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The impact of ionic liquid fluorinated moieties on their thermophysical properties and aqueous phase behaviour

机译:离子液体氟化部分对其热物理性质和水相行为的影响

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摘要

In this work, we demonstrate that the presence of fluorinated alkyl chains in Ionic Liquids (ILs) is highly relevant in terms of their thermophysical properties and aqueous phase behaviour. We have measured and compared the density and viscosity of pure 1-ethyl-3-methylimidazolium tris(pentafluoroethyl)trifluorophosphate, [C2C1im][FAP], with that of pure 1-ethyl-3-methylimidazolium hexafluorophosphate, [C2C1im][PF6], at atmospheric pressure and in the (288.15 to 363.15) K temperature range. The results show that the density of [C2C1im][PF6] is lower than that of [C2C1im][FAP], while the viscosity data reveal the opposite trend. The fluid phase behaviour of aqueous solutions of the two ILs was also evaluated under the same conditions and it was found that the mutual solubilities of [C2C1im][FAP] and water are substantially lower than those verified with [C2C1im][PF6]. The experimental data were lastly interpreted at a molecular level using Molecular Dynamics (MD) simulation results revealing that the interactions between the IL ions and the water molecules are mainly achieved via the six fluorine atoms of [PF6] and the three analogues in [FAP]. The loss of three interaction centres when replacing [PF6] by [FAP], coupled with the bulkiness and relative inertness of the three perfluoroethyl groups, reduces its mutual solubility with water and also contributes to a lower viscosity displayed by the pure [FAP]-based IL as compared to that of the [PF6]-based compound.
机译:在这项工作中,我们证明离子液体(ILs)中氟化烷基链的存在就其热物理性质和水相行为而言非常相关。我们已经测量并比较了纯的1-乙基-3-甲基咪唑三(五氟乙基)三氟磷酸盐[C2C1im] [FAP]和纯的1-乙基-3-甲基咪唑六氟磷酸盐[C2C1im] [PF6]的密度和粘度,在大气压下以及(288.15至363.15)K温度范围内。结果表明,[C2C1im] [PF6]的密度低于[C2C1im] [FAP]的密度,而粘度数据则显示出相反的趋势。在相同条件下,还评估了两种IL的水溶液的液相行为,发现[C2C1im] [FAP]和水的互溶性明显低于[C2C1im] [PF6]验证的互溶性。最后使用分子动力学(MD)模拟结果在分子水平上解释了实验数据,结果表明IL离子与水分子之间的相互作用主要是通过[PF6] -的六个氟原子实现的。和[FAP] -中的三个类似物。用[FAP] -替换[PF 6 ] -时,三个交互中心的损失,以及三个交互中心的笨重和相对惰性全氟乙基降低了其与水的互溶性,并且与基于[PF 6 ]的化合物相比,纯基于[FAP]的IL表现出更低的粘度。

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