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Polymeric Backbone Eutectogels as a New Generation of Hybrid Solid-State Electrolytes

机译:聚合物骨干eutectogels作为新一代杂种固态电解质

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This work introduces the polymeric eutectogel (P-ETG) solid composite electrolytes (SCEs) developed from the encapsulation of a liquid deep eutectic solvent (DES) electrolyte within a solid amide-based polymer backbone. Compared to their silica-based eutectogel counterparts, the P-ETGs can be efficiently processed by means of UV curing from liquid precursors and possess superior mechanical flexibility. The P-ETGs are characterized by a good electrochemical stability (up to 4.5 V vs Li) and high ionic conductivity up to 0.78 mS cm(-1). The potentiality of P-ETG for application in Li/Li-ion batteries is substantiated by stable cycling results of Li/P-ETG/LiFePO4 cells over 100 cycles at C/5 to 1C rates. The fire-hazards analysis reveals the improved safety of P-ETGs in contrast to the conventional liquid electrolytes (1 M LiPF6 in EC/DEC).
机译:该工作介绍了从固体酰胺基聚合物主链内的液体深凝胶溶剂(DES)电解质的包封产生的聚合物Eutectogel(P-ETG)固体复合电解质(SCES)。 与其基于二氧化硅的eutectogel对应物相比,可以通过液体前体的UV固化有效地处理p-ETG,并且具有优异的机械柔性。 P-ETG的特征在于良好的电化学稳定性(高达4.5V Vs Li),高达0.78ms cm(-1)的高离子电导率。 在Li / Li离子电池中施加P-ETG的潜力是通过在C / 5至1C速率下超过100次循环的Li / P-Etg / Lifepo4细胞的稳定循环结果来证实。 火灾危害分析显示与常规液体电解质相比(EC / Dec)的常规液体电解质对比的P-ETGs的改善。

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