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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Surface-functionalized ionic liquid crystal-supported ionic liquid phase materials: Ionic liquid crystals in mesopores
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Surface-functionalized ionic liquid crystal-supported ionic liquid phase materials: Ionic liquid crystals in mesopores

机译:表面官能化离子液晶支撑的离子液相材料:中孔中的离子液晶

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摘要

The influence of confinement on the ionic liquid crystal (ILC) [C _(18)C_1Im][OTf] is studied using differential scanning calorimetry (DSC), polarized optical microscopy (POM), and diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS). The ILC studied is supported on Si-based powders and glasses with pore sizes ranging from 11 to 50 nm. The temperature of the solid-to-liquid-crystalline phase transition seems mostly unaffected by the confinement, whereas the temperature of the liquid-crystalline-to-liquid phase transition is depressed for smaller pore sizes. A contact layer with a thickness in the order of 2 nm is identified. The contact layer exhibits a phase transition at a temperature 30 K lower than the solid-to-liquid-crystalline phase transition observed for the neat ILC. For applications within the "supported ionic liquid phase (SILP)" concept, the experiments show that in pores of diameter 50 nm a pore filling of α>0.4 is sufficient to reproduce the phase transitions of the neat ILC.
机译:使用差示扫描量热法(DSC),偏振光学显微镜(POM)和漫反射红外傅里叶变换光谱(DRIFTS)研究了限制对离子液晶(ILC)[C _(18)C_1Im] [OTf]的影响。所研究的ILC支撑在孔径为11至50 nm的硅基粉末和玻璃上。固相至液晶相变的温度似乎基本上不受该限制的影响,而对于较小的孔径,液晶相至液晶相变的温度被降低。识别出厚度约为2nm的接触层。接触层在比纯ILC观察到的固-液晶相变低30 K的温度下显示出相变。对于“支持的离子液体相(SILP)”概念中的应用,实验表明,在直径50 nm的孔中,α> 0.4的孔填充足以重现纯ILC的相变。

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