| Literature DB >> 19399248 |
Johannes Ranke1, Alaa Othman2, Ping Fan1, Anja Müller3.
Abstract
The water solubility of salts is ordinarily dictated by lattice energy and ion solvation. However, in the case of low melting salts also known as ionic liquids, lattice energy is immaterial and differences in hydrophobicity largely account for differences in their water solubility. In this contribution, the activity coefficients of ionic liquids in water are split into cation and anion contributions by regression against cation hydrophobicity parameters that are experimentally determined by reversed phase liquid chromatography. In this way, anion hydrophobicity parameters are derived, as well as an equation to estimate water solubilities for cation-anion combinations for which the water solubility has not been measured. Thus, a new pathway to the quantification of aqueous ion solvation is shown, making use of the relative weakness of interactions between ionic liquid ions as compared to their hydrophobicities.Entities:
Keywords: Anions; Cations; Ionic liquids; Lipophilicity; Water solubility
Mesh:
Substances:
Year: 2009 PMID: 19399248 PMCID: PMC2672029 DOI: 10.3390/ijms10031271
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
Figure 1.Equilibria of ionic liquid and water (left) and of ionic liquid cations between stationary and mobile phase in buffered reversed phase HPLC (right). Open circles are ionic liquid cations and anions, grey circles are buffer ions present in the HPLC mobile phase. In the case of the water saturation, electroneutrality in the water can only be kept if the concentrations of IL cations and anions are equal. In the case of buffered HPLC, IL cations and anions can partition largely independent of each other if sufficient concentrations of counterions are present in both phases.
Chemical structures of the cations treated in this study, along with their acronyms. In the acronyms, IM, Mor, N, Pip, Pyr and Py are used for the imidazolium, morpholinium, ammonium, piperidinium, pyrrolidinium and pyridinium head groups. n designates linear alkyl chains with varying length, where n is the number of carbon atoms in the chain. In the graphs, these chains correspond to the residues R.
Ionic liquids used for generation of original data for this study.
| Ionic liquid | Acronym |
|---|---|
| 1-ethyl-3-methylimidazolium chloride | IM12 Cl |
| 1-(3-hydroxypropyl)pyridinium chloride | Py3OH Cl |
| 4-(ethoxymethyl)-4-methylmorpholinium chloride | Mor11O2 Cl |
| 1-butyl-3-methylimidazolium hexafluorophosphate | IM14 PF6 |
| 1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide | IM14 (CF3SO2)2N |
| 1-hexyl-3-methylimidazolium hexafluorophosphate | IM16 PF6 |
| 1-hexyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide | IM16 (CF3SO2)2N |
| 1-hexyl-3-methylimidazolium tris(trifluoromethylsulfonyl)methide | IM16 (CF3SO2)3C |
| 1-hexyl-3-methylimidazolium trifluorotris(pentafluoroethyl)phosphate | IM16 (C2F5)3PF3 |
| 1-octyl-3-methylimidazolium hexafluorophosphate | IM18 PF6 |
| 1-octyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide | IM18 (CF3SO2)2N |
| 1-(3-hydroxypropyl)pyridinium bis(trifluoromethylsulfonyl)imide | Py3OH (CF3SO2)2N |
| 4-(dimethylamino)-1-hexylpyridinium bis(trifluoromethylsulfonyl)imide | Py6-4NMe2 (CF3SO2)2N |
| 1-butyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide | Pyr14 (CF3SO2)2N |
| 1-butyl-1-methylpyrrolidinium trifluorotris(pentafluoroethyl)phosphate | Pyr16 (C2F5)3PF3 |
| 1-hexyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide | Pyr16 (CF3SO2)2N |
Water solubility at temperatures within 293.15 ± 5 K and cation hydrophobicity. Data without source attribution are published here for the first time. Data with a mole fraction solubility greater than 0.05 are not considered, because this would conflict with Assumptions 1 and 2 stated in the text. Data from Branco et al. [20] were not considered as they strongly diverge from other sources for an unknown reason.
