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Allylic ionic liquid electrolyte-assisted electrochemical surface passivation of LiCoO2 for advanced, safe lithium-ion batteries

机译:锂离子液体电解质辅助的LiCoO2电化学表面钝化,用于高级,安全的锂离子电池

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摘要

Room-temperature ionic liquid (RTIL) electrolytes have attracted much attention for use in advanced, safe lithium-ion batteries (LIB) owing to their nonvolatility, high conductivity, and great thermal stability. However, LIBs containing RTIL-electrolytes exhibit poor cyclability because electrochemical side reactions cause problematic surface failures of the cathode. Here, we demonstrate that a thin, homogeneous surface film, which is electrochemically generated on LiCoO2 from an RTIL-electrolyte containing an unsaturated substituent on the cation (1-allyl-1-methylpiperidinium bis(trifluoromethanesulfonyl)imide, AMPip-TFSI), can avert undesired side reactions. The derived surface film comprised of a high amount of organic species from the RTIL cations homogenously covered LiCoO2 with a ,25 nm layer and helped suppress unfavorable thermal reactions as well as electrochemical side reactions. The superior performance of the cell containing the AMPip-TFSI electrolyte was further elucidated by surface, electrochemical, and thermal analyses.
机译:室温离子液体(RTIL)电解质具有挥发性,高导电性和出色的热稳定性,因此在高级,安全的锂离子电池(LIB)中的使用引起了广泛的关注。然而,因为电化学副反应引起阴极的有问题的表面失效,所以含有RTIL-电解质的LIB显示出差的可循环性。在这里,我们证明了一种薄而均匀的表面膜,它可以在LiCoO2上由包含阳离子上的不饱和取代基的RTIL电解质(1-烯丙基-1-甲基哌啶双(三氟甲磺酰基)酰亚胺,AMPip-TFSI)电化学生成。避免不良反应。派生的表面膜包含大量来自RTIL阳离子的有机物,均匀地覆盖了0.25 nm的LiCoO2,有助于抑制不利的热反应以及电化学副反应。通过表面,电化学和热分析进一步阐明了含有AMPip-TFSI电解质的电池的优越性能。

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