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Nanoconfinement effects on structural anomalies in imidazolium ionic liquids

机译:Nanoconfinement影响结构异常imidazolium离子液体

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摘要

Imidazolium Ionic Liquids (ILs) have been found to exhibit unusual nanostructuring behavior below their glass transition temperatures (T-g), which is ascribed to rearrangements in nonpolar domains formed by segregated alkyl chains. However, the dimensions required for such highly cooperative bulk phenomena are still unknown. In this work, we for the first time, investigate the effect of nanoconfinement on structural anomalies in imidazolium ILs. For this purpose, a series of ILs were embedded into the cavities of metal-organic framework (MOF) ZIF-8 and investigated using spin probes and Electron Paramagnetic Resonance (EPR) spectroscopy. The unusual nanostructuring near T-g, previously known for bulk ILs, was also observed for such nanoconfined ILs, and the amplitude of the anomaly was found to be dependent on the structure of the IL, thus showing the effects of molecular packing inside the MOF cavity. The first observation of structural anomalies in nanoconfined ILs opens perspectives for designing smart materials exhibiting these phenomena, and engaging MOFs as platforms creates the basis for potential applications of such functionalities.
机译:Imidazolium离子液体(ILs)被发现表现出不寻常的奈米结构的行为其玻璃化转变温度(T-g)是归因于非极性的重组领域由隔离烷基链。尺寸要求这样的高度合作大部分现象仍然是未知的。我们第一次调查的影响nanoconfinement结构异常imidazolium盲降。图书馆是嵌入的蛀牙(MOF) ZIF-8和有机框架调查使用自旋探针和电子顺磁共振(EPR)谱。T-g附近不同寻常的奈米结构以散装盲降,也观察等nanoconfined ILs和的振幅依赖于异常被发现的结构,因此显示的效果在财政部腔分子包装。首先观察结构异常nanoconfined ILs打开视角设计智能材料表现出这些现象财政部为平台创造的基础潜在应用的功能。

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