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Poly(ionic liquid) binders as Li+ conducting mediators for enhanced electrochemical performance

机译:聚(离子液体)粘合剂作为Li +导电介质,可增强电化学性能

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摘要

A series of poly(ionic liquid)s (PILs) were used as binders for lithium-ion battery (LIB) with a LiFePO4 cathode to explore their role and benefits in a model electrochemical energy storage system. The PILs are imidazolium-based and bear different main chain structures and alkyl substituents. The results nicely show that PILs both improve the cycling stability and specific capacity. When carefully designed, they especially exhibited a usually high electrochemical stability against oxidative conditions (=4.0 vs. Li/Li+). It is found that the PIL binders together with carbon additive form very effective Li+ and electron conducting pathways in the electrode. These finding illustrate that binder with carefully designed chemical structures can have a high potential to improve the electrochemical performance even of current rechargeable battery systems. A better Li+ and electron conduction is however of general importance for a wide spectrum of electrochemical devices.
机译:一系列聚离子液体(PIL)被用作具有LiFePO4阴极的锂离子电池(LIB)的粘合剂,以探索其在模型电化学储能系统中的作用和益处。 PIL是基于咪唑鎓的并且具有不同的主链结构和烷基取代基。结果很好地表明,PILs可以改善循环稳定性和比容量。经过精心设计,它们尤其表现出通常对氧化条件的高电化学稳定性(相对于Li / Li + == 4.0)。发现PIL粘合剂与碳添加剂一起在电极中形成非常有效的Li +和电子传导途径。这些发现表明,具有精心设计的化学结构的粘合剂即使在当前的可再充电电池系统中也具有提高电化学性能的高潜力。然而,对于广泛的电化学装置而言,更好的Li +和电子传导具有普遍的重要性。

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