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Novel porous separator based on PVdF and PE non-woven matrix for rechargeable lithium batteries

机译:基于PVdF和PE无纺布基体的新型多孔隔膜,用于可充电锂电池

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摘要

The novel porous separator based on PVdF (poly(vinylidene fluoride)) and a PE (polyethylene) non-woven matrix is prepared by coating PVdF/NMP solution on the matrix (NMP: 7V-methyl-2-pyrrolidone). The pore structure is generated in the PVdF region by phase inversion of the polymer solution. The PE non-woven matrix imparts mechanical strength and a thermal shut-down property to the separator, while the PVdF component provides a hydrophilic ionic conducting phase. The physical properties of the separator, such as morphology, pore size and its distribution, porosity and mechanical strength, are measured. The ionic conductivity of the separator is 8.9 X 10~(-4) S cm~(-1) at 25 deg C. The capacity at the C/2 rate is maintained at about 86 percent of the initial value on the 100th cycle at the room temperature. The electrolyte is stable up to 4.5 V in the presence of the novel separator.
机译:通过将PVdF / NMP溶液涂覆在基体(NMP:7V-甲基-2-吡咯烷酮)上,制备出基于PVdF(聚偏二氟乙烯)和PE(聚乙烯)非织造基体的新型多孔隔板。通过聚合物溶液的相转化在PVdF区域中产生孔结构。 PE无纺布基质为隔膜提供了机械强度和热关断性能,而PVdF组分提供了亲水性离子导电相。测量隔板的物理性质,例如形态,孔径及其分布,孔隙率和机械强度。隔膜的离子电导率在25摄氏度时为8.9 X 10〜(-4)S cm〜(-1)。在C / 2速率下,第100次循环的容量保持在初始值的86%左右。室温。在新型隔膜的存在下,电解质在高达4.5 V的电压下稳定。

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