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首页> 外文期刊>Journal of solid state electrochemistry >Zirconia fiber membranes based on PVDF as high-safety separators for lithium-ion batteries using a papermaking method
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Zirconia fiber membranes based on PVDF as high-safety separators for lithium-ion batteries using a papermaking method

机译:基于PVDF的氧化锆纤维膜作为使用造纸方法的锂离子电池的高安全性分离器

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Lithium-ion batteries have been receiving more and more attention because of the energy crisis. As an important subassembly of lithium-ion batteries, the separator greatly affects the safety of the batteries. Herein, we report for the first time, a novel method fabricated separator by mixing zirconia fibers with polyvinylidene fluoride (PVDF) via papermaking process. The separators possess abundant pores and uniform structure after the phase inversion process. The separator properties were systematically studied at different proportion of PVDF. We find that when the content of PVDF is 40%, the separator has high porosity (77.69%), high electrolyte uptake (523.3%), and excellent thermal stability (thermal shrinkage ratio is 0% at 500 degrees C). In addition, the rate capability, cycle performance, and ionic conductivity are also investigated. We anticipate that the papermaking method of zirconia fibers will provide a strategy to fabricate a promising separator for enhanced electrochemical performance and high safety of lithium-ion batteries.
机译:锂离子电池由于能源危机而受到越来越多的关注。作为锂离子电池的重要子组件,分离器极大地影响了电池的安全性。在此,我们首次报告,通过用造纸工艺将氧化甘油纤维与聚偏二氟乙烯(PVDF)混合来制造分离器的新方法。分离器在相逆转录过程后具有丰富的孔和均匀的结构。以不同比例的PVDF系统地研究分离器性质。我们发现,当PVDF的含量为40%时,隔膜具有高孔隙率(77.69%),高电解质吸收(523.3%),优异的热稳定性(热收缩比为500℃。此外,还研究了速率能力,循环性能和离子电导率。我们预期氧化锆纤维的造纸方法将提供一种用于制造有前景分离器的策略,以提高电化学性能和锂离子电池的高安全性。

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