| Cation hydrophobicity
| IL water solubility
| |||
|---|---|---|---|---|
| Cation | log | Anion | ||
| IM16 | 1.2 [ | (C2F5)3PF3 | −5.93 | 293.15 |
| Pyr14 | 0.57 [ | (C2F5)3PF3 | −5.43 | 293.15 |
| Py8-4Me | 2 [ | (C2F5SO2)2N | −5.4 | 298.15 [ |
| Py8-4Me | 2 [ | (CF3SO2)2N | −5.09 | 298.15 [ |
| IM16 | 1.2 [ | (CF3SO2)3C | −5.04 | 293.15 |
| Py8-4Me | 2 [ | AsF6 | −4.91 | 298.15 [ |
| Pyr18 | 1.9 [ | (CF3SO2)2N | −4.71 | 298 [ |
| IM18 | 1.9 [ | (C2F5SO2)2N | −4.7 | 298 [ |
| Py8-4Me | 2 [ | (C4F9)SO3 | −4.63 | 298.15 [ |
| IM18 | 1.9 [ | (CF3SO2)2N | −4.6 | 298 [ |
| IM18 | 1.9 [ | (CF3SO2)2N | −4.59 | 293.15 |
| Py6-4NMe2 | 1.8 [ | (CF3SO2)2N | −4.53 | 293.15 |
| Py6-4NMe2 | 1.8 [ | (CF3SO2)2N | −4.53 | 296.5 [ |
| IM18 | 1.9 [ | (CF3SO2)2N | −4.5 | 288.15 [ |
| IM18 | 1.9 [ | (CF3SO2)2N | −4.49 | 293.15 [ |
| IM18 | 1.9 [ | (CF3SO2)2N | −4.47 | 298.15 [ |
| IM14 | 0.67 [ | (CF3SO2)3C | −4.44 | 296.5 [ |
| IM17 | 1.6 [ | (CF3SO2)2N | −4.31 | 288.15 [ |
| IM17 | 1.6 [ | (CF3SO2)2N | −4.3 | 293.15 [ |
| IM17 | 1.6 [ | (CF3SO2)2N | −4.29 | 298.15 [ |
| IM18 | 1.9 [ | (C4F9)SO3 | −4.23 | 298 [ |
| IM16 | 1.2[ | (CF3SO2)2N | −4.18 | 293.15 |
| IM16-2Me | 1.4 [ | (CF3SO2)2N | −4.15 | 296.5 [ |
| IM18 | 1.9 [ | (CF3SO2)2N | −4.14 | 296.5 [ |
| Pyr16 | 1.2 [ | (CF3SO2)2N | −4.12 | 293.15 |
| IM18 | 1.9 [ | (CF3SO2)2N | −4.1 | 298 [ |
| IM18 | 1.9 [ | (CF3SO2)2N | −4.1 | 293.15 [ |
| IM16 | 1.2 [ | (CF3SO2)2N | −4.05 | 288.15 [ |
| IM16 | 1.2 [ | (CF3SO2)2N | −4.05 | 293.15 [ |
| IM16 | 1.2 [ | (CF3SO2)2N | −4.03 | 296.5 [ |
| IM16 | 1.2 [ | (CF3SO2)2N | −4.02 | 298.15 [ |
| IM18 | 1.9 [ | PF6 | −3.95 | 288.15 [ |
| IM18 | 1.9 [ | PF6 | −3.93 | 293.15 |
| IM18 | 1.9 [ | PF6 | −3.92 | 293.15 [ |
| IM18 | 1.9 [ | PF6 | −3.9 | 298.15 [ |
| IM16 | 1.2 [ | (CF3SO2)2N | −3.86 | 293.15 [ |
| Pip14 | 0.68 [ | (CF3SO2)2N | −3.78 | 298 [ |
| IM15 | 0.92 [ | (CF3SO2)2N | −3.74 | 288.15 [ |
| IM15 | 0.92 [ | (CF3SO2)2N | −3.73 | 293.15 [ |
| IM15 | 0.92 [ | (CF3SO2)2N | −3.71 | 298.15 [ |
| Py4-3Me | 0.73 [ | (CF3SO2)2N | −3.7 | 296.5 [ |
| Py4-4Me | 0.73 [ | (CF3SO2)2N | −3.69 | 298 [ |
| Py8-4Me | 2 [ | PhBF3 | −3.6 | 298.15 [ |
| Pyr14 | 0.57 [ | (CF3SO2)2N | −3.59 | 298 [ |
| Pyr14 | 0.57 [ | (CF3SO2)2N | −3.57 | 293.15 |
| IM14 | 0.67 [ | (CF3SO2)2N | −3.54 | 288.15 [ |
