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Development of new solid-state electrolytes based on a hexamethylguanidinium plastic crystal and lithium salts

机译:基于六甲基胍塑料晶体和锂盐的新型固态电解质的研制

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There is an urgent need to improve the safety of lithium batteries, mainly due to the flammable and volatile organic solvent-based electrolytes currently used. Organic ionic plastic crystals (OIPCs) are showing promise as safe alternative solid-state electrolytes. The new OIPC hexamethylguanidinium bis(fluorosulfonyl)imide ([HMG][FSI]) displays excellent properties, such as high conductivity and a wide electrochemical stability window, making it a promising material as a starting point for the development of new solid state electrolytes. In this work, mixtures of [HMG][FSI] with lithium salts of bis(trifluoromethanesulfonyl)imide ([TFSI]) or bis(fluorosulfonyl)imide ([FSI]) were prepared and the effects of lithium salt addition and the influence of anion on the electrolyte properties were investigated. Simultaneously, the effect of the salt concentration was studied by the addition of increasing amounts of lithium salt in [HMG][FSI] (10, 50 and 90 mol% of LiFSI and LiTFSI). The thermal properties, ionic conductivities, self-diffusion properties, electrochemical stabilities and lithium transport properties were evaluated for all electrolytes and the neat OIPC. Overall, all of the prepared quasi-solid state electrolytes showed good transport properties and supported reversible deposition and stripping of lithium, thus highlighting an important new avenue for the development of OIPCs as solid-state electrolytes for lithium batteries. (C) 2020 Elsevier Ltd. All rights reserved.
机译:迫切需要提高锂电池的安全性,主要是由于目前使用的易燃和挥发性有机溶剂的电解质。有机离子塑料晶体(OIPCS)显示有关安全替代固态电解质的承诺。新的OIPC六甲基胍鎓双(氟磺酰基)酰亚胺(氟磺酰基)酰亚胺([HMG] [FSI])显示出优异的性能,例如高导电性和宽的电化学稳定性窗口,使其成为开发新的固态电解质的起点的有希望的材料。在这项工作中,制备了[HMG] [FSI]的混合物(三氟甲磺酰基)酰亚胺([TFSI])或双(氟磺酰基)酰亚胺([FSI])和锂盐添加的影响和影响研究了电解质性能的阴离子。同时,通过在[HMG] [FSI] [FSI](10,50和90摩尔%的LIFSI和LITFSI)中加入增加量的锂盐来研究盐浓度的效果。对所有电解质和整齐的OIPC评价热性质,离子导电性,自扩散性能,电化学稳定性和锂传输性能。总体而言,所有制备的准固态电解质显示出良好的运输性能,并支持锂的可逆沉积和剥离,从而突出了OIPCS作为锂电池的固态电解质的开发的重要新途径。 (c)2020 elestvier有限公司保留所有权利。

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