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Electrolyte Additive Enabling Conditioning-Free Electrolytes for Magnesium Batteries

机译:电解质添加剂能够为镁电池提供无护理电解质

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摘要

Most electrolytes for rechargeable Mg batteries require time-consuming conditioning or precycling process to achieve a fully reversible Mg deposition/dissolution, which hinders the normal operation of Mg batteries. This study details a simple and effective method for eliminating this conditioning behavior using heptamethyldisilazane (HpMS) as an electrolyte additive. It was found that the HpMS additive greatly increases the current density and Coulombic efficiency of Mg deposition/dissolution from the initial cycles in various sulfone and glyme solutions containing MgCl2 or Mg(TFSI)(2). The beneficial effect of HpMS was ascribed to its ability to scavenge trace water in the electrolytes and remove Mg(OH)(2) and Mg(TFSI)(2)-decomposition products from the Mg surface. Considering its applicability for a wide range of Mg electrolytes, the use of HpMS is expected to accelerate the development of practical Mg batteries.
机译:用于可充电MG电池的大多数电解质需要耗时的调节或预粘接过程,以实现完全可逆的Mg沉积/溶解,其阻碍了Mg电池的正常操作。 本研究详细说明了一种简单且有效的方法,用于消除使用庚烷二硅烷烷(HPM)作为电解质添加剂的该调理行为。 发现HPMS添加剂大大增加了含有MgCl2或Mg(TFSI)(2)的各种砜和甘油溶液中的初始循环的Mg沉积/溶解的电流密度和库仑效率。 HPMS的有益效果归因于其在电解质中清除痕量水的能力,并从Mg表面除去Mg(OH)(2)和Mg(TFSI)(2) - 二种分解产物。 考虑到其适用于各种Mg电解质,预计HPMS的使用将加速实用MG电池的开发。

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