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Effect of Protic Ionic Liquid and Surfactant Structure on Partitioning of Polyoxyethylene Non-ionic Surfactants

机译:质子离子液体和表面活性剂结构对聚氧乙烯非离子表面活性剂分配的影响

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摘要

The partitioning constants and Gibbs free energies of transfer of poly(oxyethylene) n-alkyl ethers between dodecane and the protic ionic liquids (ILs) ethylammonium nitrate (EAN) and propylammonium nitrate (PAN) are determined. EAN and PAN have a sponge-like nanostructure that consists of interpenetrating charged and apolar domains. This study reveals that the ILs solvate the hydrophobic and hydrophilic parts of the amphiphiles differently. The ethoxy groups are dissolved in the polar region of both ILs by means of hydrogen bonds. The environment is remarkably water-like and, as in water, the solubility of the ethoxy groups in EAN decreases on warming, which underscores the critical role of the IL hydrogen-bond network for solubility. In contrast, amphiphile alkyl chains are not preferentially solvated by the charged or uncharged regions of the ILs. Rather, they experience an average IL composition and, as a result, partitioning from dodecane into the IL increases as the cation alkyl chain is lengthened from ethyl to propyl, because the IL apolar volume fraction increases. Together, these results show that surfactant dissolution in ILs is related to structural compatibility between the head or tail group and the IL nanostructure. Thus, these partitioning studies reveal parameters for the effective molecular design of surfactants in ILs.
机译:分区常数和聚(氧乙烯)的转让的吉布斯自由能正烷基十二烷和质子离子液体(离子液体)乙基硝酸铵(EAN)和硝酸丙基(PAN)之间醚被确定。 EAN和PAN具有海绵状纳米结构,它由互充电和非极性域。这项研究揭示了离子液体溶剂化两亲的疏水和亲水部分不同。乙氧基基团通过氢键手段溶解在离子液体两者的极性区域。环境是非常水样和,作为在水中,在EAN的乙氧基的溶解度上温热,这强调了IL氢键网络溶解度的关键作用减小。与此相反,两亲物的烷基链不是优先被离子液体的带电或不带电的区域溶剂化。相反,它们经历的平均IL组合物,并且作为结果,从十二烷分割成的IL增大作为阳离子烷基链选自乙基至丙基加长,因为IL非极性体积分数增加。总之,这些结果表明,在离子液体表面活性剂溶解涉及的头部或尾部基团和IL纳米结构之间的结构的兼容性。因此,这些分区研究揭示在离子液体表面活性剂的有效分子设计参数。

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