| IM14 | 0.67 [ | (CF3SO2)2N | −3.53 | 293.15 [ |
| IM14 | 0.67 [ | (CF3SO2)2N | −3.51 | 298.15 [ |
| IM14 | 0.67 [ | (CF3SO2)2N | −3.51 | 298 [ |
| IM14 | 0.67 [ | (CF3SO2)2N | −3.5 | 296.5 [ |
| IM14 | 0.67 [ | (CF3SO2)2N | −3.5 | 293.15 |
| IM14 | 0.67 [ | (CF3SO2)2N | −3.49 | 294.15 [ |
| IM14 | 0.67 [ | (CF3SO2)2N | −3.46 | 293.15 [ |
| IM18 | 1.9 [ | PF6 | −3.46 | 295 [ |
| IM16 | 1.2 [ | PF6 | −3.45 | 288.15 [ |
| IM16 | 1.2 [ | PF6 | −3.41 | 293.15 [ |
| IM16 | 1.2 [ | PF6 | −3.36 | 298.15 [ |
| IM16 | 1.2 [ | PF6 | −3.35 | 293.15 |
| IM13 | 0.42 [ | (CF3SO2)2N | −3.29 | 288.15 [ |
| IM13 | 0.42 [ | (CF3SO2)2N | −3.28 | 293.15 [ |
| IM13 | 0.42 [ | (CF3SO2)2N | −3.27 | 298.15 [ |
| Mor11O2 | 0.17 | (CF3SO2)2N | −3.19 | 293.15 |
| IM14 | 0.67 [ | (C4F9)SO3 | −3.15 | 298 [ |
| IM12 | 0.22 | (CF3SO2)2N | −3.12 | 288.15 [ |
| IM12 | 0.22 | (CF3SO2)2N | −3.1 | 296.5 [ |
| IM12 | 0.22 | (CF3SO2)2N | −3.1 | 293.15 [ |
| Py8-4Me | 2 [ | CF3SO3 | −3.09 | 298.15 [ |
| IM12 | 0.22 | (CF3SO2)2N | −3.08 | 293.15 [ |
| IM12 | 0.22 | (CF3SO2)2N | −3.08 | 298.15 [ |
| Py4-4Me | 0.73 [ | (C4F9)SO3 | −3.03 | 298 [ |
| IM14 | 0.67 [ | PF6 | −3 | 288.15 [ |
| Py8-4Me | 2 [ | BF4 | −2.98 | 298.15 [ |
| IM14 | 0.67 [ | PF6 | −2.96 | 293.15 [ |
| IM14 | 0.67 [ | PF6 | −2.93 | 294 [ |
| IM18 | 1.9 [ | BF4 | −2.93 | 295 [ |
| IM14 | 0.67 [ | PF6 | −2.92 | 298.15 [ |
| IM14 | 0.67 [ | PF6 | −2.9 | 293.15 |
| IM14 | 0.67 [ | PF6 | −2.9 | 296.5 [ |
| IM14 | 0.67 [ | PF6 | −2.89 | 295 [ |
| IM14 | 0.67 [ | PF6 | −2.87 | 294.15 [ |
| IM14 | 0.67 [ | PF6 | −2.8 | 293.15 [ |
| IM12 | 0.22 | B(CN)4 | −2.46 | 296.5 [ |
| Py3OH | −0.09 | (CF3SO2)2N | −2.43 | 293.15 |
| IM12OH | −0.28 [ | (CF3SO2)2N | −2.34 | 296.5 [ |
| N4444 | 2.3 [ | (6-2Et)2SS | −1.52 | 298 [ |
Cation acronyms explained in Table 1
(6-2Et)-2SS = bis(2-ethylhexyl)sulfosuccinate
Figure 2.Plot of water solubility against log k0,c of the cation of various ionic liquids that form a second phase with water at room temperature. To the left, only water solubility data generated in our labs are presented, to the right, water solubility data from the peer reviewed literature are included. Regression lines for constant anions have identical slopes −m as defined by model equation 1. Only data for anions with solubility data for at least two different cations are plotted.
