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The electrochemistry of lithium in ionic liquid/organic diluent mixtures

机译:离子液体/有机稀释剂混合物中锂的电化学

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The electrochemistry of lithium is investigated in a number of electrolytes that consist of a lithium salt dissolved in a combined ionic liquid-organic diluent medium. We find that ethylene carbonate and vinylene carbonate improve electrochemical behaviour, while toluene and tetrahydrofuran are less promising. We also present insights into the electrode passivation caused by these diluents in an ionic liquid electrolyte during lithium cycling. We observe that during lithium cycling those electrolytes with carbonate based diluents are the most able to utilise their previously reported improved lithium ion diffusivities. Conversely, tetrahydrofuran, the most promising diluent of those studied in terms of its known ability to increase lithium ion diffusivity is found not to be as advantageous as a diluent. It appears that the poor electrochemical interfacial properties of the tetrahydrofuran electrolyte prevented the realisation of the benefits of the high solution lithium ion diffusivity.
机译:在许多电解质中研究了锂的电化学,这些电解质由溶解在离子液体有机稀释剂混合介质中的锂盐组成。我们发现碳酸亚乙酯和碳酸亚乙烯酯可改善电化学性能,而甲苯和四氢呋喃则前景较差。我们还介绍了在锂循环过程中由离子液体电解质中的这些稀释剂引起的电极钝化的见解。我们观察到,在锂循环过程中,那些具有碳酸盐稀释剂的电解质最能利用其先前报道的改善的锂离子扩散性。相反地​​,发现四氢呋喃,就其已知的增加锂离子扩散能力的能力而言,是最有前途的稀释剂,没有稀释剂那么有利。似乎四氢呋喃电解质的差的电化学界面性质阻止了高溶液锂离子扩散性的益处的实现。

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