首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Mechanisms and Rules of Anion Partition into Ionic Liquids: Phenolate Ions in Ionic Liquid/Water Biphasic Systems
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Mechanisms and Rules of Anion Partition into Ionic Liquids: Phenolate Ions in Ionic Liquid/Water Biphasic Systems

机译:阴离子分配到离子液体中的机理和规则:离子液体/水双相系统中的酚盐离子

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It is important to understand the mechanisms and general rules of ion partitioning in hydrophobic ionic liquid (IL)/water biphasic systems in order to predict the extractability of an ionic species with various ILs. In this study, we have investigated the partition of picrate ion (target anion, T~-) from aqueous sodium picrate solutions into several ILs and the accompanying changes in aqueous concentrations of the IL component cation (C~+) and anion (A~-) at 298.2 K. The main ILs examined are 1-butyl-3-methylimidazohum bis (trifluoromethanesulfonyl) amide, 1-butyl-3-methylimidazoliurn hexafluorophosphate, and l-methyl-3-octylimidazolium bis(trifluoromethanesulfonyl)amide. The aqueous concentrations of C~+ arid A~- decreased and increased, respectively, with the extraction of T~- into the IL phase. From the standpoint of equilibrium, the partition behavior of T~- can be explained both by the anion exchange with A~- in the IL phase and by the ion pair extraction with C~+ in the aqueous phase. The aqueous concentrations of C~+ ahd A~- are governed by the solubility product of the IL (K_(sp)). The distribution ratio of T~- is expressed as a function of Δ[T~-]_W, namely, the difference between the initial and equilibrium concentrations of T~- in the aqueous phase; the distribution ratio of T~- is nearly constant when Δ[T~-]_W K_(sp)~(1/2), but decreases with increasing Δ[T~-]_W in the larger Δ[T~-]_W region. The equilibrium constants of the ion pair extraction and the ion exchange extraction have been determined for picrate and other phenolate ions whose partition data were previously reported. The dependences of the extraction constants and extractability on the kinds of IL component ions can be quantitatively explained on the basis of the variations of K_(sp).
机译:重要的是要了解疏水离子液体(IL)/水双相系统中离子分配的机理和一般规则,以便预测具有各种IL的离子物质的可萃取性。在这项研究中,我们研究了苦味酸钠水溶液中苦味离子(目标阴离子T〜-)的分配成几个ILs,以及IL组分阳离子(C〜+)和阴离子(A〜 -)在298.2K。所检查的主要IL是1-丁基-3-甲基咪唑双(三氟甲磺酰基)酰胺,1-丁基-3-甲基咪唑啉六氟磷酸酯和1-甲基-3-辛基咪唑双(三氟甲烷磺酰基)酰胺。随着T〜-萃取进入IL相,C〜+和A〜-的水溶液浓度分别降低和增加。从平衡的角度来看,T〜-的分配行为既可以通过在IL相中与A〜-进行阴离子交换,也可以通过在水相中利用C〜+进行离子对萃取来解释。 C〜+ ahd A〜-的水溶液浓度由IL的溶解度乘积(K_(sp))决定。 T〜-的分布比表示为Δ[T〜-] _ W的函数,即水相中T〜-的初始浓度与平衡浓度之差;当Δ[T〜-] _ W K_(sp)〜(1/2)时,T〜-的分配比几乎恒定,但是在较大的Δ[T〜- ] _W地区。已经确定了先前已报道了分配数据的苦味酸根离子和其他酚盐离子的离子对萃取和离子交换萃取的平衡常数。可以基于K_(sp)的变化来定量地解释提取常数和提取能力对IL成分离子种类的依赖性。

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