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Magnesium(II) Bis(trifluoromethane sulfonyl) Imide-Based Electrolytes with Wide Electrochemical Windows for Rechargeable Magnesium Batteries

机译:镁(II)双(三氟甲烷磺酰基)酰亚胺基电解质,具有可充电镁电池的宽电化学窗口

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摘要

We present a promising electrolyte candidate, Mg(TFSI), dissolved in glyme/diglyme, for future design of advanced magnesium (Mg) batteries. This electrolyte shows high anodic stability on an aluminum current collector and allows Mg stripping at the Mg electrode and Mg deposition on the stainless steel or the copper electrode. It is clearly shown that nondendritic and agglomerated Mg secondary particles composed of ca. 50 nm primary particles alleviating safety concern are formed in glyme/ diglyme with 0.3 M Mg(TFSI)2 at a high rate of IC. Moreover, a Mg(TFSI)2-based electrolyte presents the compatibility toward a Chevrel phase Mo6S8, a radical polymer charged up to a high voltage of 3.4 V versus Mg/Mg~(2+) and a carbon—sulfur composite as cathodes.
机译:我们提出了一种有前途的电解质候选物,Mg(TFSI),溶解在甘醇二甲醚/二甘醇二甲醚中,用于未来的高级镁(Mg)电池设计。该电解质在铝集流体上显示出很高的阳极稳定性,并允许Mg电极上的Mg汽提和不锈钢或铜电极上的Mg沉积。清楚地表明,非树枝状和团聚的Mg次级粒子由约20的碳原子组成。在含有高浓度IC的0.3 M Mg(TFSI)2的甘醇二甲醚/二甘醇二甲醚中形成了50 nm减轻安全隐患的初级粒子。此外,基于Mg(TFSI)2的电解质具有与Chevrel相Mo6S8的相容性,对Mg / Mg〜(2+)充电至3.4 V高压的自由基聚合物以及作为阴极的碳硫复合物。

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