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Rigid-Flexible Coupling High Ionic Conductivity Polymer Electrolyte for an Enhanced Performance of LiMn2O4/Graphite Battery at Elevated Temperature

机译:刚柔耦合高离子电导率聚合物电解质在高温下增强LiMn2O4 /石墨电池的性能

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摘要

LiMn2O4-based batteries exhibit severe capacity fading during cycling or storage in LiPF6-based liquid electrolytes, especially at elevated temperatures. Herein, a novel rigid-flexible gel polymer electrolyte is introduced to enhance the cyclability of LiMn2O4/graphite battery at elevated temperature. The polymer electrolyte consists of a robust natural cellulose skeletal incorporated with soft segment poly(ethyl alpha-cyanoacrylate). The introduction of the cellulose effectively overcomes the drawback of poor mechanical integrity of the gel polymer electrolyte. Density functional theory (DFT) calculation demonstrates that the poly(ethyl alpha-cyanoacrylate) matrices effectively dissociate the lithium salt to facilitate ionic transport and thus has a higher ionic conductivity at room temperature. Ionic conductivity of the gel polymer electrolyte is 3.3 x 10(-3) S cm(-1) at room temperature. The gel polymer electrolyte remarkably improves the cycling performance of LiMn2O4-based batteries, especially at elevated temperatures. The capacity retention after the 100th cycle is 82% at 55 degrees C, which is much higher than that of liquid electrolyte (1 M LiPF6 in carbonate solvents). The polymer electrolyte can significantly suppress the dissolution of Mn2+ from surface of LiMn2O4 because of strong interaction energy of Mn2+ with PECA, which was investigated by DFT calculation.
机译:基于LiMn2O4的电池在循环或在基于LiPF6的液体电解质中存储时,特别是在高温下,会表现出严重的容量衰减。在本文中,引入了一种新型的刚性-柔性凝胶聚合物电解质,以增强LiMn2O4 /石墨电池在高温下的循环性。聚合物电解质由坚固的天然纤维素骨架和软链段聚(α-氰基丙烯酸乙酯)组成。纤维素的引入有效地克服了凝胶聚合物电解质的机械完整性差的缺点。密度泛函理论(DFT)计算表明,聚(α-氰基丙烯酸乙酯)基质可有效地解离锂盐以促进离子迁移,因此在室温下具有较高的离子电导率。凝胶聚合物电解质的离子电导率在室温下为3.3 x 10(-3)S cm(-1)。凝胶聚合物电解质显着改善了LiMn2O4基电池的循环性能,尤其是在高温下。第100个循环后,在55摄氏度下的容量保持率为82%,这比液体电解质(在碳酸盐溶剂中为1 M LiPF6)要高得多。通过DFT计算研究发现,由于Mn2 +与PECA的强相互作用能,高分子电解质可以显着抑制Mn2 +从LiMn2O4表面的溶解。

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