纳米纤维
聚偏氟乙烯
材料科学
静电纺丝
分离器(采油)
纺纱
化学工程
膜
热稳定性
电化学
锂离子电池
离子电导率
复合材料
高分子化学
聚合物
电池(电)
电极
化学
电解质
功率(物理)
生物化学
物理化学
量子力学
工程类
物理
热力学
作者
Xingxu Gao,Lei Sheng,Xin Xie,Jing Wang,Yaozong Bai,Haoyu Dong,Gaojun Liu,Tao Wang,Xianli Huang,Jianping He
摘要
Abstract Commercial polyolefin separator cannot guarantee the safety of lithium‐ion batteries at high temperatures due to their poor thermal stability. All kinds of nanofiber membranes with high thermal stability become the focus. In this paper, we have prepared PVDF nanofiber membrane by electrospinning method and have studied the relationship between the electrochemical performance and nanofiber morphology in detail. It is found that the morphology of PVDF is transformed from ball‐like to various nanofiber with increasing the concentration of spinning solution. As a result, the PVDF nanofiber membrane (24 wt%‐HP) prepared from spinning solution with the concentration of 24 wt% is composed of coarse nanofiber and fine nanofiber, which exhibits better electrochemical properties, such as cycling stability (300 cycles) and ionic conductivity (1.65 mS cm −1 ). LiCoO 2 /Li cells based on PVDF nanofiber separators have higher discharge capacity even at the current density of 5 C‐rate, superior than the cells based on PE separator. It is inspiring for high‐energy‐density battery safety to use this PVDF nanofiber separator.
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