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Immobilized Ionic Liquids as High-Selectivity/High-Temperature/High-Stability Gas Chromatography Stationary Phases

机译:固定化离子液体作为高选择性/高温/高稳定性气相色谱固定相

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摘要

Ionic liquids (ILs) are a class of nonmolecular solvents in which the cation/anion combination can be easily tuned to provide desired chemical and physical properties. When used as stationary phases in gas−liquid chromatography, ionic liquids exhibit dual nature retention selectivity. That is, they are able to separate polar molecules such as a polar stationary phase and nonpolar molecules such as a nonpolar stationary phase. However, issues such as optimization of the wetting ability of the ionic liquid on fused-silica capillaries, the maximum operating temperatures of the stationary phases, and nonuniform film thickness on the wall of the capillary at high temperatures have limited their use in gas chromatography. As described in this paper, these limitations are overcome by cross-linking a new class of ionic liquid monomers by free radical reactions to provide a more durable and robust stationary phase. By lightly cross-linking the ionic liquid stationary phase using a small amount of free radical initiator, high-efficiency capillary columns were produced that are able to endure high temperatures with little column bleed. Two types of cross-linked IL stationary phases are developed. A partially cross-linked stationary phase allows for high-efficiency separations up to temperatures of ∼280 °C. However, by creating a more highly cross-linked stationary phase of geminal dicationic ILs, exclusively, an increase in efficiency is observed at high temperatures allowing for its use over 350 °C. In addition, through the use of solvation thermodynamics and interaction parameters, it was shown that the cross-linking/immobilization of the ionic liquid does not affect the selectivity of the stationary phase thereby preserving its dual nature retention behavior.
机译:离子液体(ILs)是一类非分子溶剂,其中的阳离子/阴离子组合可轻松调整以提供所需的化学和物理性质。当在气相色谱中用作固定相时,离子液体表现出双重性质保留选择性。即,它们能够分离极性分子例如极性固定相和非极性分子例如非极性固定相。但是,诸如离子液体在熔融石英毛细管上的润湿能力的优化,固定相的最高工作温度以及在高温下毛细管壁上的膜厚不均匀等问题限制了它们在气相色谱中的使用。如本文所述,通过自由基反应使一类新型离子液体单体交联以提供更耐用和坚固的固定相,可以克服这些局限性。通过使用少量的自由基引发剂使离子液体固定相轻度交联,可以生产出高效的毛细管色谱柱,该色谱柱可以在几乎没有色谱柱流失的情况下承受高温。开发了两种类型的交联IL固定相。部分交联的固定相可进行高达280°C的高效分离。但是,仅通过创建双极性双功能性IL的更高交联的固定相,就可以在高温下观察到效率提高,从而允许其在350°C以上的温度下使用。另外,通过使用溶剂化热力学和相互作用参数,表明离子液体的交联/固定化不影响固定相的选择性,从而保留了其双重性质保留行为。

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