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Polyurethanes containing an imidazolium diol-based ionic-liquid chain extender for incorporation of ionic-liquid electrolytes

机译:含咪唑二醇基离子液体扩链剂的聚氨酯,用于掺入离子液体电解质

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摘要

Novel polyurethane (PU) cationomers are synthesized using an imidazolium diol-based ionic liquid (IL) chain extender. A systematic comparison with a non-ionic PU analogue reveals effect of the imidazolium cation on physical properties, hydrogen bonding, and morphology of segmented PU. Casting resulting PU solutions with various contents of IL generates novel membranes. Thermal study reveals that IL-containing PU membranes exhibit a constant soft segment T_g at -81 °C; however, the T_g of imidazolium hard segments systematically shifts to lower temperatures with increasing IL content. This suggests that IL preferentially locates into the imidazolium ionic hard domains, which is also evident in small-angle X-ray scattering. Moreover, dielectric relaxation spectroscopy demonstrates increased ionic conductivity of PU membranes by 5 orders of magnitude upon incorporation of 30 wt% IL. Imidazolium-containing polyurethane cationomers serve as nanoscale templates for the incorporation of ionic-liquid electrolytes. Controlled charge density and location of the ionic sites, exclusively in the hard segment, directs the electrolyte to specific domains for enhanced ionic conductivity while maintaining membrane ductility.
机译:新型聚氨酯(PU)阳离子聚合物是使用咪唑二醇基离子液体(IL)扩链剂合成的。与非离子PU类似物的系统比较揭示了咪唑阳离子对物理性能,氢键和分段PU形态的影响。浇铸具有各种IL含量的所得PU溶液会产生新型膜。热学研究表明,含IL的PU膜在-81°C下显示恒定的软链段T_g;但是,随着IL含量的增加,咪唑硬段的T_g会系统地转移到较低的温度。这表明IL优先位于咪唑离子硬域中,这在小角度X射线散射中也很明显。此外,介电弛豫光谱法表明,掺入30 wt%IL后,PU膜的离子电导率提高了5个数量级。含咪唑鎓的聚氨酯阳离子聚合物充当纳米级模板,用于离子液体电解质的掺入。受控的电荷密度和离子位点的位置(仅在硬段中)可将电解质引导至特定区域,以增强离子电导率,同时保持膜的延展性。

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