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Study of solid polyurethane electrolytes synthesized from HDI and PEO of different molecular weight

机译:从不同分子量的HDI和PEO合成的固体聚氨酯电解质研究

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摘要

The development of solid polymer electrolyte (SPE) is important for the fabrication of safe and high performance lithium ion battery of the next generation. A series of polyurethanes (PUs) based SPEs synthesized from hexamethylene diisocyanate (HDI) and poly(ethylene glycol)s (PEGs) of varying molecular weight (MW = 300 -1500 corresponding to PU03 - PU15) via one-step approach are investigated for the conductivity of lithium ion and other electrochemical properties. These synthetic PUs exhibit semi-crystalline structures when the MW of PEG is higher than 300, and turn into amorphous after the addition of LiClO4. The ionic conductivity decreases with the increasing concentration of LiClO4. The highest lithium ion conductivity was found to be 3.42 x 10-5 S/cm for PU15 with 10 wt% LiClO4 at 50 degrees C. However, its lithium ion transference number is low by 0.15. All of the PU-based SPEs containing 10 wt% LiClO4 are electrochemically stable up to 4.2 - 4.5 V versus Li+/Li, and show very good cycling stability in charge/discharge experiments. In the assembled battery with LiFePO4 as the cathode, PU15 displays higher performances than PU03, indicating good correlation to the molecular weight of PEG.
机译:固体聚合物电解质(SPE)的发展对制造安全、高性能的下一代锂离子电池具有重要意义。研究了以六亚甲基二异氰酸酯(HDI)和不同分子量的聚乙二醇(PEG)(分子量为300-1500,对应于PU03-PU15)为原料,通过一步法合成的一系列聚氨酯(PUs)基SPE的锂离子导电性和其他电化学性能。当PEG的分子量大于300时,这些合成PUs呈现半晶态结构,并且在添加LiClO4后变成无定形。离子电导率随LiClO4浓度的增加而降低。研究发现,在50℃下,含10 wt%LiClO4的PU15的最高锂离子电导率为3.42 x 10-5 S/cm。然而,其锂离子转移数较低,仅为0.15。与Li+/Li相比,所有含有10 wt%LiClO4的PU基SPE的电化学稳定性高达4.2-4.5 V,并且在充放电实验中显示出非常好的循环稳定性。在以LiFePO4为阴极的组装电池中,PU15表现出比PU03更高的性能,表明其与PEG的分子量有良好的相关性。

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