。结果表明,多孔平移微/纳米纤维膜具有比Celgard PP分离器更高的透气性值,表明孔隙率,互连孔和离子电导率较高。多孔平底锅微/纳米纤维膜具有增强的电解质润湿性,小的接触角和大电解质吸收,导致是锂离子电池(Lib)分离器最有前途的候选者。

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