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Inorganic ceramic fiber separator for electrochemical and safety performance improvement of lithium-ion batteries

机译:无机陶瓷纤维分离器,用于锂离子电池的电化学和安全性能改进

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摘要

A separator based on ceramic fibers with excellent properties, utilized for powerful laminated lithium ion batteries, was prepared by low-cost production process. Physical and chemical characteristics of the separator and the electrochemical as well as the safety performance of lithium ion batteries were extensively investigated, and compared to commercialized polyethylene (PE) and ceramic-coating PE (C-PE) separators. The results demonstrated that inorganic ceramic fiber (CF) membrane exhibited higher porosity (85%), higher electrolyte uptake (381%) and higher ionic conductivity (1.48 mS/cm). Moreover, CF separator did not display thermal shrinkage at 160 degrees C for 1 h, manifesting that the separator possession of high thermal stability. The lithium nickel cobalt manganese oxide LiNio.sCo(0.2)Mn(0.3)O(2)/ graphite battery employing the CF membrane displayed superior rate capability, which delivered the discharge capacities of 13.206 A h (0.2 C), 12.729 A h (0.5 C), and 12.074 A h (1 C), respectively. In addition, this battery improved cycle stability, with the capacity retention of 101.4% following 100 cycles at 1 C rate. Results of safety tests presented that batteries with CF separator passed both nail penetration and extrusion tests, implying that the safety performance was remarkably improved. Additionally, CF membrane had only 20 cents in cost for 1 Ah cells, which was ten times lower than commercial PE and C-PE separators. The perfect combination of good properties and low cost made it possible for the CF separator to be a promising separator for laminated lithium-ion batteries, which are especially used in electric vehicles.
机译:通过低成本生产过程制备基于用于强大的层压锂离子电池的具有优异性能的陶瓷纤维的分离器。分离器和电化学的物理和化学特性以及锂离子电池的安全性能,并与商业化聚乙烯(PE)和陶瓷涂料PE(C-PE)分离器进行比较。结果表明,无机陶瓷纤维(CF)膜表现出较高的孔隙率(85%),更高的电解质吸收(381%)和更高的离子电导率(1.48ms / cm)。此外,CF分离器在160摄氏度下没有显示出热收缩1小时,表现为分离器具有高热稳定性。锂镍钴锰氧化物LINIO.SCO(0.2)MN(0.3)O(2)/石墨电池采用CF膜显示出优异的速率能力,其输送了13.206A(0.2℃),12.729 A H( 0.5 c)和12.074A h(1 c)。此外,这种电池改善了循环稳定性,容量保持在100次循环后101.4%以1c速率。安全测试的结果提出了具有CF分离器的电池通过指甲渗透和挤出测试,这意味着安全性能显着提高。另外,CF膜的成本仅为20美分,均为10倍,比商业PE和C-PE分离器低十倍。良好性能和低成本的完美结合使得CF分离器成为叠层锂离子电池的有望分离器,其特别用于电动车辆。

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