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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Highly elastic and mechanically robust polymer electrolytes with high ionic conductivity and adhesiveness for high-performance lithium metal batteries
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Highly elastic and mechanically robust polymer electrolytes with high ionic conductivity and adhesiveness for high-performance lithium metal batteries

机译:具有高离子电导率和高性能锂金属电池的粘合性的高度弹性和机械鲁棒聚合物电解质

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摘要

Due to the superior processability as well as readily-regulated mechanical and interfacial properties, polymer electrolytes are promising alternatives to inorganic solid electrolytes for lithium metal batteries (LMBs). However, polymer electrolytes that fulfill the requirements for application in LMBs are still quite rare. Herein, we report a highly stretchable and elastic, mechanically robust, and adhesive polymer electrolyte possessing high ionic conductivity. The polymer electrolyte was fabricated by in situ incorporation of lithium salts in the elastomeric polymer network of polyethylene oxide (PEO), wherein the PEO chains are simultaneously crosslinked by covalent and noncovalent bonds. Such a structural feature effectively hinders crystallization of the PEO chains and endows the polymer electrolyte with excellent elastic self-recovery and high mechanical robustness. The polymer electrolyte exhibits a room-temperature ionic conductivity as high as 4.8 x 10(-4) S cm(-1) and good adhesiveness to the electrodes of LMBs. The excellent elastic self-recovery in combination with high robustness and adhesiveness of the polymer electrolyte gives rise to the self-adaptive and tightly bonded electrolyte-electrode interfaces in an LMB. As a result, the polymer electrolyte can significantly suppress the Li dendrite growth and lower the interfacial resistance in the LMB. The LiFePO4 parallel to Li battery assembled with the polymer electrolyte can be stably cycled for 450 cycles at 0.5C at room temperature and deliver steady and high discharge capacity of ca. 133.0 mA h g(-1). The as-developed polymer electrolyte shows not only promise for application in high-performance LMBs but also high potential as an elastic electrolyte for stretchable lithium-ion batteries.
机译:聚合物电解质由于其优越的加工性能以及易于调节的机械和界面性能,是锂金属电池(LMB)无机固体电解质的有前途的替代品。然而,满足LMB应用要求的聚合物电解质仍然非常罕见。在此,我们报道了一种具有高离子导电性的高延展性、弹性、机械稳定性和粘性的聚合物电解质。聚合物电解质是通过在聚乙烯氧化物(PEO)的弹性聚合物网络中原位掺入锂盐而制备的,其中PEO链通过共价键和非共价键同时交联。这种结构特征有效地阻碍了PEO链的结晶,并赋予聚合物电解质优异的弹性自恢复性和高机械稳定性。聚合物电解质具有高达4.8x10(-4)scm(-1)的室温离子导电性和与LMB电极的良好粘附性。聚合物电解质优异的弹性自恢复性,以及高度的坚固性和粘附性,使得LMB中的电解质-电极界面具有自适应性和紧密结合性。结果表明,聚合物电解质可以显著抑制锂树枝晶的生长,降低LMB中的界面电阻。采用聚合物电解质组装的LiFePO4平行锂电池在室温下可在0.5C下稳定循环450次,并提供约133.0 mA h g(-1)的稳定高放电容量。所研制的聚合物电解质不仅有望用于高性能LMB,而且有望作为弹性电解质用于可伸缩锂离子电池。

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    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Peoples R China;

    Jilin Univ Coll Chem State Key Lab Supramol Struct &

    Mat Changchun 130012 Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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