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Communication: Influence of nanophase segregation on ion transport in room temperature ionic liquids

机译:交流:纳米相分离对室温离子液体中离子迁移的影响

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We report measurements of the ionic conductivity, shear viscosity, and structural dynamics in a homologous series of quaternary ammonium ionic liquids (ILs) and a prototypical imidazolium-based IL over a wide range of temperatures down to the glass transition. We find that the ionic conductivity of these materials generally decreases, while the shear viscosity correspondingly increases, with increasing volume fraction of aliphatic side groups. Upon crossing an aliphatic volume fraction of similar to 0.40, we observe a sharp, order-of-magnitude decrease in ionic conductivity and enhancement of viscosity, which coincides with the presence of long-lived, nanometer-sized alkyl aggregates. These strong changes in dynamics are not mirrored in the ionicity of these ILs, which decreases nearly linearly with aliphatic volume fraction. Our results demonstrate that nanophase segregation in neat ILs strongly reduces ionic conductivity primarily due to an aggregation-induced suppression of dynamics. Published by AIP Publishing.
机译:我们报告了在一系列温度直至玻璃化转变温度下,一系列同源季铵离子液体(ILs)和典型的基于咪唑鎓的IL的离子电导率,剪切粘度和结构动力学的测量结果。我们发现,随着脂族侧基的体积分数增加,这些材料的离子电导率通常降低,而剪切粘度相应地增加。越过类似于0.40的脂肪族体积分数时,我们观察到离子电导率急剧下降,幅度减小,粘度增加,这与长寿命的纳米级烷基聚集体的存在相吻合。这些动力学的强烈变化未反映在这些IL的离子性上,离子化几乎随脂肪族体积分数线性降低。我们的研究结果表明,纯净IL中的纳米相偏析主要由于聚集诱导的动力学抑制而强烈降低了离子电导率。由AIP Publishing发布。

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