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A versatile nano-TiO_(2) decorated gel separator with derived multi-scale nanofibers towards dendrite-blocking and polysulfide-inhibiting lithium-metal batteries

机译:多功能纳米TiO_(2)装饰凝胶分离器,具有衍生的多尺寸纳米纤维朝向树突嵌入和多硫化物抑制锂金属电池

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摘要

In this study,a versatile fluorine-bearing gel membrane with multi-scale nanofibers was rationally designed and synthesized via facile one-step blend electrospinning of nano-titanium dioxide(TiO_(2))particles and fluorinated poly-m-phenyleneisophthalamide(PMIA)polymer solution.The prepared multiscale TiO_(2)-assisted gel separator presented relatively high porosity,small aperture,giving rise to superior affinity to electrolyte and sufficient active sites to accelerate lithium ions migration.Meanwhile,the asfabricated multifunctional GPE also rendered outstanding heat-resistance and well-distributed lithiumions flux,and the mutual overlaps between the coarse fibers and the fine fibers within the multi-scale nanofiber membrane provided a strong skeleton support,which in turn laid a solid footing stone for high-security and dendrite-proof batteries.Particularly,the nano-TiO_(2) particles within PMIA membrane acted as"gatekeepers",which can not only resist the growth of lithium dendrites,but also intercept the dissolved polysulfide on cathode side.Based on these merits,the gel PMIA-based lithium cobalt(LCO)/lithium battery obtained the remarkably improved rate capability and cycle performances on account of superior ionic conductivity,steady anodic stability window and weakened polarization behavior.Meanwhile,the resultant lithium-sulfur cell also delivered the outstanding cycling stability with the aid of the greatly prevented"shuttle effect"of dissolved lithium polysulfides based on the physical trapping and chemical binding of the prepared GPE to polysulfides species.This work proved that the addition of functional inorganic nanoparticles similar with TiO_(2) in multi-scale gel PMIA membrane can enhance the lithium ions transport capability,resist the growth of lithium dendrites as well as inhibit the shuttle effect of polysulfides,which would prompt a great development for dendrite-blocking and polysulfideinhibiting lithium-metal cells.
机译:在该研究中,通过纳米二氧化钛(TiO_(2))颗粒和氟化聚-M-苯二甲酰氨基(PMIA)的纳米二氧化物(TiO_(2))颗粒和氟化聚-M-苯二甲酰胺(PMIA)具有合理设计和合成具有多尺寸纳米纤维的含氟含氟凝胶膜。聚合物溶液。制备的多尺度TiO_(2)甲型凝胶分离器呈现出相对高的孔隙率,小孔径,引起对电解质和足够的活性位点的优异的亲和力,以加速锂离子迁移。偶尔,ASFabricated多功能GPE也呈现出优异的热量 - 电阻和分布均匀的锂锂,以及多尺寸纳米纤维膜内的粗纤维和细纤维之间的互相重叠提供了强大的骨架支撑,其又为高安全性和树突式电池铺设了实线脚石。PMIA膜内的纳米TiO_(2)颗粒作用为“守门人”,这不仅可以抵抗锂枝晶,B的生长UT还截取在阴极侧的溶解多硫化物。基于这些优点,凝胶PMIA的锂钴(LCO)/锂电池根据优异的离子电导率,稳定的阳极稳定性窗口获得显着提高的速率能力和循环性能,并削弱偏振行为。偶尔,所得锂 - 硫细胞还借助于基于制备的GPE对多硫化物物种的物理捕获和化学结合的溶解锂多硫化物的大大预防“穿梭效果”提供了出色的循环稳定性。本工作事实证明,在多尺度凝胶PMIA膜中加入类似于TiO_(2)的功能性无机纳米颗粒可以增强锂离子传输能力,抵抗锂树枝状锂的生长以及抑制多硫化物的梭效果,这会提示很好树突阻断和聚硫化物酸锂 - 金属细胞的开发。

著录项

  • 来源
    《能源化学:英文版》 |2021年第004期|P.190-201|共12页
  • 作者单位

    State Key Laboratory of Separation Membranes and Membrane Processes/National Center for International Joint Research on Separation Membranes Tiangong University Tianjin 300387 ChinaSchool of Textile Science and Engineering Tiangong University Tianjin 300387 China;

    State Key Laboratory of Separation Membranes and Membrane Processes/National Center for International Joint Research on Separation Membranes Tiangong University Tianjin 300387 ChinaSchool of Textile Science and Engineering Tiangong University Tianjin 300387 China;

    State Key Laboratory of Separation Membranes and Membrane Processes/National Center for International Joint Research on Separation Membranes Tiangong University Tianjin 300387 China;

    State Key Laboratory of Separation Membranes and Membrane Processes/National Center for International Joint Research on Separation Membranes Tiangong University Tianjin 300387 ChinaSchool of Textile Science and Engineering Tiangong University Tianjin 300387 China;

    State Key Laboratory of Separation Membranes and Membrane Processes/National Center for International Joint Research on Separation Membranes Tiangong University Tianjin 300387 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 TQ3;
  • 关键词

    Versatile gel polymer electrolyte; Multi-scale nanofibers; Thermostability; Dendrite-blocking and polysulfide-inhibiting; Lithium-metal batteries;

    机译:多功能凝胶聚合物电解质;多尺寸纳米纤维;热稳定性;树突堵塞和多硫化物抑制;锂金属电池;
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