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首页> 外文期刊>Angewandte Chemie >Reversible Sodium Metal Electrodes: Is Fluorine an Essential Interphasial Component?
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Reversible Sodium Metal Electrodes: Is Fluorine an Essential Interphasial Component?

机译:可逆钠金属电极:氟是必要的间间组分吗?

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Alkaline metals are an ideal negative electrode for rechargeable batteries. Forming a fluorine-rich interphase by a fluorinated electrolyte is recognized as key to utilizing lithium metal electrodes, and the same strategy is being applied to sodium metal electrodes. However, their reversible plating/stripping reactions have yet to be achieved. Herein, we report a contrary concept of fluorine-free electrolytes for sodium metal batteries. A sodium tetraphenylborate/monoglyme electrolyte enables reversible sodium plating/stripping at an average Coulombic efficiency of 99.85 % over 300 cycles. Importantly, the interphase is composed mainly of carbon, oxygen, and sodium elements with a negligible presence of fluorine, but it has both high stability and extremely low resistance. This work suggests a new direction for stabilizing sodium metal electrodes via fluorine-free interphases.
机译:碱金属是可再充电电池的理想负极。 通过氟化电解质形成富含氟的差异被认为是利用锂金属电极的关键,并且将相同的策略施加到钠金属电极上。 然而,它们的可逆电镀/汽提反应尚未实现。 在此,我们报告了含钠电池的无氟电解质的相反概念。 四苯乙烯硼酸钠/单烯丝电解质使可逆钠镀钠/剥离平均库仑效率为99.85%以上300次循环。 重要的是,间间主要由碳,氧和钠元素组成,具有可忽略的氟的存在,但它具有高稳定性和极低的电阻。 这项工作表明,通过无氟互相稳定钠金属电极的新方向。

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