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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Probing nanoscale ion dynamics in ultrathin films of polymerized ionic liquids by broadband dielectric spectroscopy
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APS -APS March Meeting 2017 - Event - Probing nanoscale ion dynamics in ultrathin films of polymerized ionic liquids by broadband dielectric spectroscopy

机译:APS -APS 2017年3月会议-活动-通过宽带介电谱探测聚合离子液体超薄膜中的纳米级离子动力学

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摘要

Continuous progress in energy storage and conversion technologies necessitates novel experimental approaches that can provide fundamental insights regarding the impact of reduced dimensions on the functional properties of materials. In this talk, a nondestructive experimental approach to probe nanoscale ion dynamics in ultrathin films of polymerized ionic liquids over a broad frequency range spanning over six orders of magnitude by broadband dielectric spectroscopy will be presented. The approach involves using an electrode configuration with lithographically patterned silica nanostructures, which allow for an air gap between the confined ion conductor and one of the electrodes. It is observed that the characteristic ion dynamics rates significantly slow down with decreasing film thicknesses above the calorimetric glass transition of the bulk polymer. However, the mean rates remain bulk-like at lower temperatures. These results highlight the increasing influence of the polymer/substrate interactions with decreasing film thickness on ion dynamics.
机译:能源存储和转换技术的不断进步需要新颖的实验方法,这些方法可以提供有关尺寸减小对材料功能特性的影响的基本见识。在本次演讲中,将介绍一种通过宽带介电谱法在超过六个数量级的宽频率范围内探测聚合离子液体超薄膜中纳米级离子动力学的无损实验方法。该方法涉及使用具有光刻图案化的二氧化硅纳米结构的电极构造,其允许在受限离子导体与电极之一之间形成气隙。观察到,随着本体聚合物的量热玻璃化转变以上的膜厚度减小,特征离子动力学速率显着降低。但是,平均温度在较低温度下仍保持大块状。这些结果表明,随着膜厚度的减小,聚合物/底物相互作用对离子动力学的影响越来越大。

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