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High Temperature Resistant Separator of PVDF-HFP/DBP/C-TiO2 for Lithium-Ion Batteries

机译:锂离子电池PVDF-HFP / DBP / C-TiO2的耐高温隔膜

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摘要

To improve the thermal shrinkage and ionic conductivity of the separator for lithium-ion batteries, adding carboxylic titanium dioxide nanofiber materials into the matrix is proposed as an effective strategy. In this regard, a poly(vinylidene fluoride-hexafluoro propylene)/dibutyl phthalate/carboxylic titanium dioxide (PVDF-HFP/DBP/C-TiO2) composite separator is prepared with the phase inversion method. When the content of TiO2 nanofibers reaches 5%, the electrochemical performance of the battery and ion conductivity of the separator are optimal. The PVDF-HFP/DBP/C-TiO2 (5%) composite separator shows about 55.5% of porosity and 277.9% of electrolyte uptake. The PVDF-HFP/DBP/C-TiO2 (5%) composite separator has a superior ionic conductivity of 1.26 × 10 −3 S cm−1 and lower interface impedance at room temperature, which brings about better cycle and rate performance. In addition, the cell assembled with a PVDF-HFP/DBP/C-TiO2 separator can be charged or discharged normally and has an outstanding discharge capacity of about 150 mAh g−1 at 110 °C. The battery assembled with the PVDF-HFP/DBP/C-TiO2 composite separator exhibits excellent electrochemical performance under high and room temperature environments.
机译:为了改善锂离子电池隔膜的热收缩率和离子电导率,提出将羧酸二氧化钛纳米纤维材料添加到基质中作为有效策略。在这方面,通过相转化法制备了聚偏二氟乙烯-六氟丙烯/邻苯二甲酸二丁酯/羧酸二氧化钛(PVDF-HFP / DBP / C-TiO2)复合隔板。当TiO2纳米纤维的含量达到5%时,电池的电化学性能和隔膜的离子电导率最佳。 PVDF-HFP / DBP / C-TiO2(5%)复合隔板显示出约55.5%的孔隙率和277.9%的电解质吸收。 PVDF-HFP / DBP / C-TiO2(5%)复合隔膜具有优异的离子电导率,为1.26×10 -3 S cm -1 ,并且在室温,可以带来更好的循环和速率性能。另外,组装有PVDF-HFP / DBP / C-TiO2隔膜的电池可以正常充电或放电,在110°C时具有出色的放电容量,约为150 mAh g -1 。组装有PVDF-HFP / DBP / C-TiO2复合隔膜的电池在高温和室温环境下均具有出色的电化学性能。

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