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首页> 外文期刊>Solvent Extraction and Ion Exchange >Ionic liquid (IL) cation and anion structural effects on the extraction of metal ions into N-alkylpyridinium-based ILs by a macrocyclic polyether
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Ionic liquid (IL) cation and anion structural effects on the extraction of metal ions into N-alkylpyridinium-based ILs by a macrocyclic polyether

机译:离子液体(IL)阳离子和阴离子结构效应通过大环聚醚将金属离子提取到N-烷基吡啶基ILS中的结构

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Previous studies of the effect of IL cation/anion hydrophobicity and the nature of the aqueous phase anion on the partitioning of alkali and alkaline earth cations between an acidic aqueous phase and 1,3-dialkylimidazolium-based or quaternary ammonium-based ILs in the presence of a crown ether have revealed significant similarities between the behavior of the two IL families. To further explore the generality of these observations and their potential application in the rational design of ILs for use as replacements for the molecular diluents typically employed as extraction solvents, the extraction of several metal ions (Na+, Sr2+ and Ba2+) from nitric and hydrochloric acid solutions by dicyclohexano-18-crown-6 (DCH18C6) into a series of N-alkylpyridinium-based ILs (C-n-pyr(+) ILs) has been studied. Although much of the extraction behavior observed in these systems is consistent with that seen for the 1,3-dialkylimidazolium and quaternary ammonium-based ILs, certain observations, in particular the effect of IL cation hydrophobicity on divalent metal ion extraction from HNO3 by N-alkylpyridinium-ILs bearing long (dodecyl- and tetradecyl-) alkyl chains, cannot be fully explained by the established three-path model for metal ion partitioning. Instead a complete description of metal ion extraction in these systems requires consideration of the aggregation of the IL cation in the aqueous phase. The effects of this aggregation on the efficiency and selectivity of metal ion extraction into C-n-pyr(+) ILs by the crown ether are systematically explored.
机译:先前关于IL阳离子/阴离子疏水性和水相阴离子性质对酸性水相和冠醚存在下基于1,3-二烷基咪唑或季铵盐的ILs之间碱金属和碱土金属阳离子分配的影响的研究表明,这两个IL家族的行为具有显著的相似性。为了进一步探索这些观察结果的普遍性及其在ILs合理设计中的潜在应用,以替代通常用作萃取溶剂的分子稀释剂,研究了用二环己基18-冠-6(DCH18C6)从硝酸和盐酸溶液中萃取几种金属离子(Na+、Sr2+和Ba2+)形成一系列N-烷基吡啶基离子液体(C-N-pyr(+)离子液体)。尽管在这些系统中观察到的许多萃取行为与1,3-二烷基咪唑和季铵基离子液体的萃取行为一致,但某些观察结果,尤其是离子液体阳离子疏水性对含长(十二烷基和十四烷基)烷基链的N-烷基吡啶-ILs从HNO3中萃取二价金属离子的影响,不能完全用已建立的金属离子分配的三路径模型来解释。相反,这些系统中金属离子萃取的完整描述需要考虑水相中IL阳离子的聚集。系统地研究了这种聚集对冠醚萃取金属离子到C-n-吡咯(+)离子液体中的效率和选择性的影响。

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