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Beneficial effect of added water on sodium metal cycling in super concentrated ionic liquid sodium electrolytes

机译:加水对超浓缩离子液体钠电解质中钠金属循环的有益作用

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摘要

The plating and stripping performance of sodium metal in an ionic liquid electrolyte is improved when including water as an additive. Herein we report for the first time the trend of improved cycling behavior of Nlaw(0/+) in N-methyl-N-propylpyrrolidinium bis(fluorosulfonyl)imide with 500 ppm H2O. The addition of water to this ionic liquid electrolyte promotes the breakdown of the [FSI](-) anion towards beneficial SEI formation. The benefits during plating and stripping of sodium is observed as lower total polarization during symmetrical cell cycling and decreased electrode/electrolyte interface impedance. Sodium metal surfaces after cycling with 500 ppm H2O are shown to be smooth in morphology in comparison to lower additive concentrations. The outcome of adventitious moisture benefiting Na0/+ cycling in an ionic liquid, contrary to conventional electrolytes, allows flexibility in ionic liquid electrolyte design to the benefit of battery manufacturers.
机译:当包含水作为添加剂时,离子液体电解质中的钠金属的镀覆和剥离性能得到改善。在此,我们首次报道了Nlaw(0 / +)在含500 ppm H2O的N-甲基-N-丙基吡咯烷鎓双(氟磺酰基)亚胺中改善循环行为的趋势。向该离子液体电解质中添加水会促进[FSI](-)阴离子的分解,从而有利于形成SEI。在对称的电池循环期间降低总极化并降低电极/电解质界面阻抗可观察到钠镀层和剥离过程中的好处。与较低的添加剂浓度相比,用500 ppm H2O循环后的金属钠表面显示出光滑的形态。与常规电解质相反,不定水分有利于Na0 / +在离子液体中的循环,这与常规电解质相反,可以使离子液体电解质设计具有灵活性,从而造福电池制造商。

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