Overview of experimental (superscript exp) and estimated (superscript est) water solubility data, sorted by the estimated values. Δest,exp is the difference between estimated and observed values on a log scale. The model based on all suitable data was used for the estimation.
| Cation | Anion | Δest,exp | Temperature [K] | ||
|---|---|---|---|---|---|
| IM16 | (C2F5)3PF3 | −5.93 | −5.98 | −0.05 | 293.15 |
| Pyr14 | (C2F5)3PF3 | −5.43 | −5.39 | 0.04 | 293.15 |
| Py8-4Me | (C2F5SO2)2N | −5.4 [ | −5.11 | 0.29 | 298.15 |
| IM16 | (CF3SO2)3C | −5.04 | −4.99 | 0.05 | 293.15 |
| IM18 | (C2F5SO2)2N | −4.7 [ | −4.99 | −0.29 | 298 |
| Py8-4Me | AsF6 | −4.91 [ | −4.91 | 0 | 298.15 |
| Py8-4Me | (CF3SO2)2N | −5.09 [ | −4.66 | 0.43 | 298.15 |
| Pyr18 | (CF3SO2)2N | −4.71 [ | −4.56 | 0.15 | 298 |
| IM18 | (CF3SO2)2N | −4.5 [ | −4.54 | −0.04 | 288.15 |
| IM18 | (CF3SO2)2N | −4.59 | −4.54 | 0.05 | 293.15 |
| IM18 | (CF3SO2)2N | −4.1 [ | −4.54 | −0.44 | 293.15 |
| IM18 | (CF3SO2)2N | −4.49 [ | −4.54 | −0.05 | 293.15 |
| IM18 | (CF3SO2)2N | −4.14 [ | −4.54 | −0.4 | 296.5 |
| IM18 | (CF3SO2)2N | −4.1 [ | −4.54 | −0.44 | 298 |
| IM18 | (CF3SO2)2N | −4.6 [ | −4.54 | 0.06 | 298 |
| IM18 | (CF3SO2)2N | −4.47 [ | −4.54 | −0.07 | 298.15 |
| Py6-4NMe2 | (CF3SO2)2N | −4.53 | −4.5 | 0.03 | 293.15 |
| Py6-4NMe2 | (CF3SO2)2N | −4.53 [ | −4.5 | 0.03 | 296.5 |
| IM14 | (CF3SO2)3C | −4.44 [ | −4.49 | −0.05 | 296.5 |
| Py8-4Me | (C4F9)SO3 | −4.63 [ | −4.35 | 0.28 | 298.15 |
| IM17 | (CF3SO2)2N | −4.31 [ | −4.29 | 0.02 | 288.15 |
| IM17 | (CF3SO2)2N | −4.3 [ | −4.29 | 0.01 | 293.15 |
| IM17 | (CF3SO2)2N | −4.29 [ | −4.29 | 0 | 298.15 |
| IM18 | (C4F9)SO3 | −4.23 [ | −4.24 | −0.01 | 298 |
| IM16-2Me | (CF3SO2)2N | −4.15 [ | −4.12 | 0.03 | 296.5 |
| IM16 | (CF3SO2)2N | −4.05 [ | −4 | 0.05 | 288.15 |
| IM16 | (CF3SO2)2N | −4.18 | −4 | 0.18 | 293.15 |
| IM16 | (CF3SO2)2N | −3.86 [ | −4 | −0.14 | 293.15 |
| IM16 | (CF3SO2)2N | −4.05 [ | −4 | 0.05 | 293.15 |
| IM16 | (CF3SO2)2N | −4.03 [ | −4 | 0.03 | 296.5 |
| IM16 | (CF3SO2)2N | −4.02 [ | −4 | 0.02 | 298.15 |
| Pyr16 | (CF3SO2)2N | −4.12 | −3.94 | 0.18 | 293.15 |
| IM18 | PF6 | −3.95 [ | −3.91 | 0.04 | 288.15 |
| IM18 | PF6 | −3.92 [ | −3.91 | 0.01 | 293.15 |
| IM18 | PF6 | −3.93 | −3.91 | 0.02 | 293.15 |
