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Transport properties of microemulsions with ionic liquid apolar domains as a function of ionic liquid content

机译:具有离子液体型圆弧域的微乳液作为离子液体含量的函数

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The specific conductivity, dynamic viscosity and apparent diffusion coefficient of each of four aqueous ionic liquid microemulsions (IL-MEs) were measured as a function of ionic liquid (IL) content. The investigated systems were composed of water, hydrophobic ILs (1-butyl-3-methylimidazolium hexafluorophosphate or bis(trifluoromethanesulphonyl)imide) and the nonionic surfactant Triton X-100 or its mixture with cosurfactant (butanol). Measurements were conducted across the whole IL content range, and results are discussed in terms of the anion type and the influence of cosurfactant. The comparative approach revealed that IL-MEs exhibit higher conductivity than pure ILs, that addition of cosurfactant further increases the conductivity of the system, and that the increase depends on the anion structure. Furthermore, addition of cosurfactant causes a serious decrease in viscosity which is beneficial since high viscosity is one of the factors limiting the broader use of ILs. The apparent diffusion coefficients, measured with cyclic voltammetry, exhibited good consistency with values obtained by other techniques and allowed closer insight into the properties and structures of the studied systems. The conclusions were supported by UV-Vis as well as FTIR spectrophotometric measurements. The pronounced facilitation of transport properties is favorable to many applications such as synthesis or separation processes. This is the first work regarding the dependence of IL-based ME properties on IL content.
机译:用离子液体(IL)含量的函数测量四种含水离子液体微乳液(IL-MES)中的每一个的特定导电性,动态粘度和表观扩散系数。研究的系统由水,疏水性ILS(1-丁基-3-甲基咪唑鎓六氟磷酸钙或双(三氟甲磺酰基)酰亚胺)和非离子表面活性剂Triton X-100或其与含有辅助表面活性剂(丁醇)的混合物组成。在整个IL含量范围内进行测量,并在阴离子类型和含有含有辅作率的影响方面进行结果。比较方法揭示了IL-MES表现出比纯ILS更高的导电性,所述含有辅助表面物的添加进一步提高了所述系统的导电性,并且所述增加取决于阴离子结构。此外,添加含有含有的粘性粘度的减少,因为高粘度是限制ILS更广泛使用的因素之一。用循环伏安法测量的表观扩散系数与其他技术获得的值表现出良好的一致性,并且允许更接近所研究的系统的性质和结构的洞察。通过UV-VIS以及FTIR分光光度测量来支持结论。传输特性的发音促进是有利的许多应用,例如合成或分离过程。这是对IL内容的基于IL的属性的依赖性的第一个工作。

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