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Lithium-conducting ionic melt electrolytes from oligomeric ethylene glycols: Synthesis and characterization.

机译:低聚乙二醇的锂导电离子熔体电解质:合成与表征。

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Commercial lithium ion cells consist of electrolytes that undergo salt concentration polarization which is acute upon high discharge currents. This type of polarization occurs as a result of the mobility of more than one ionic species in the presence of an electric field. One way to overcome it is by employing a material that would allow the mobility of one ionic species. This thesis will describe the synthesis and characterization of several fluorosulfonimide and fluorosulfonate based ionic liquids/melts as electrolytes having lithium as the only mobile ion. These materials were prepared by the nucleophilic addition reaction of a deprotonated polyether onto a perfluorovinyl ether group. Their transport, thermal and rheological properties were studied. Lithium ion cells consisting of LiCO2 cathode and Li4Ti 5O12 spinel anode were fabricated and the electrochemical cell performance of the novel electrolytes was investigated under different discharge rates. It was found that the addition of partially fluorinated polyether functionalized with fluorinated lithium imide salt into the cathode composition, and the addition of polyether solvating agent into the electrolyte contributed to improved cell performance in terms of capacity and delivered power.
机译:商用锂离子电池由电解质组成,这些电解质会经历盐浓度极化,这在高放电电流下会很明显。这种类型的极化是由于在电场存在下一种以上离子物种的迁移率而导致的。解决该问题的一种方法是采用一种允许一种离子物质迁移的材料。本论文将描述几种基于氟磺酰亚胺和氟磺酸盐的离子液体/熔体的合成和表征,这些离子液体/熔体是具有锂作为唯一移动离子的电解质。这些材料是通过去质子化的聚醚与全氟乙烯基醚基团的亲核加成反应制备的。研究了它们的传输,热和流变性。制备了由LiCO2阴极和Li4Ti 5O12尖晶石阳极组成的锂离子电池,并研究了不同放电速率下新型电解质的电化学性能。发现在阴极组合物中添加用氟化酰亚胺锂盐官能化的部分氟化聚醚,以及在电解质中添加聚醚溶剂化剂在容量和输送功率方面有助于改善电池性能。

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