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High-Fluorinated Electrolytes for Li–S Batteries

机译:Li-S电池用高氟电解质

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Rechargeable Li-S batteries are regarded as one of the most promising next-generation energy-storage systems. However, the inevitable formation of Li dendrites and the shuttle effect of lithium polysulfides significantly weakens electrochemical performance, preventing its practical application. Herein, a new class of localized high-concentration electrolyte (LHCE) enabled by adding inert fluoroalkyl ether of 1H, 1H, 5H-octafluoropentyl-1,1,2,2- tetrafluoroethyl ether into highly-concentrated electrolytes (HCE) lithium bis(fluorosulfonyl) imide/dimethoxyether (DME) system is reported to suppress Li dendrite formation and minimize the solubility of the high-order polysulfides in electrolytes, thus reducing the amount of electrolyte in cells. Such a unique LHCE can achieve a high coulombic efficiency of Li plating/ stripping up to 99.3% and completely suppressing the shuttling effect, thus maintaining a S cathode capacity of 775 mAh g(-1) for 150 cycles with a lean electrolyte of 4.56 g A(-1) h(-1). The LHCE reduces the solubility of lithium polysulfides, allowing the Li/S cell to achieve super performance in a lean electrolyte. This conception of using inert diluents in a highly concentrated electrolyte can accelerate commercialization of Li-S battery technology.
机译:锂离子充电电池被认为是最有希望的下一代储能系统之一。然而,不可避免地形成Li树枝状晶体和多硫化锂的穿梭效应显着削弱了电化学性能,从而阻止了其实际应用。在此,通过向高浓度电解质(HCE)双锂锂中添加1H,1H,5H-八氟戊基-1,1,2,2-四氟乙基醚的惰性氟代烷基醚,可以实现一种新型的局部高浓度电解质(LHCE)。据报道,氟磺酰基)酰亚胺/二甲氧基醚(DME)系统可抑制锂枝晶的形成,并使高阶多硫化物在电解质中的溶解度最小,从而减少电池中电解质的量。这种独特的LHCE可以实现高达99.3%的Li镀覆/剥离的高库仑效率,并完全抑制穿梭效应,从而在4.56 g稀电解液的情况下,在150个循环中保持775 mAh g(-1)的S阴极容量。 A(-1)h(-1)。 LHCE降低了多硫化锂的溶解度,从而使Li / S电池在稀薄电解质中实现了卓越的性能。在高浓度电解质中使用惰性稀释剂的这一构想可以加速Li-S电池技术的商业化。

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