| IM18 | PF6 | −3.46 [ | −3.91 | −0.45 | 295 |
| IM18 | PF6 | −3.9 [ | −3.91 | −0.01 | 298.15 |
| IM15 | (CF3SO2)2N | −3.74 [ | −3.72 | 0.02 | 288.15 |
| IM15 | (CF3SO2)2N | −3.73 [ | −3.72 | 0.01 | 293.15 |
| IM15 | (CF3SO2)2N | −3.71 [ | −3.72 | −0.01 | 298.15 |
| Py8-4Me | PhBF3 | −3.6 [ | −3.6 | 0 | 298.15 |
| Py4-3Me | (CF3SO2)2N | −3.7 [ | −3.55 | 0.15 | 296.5 |
| Py4-4Me | (CF3SO2)2N | −3.69 [ | −3.55 | 0.14 | 298 |
| Pip14 | (CF3SO2)2N | −3.78 [ | −3.51 | 0.27 | 298 |
| IM14 | (CF3SO2)2N | −3.54 [ | −3.5 | 0.04 | 288.15 |
| IM14 | (CF3SO2)2N | −3.5 | −3.5 | 0 | 293.15 |
| IM14 | (CF3SO2)2N | −3.53 [ | −3.5 | 0.03 | 293.15 |
| IM14 | (CF3SO2)2N | −3.46 [ | −3.5 | −0.04 | 293.15 |
| IM14 | (CF3SO2)2N | −3.49 [ | −3.5 | −0.01 | 294.15 |
| IM14 | (CF3SO2)2N | −3.5 [ | −3.5 | 0 | 296.5 |
| IM14 | (CF3SO2)2N | −3.51 [ | −3.5 | 0.01 | 298 |
| IM14 | (CF3SO2)2N | −3.51 [ | −3.5 | 0.01 | 298.15 |
| Pyr14 | (CF3SO2)2N | −3.57 | −3.41 | 0.16 | 293.15 |
| Pyr14 | (CF3SO2)2N | −3.59 [ | −3.41 | 0.18 | 298 |
| IM16 | PF6 | −3.45 [ | −3.37 | 0.08 | 288.15 |
| IM16 | PF6 | −3.35 | −3.37 | −0.02 | 293.15 |
| IM16 | PF6 | −3.41 [ | −3.37 | 0.04 | 293.15 |
| IM16 | PF6 | −3.36 [ | −3.37 | −0.01 | 298.15 |
| IM13 | (CF3SO2)2N | −3.29 [ | −3.28 | 0.01 | 288.15 |
| IM13 | (CF3SO2)2N | −3.28 [ | −3.28 | 0 | 293.15 |
| IM13 | (CF3SO2)2N | −3.27 [ | −3.28 | −0.01 | 298.15 |
| Py4-4Me | (C4F9)SO3 | −3.03 [ | −3.25 | −0.22 | 298 |
| IM14 | (C4F9)SO3 | −3.15 [ | −3.2 | −0.05 | 298 |
| IM12 | (CF3SO2)2N | −3.12 [ | −3.1 | 0.02 | 288.15 |
| IM12 | (CF3SO2)2N | −3.08 [ | −3.1 | −0.02 | 293.15 |
| IM12 | (CF3SO2)2N | −3.1 [ | −3.1 | 0 | 293.15 |
| IM12 | (CF3SO2)2N | −3.1 [ | −3.1 | 0 | 296.5 |
| IM12 | (CF3SO2)2N | −3.08 [ | −3.1 | −0.02 | 298.15 |
| Py8-4Me | CF3SO3 | −3.09 [ | −3.09 | 0 | 298.15 |
| Mor11O2 | (CF3SO2)2N | −3.19 | −3.06 | 0.13 | 293.15 |
| Py8-4Me | BF4 | −2.98 [ | −3.01 | −0.03 | 298.15 |
| IM18 | BF4 | −2.93 [ | −2.9 | 0.03 | 295 |
| IM14 | PF6 | −3 [ | −2.87 | 0.13 | 288.15 |
| IM14 | PF6 | −2.8 [ | −2.87 | −0.07 | 293.15 |
| IM14 | PF6 | −2.9 | −2.87 | 0.03 | 293.15 |
| IM14 | PF6 | −2.96 [ | −2.87 | 0.09 | 293.15 |
| IM14 | PF6 | −2.93 [ | −2.87 | 0.06 | 294 |
| IM14 | PF6 | −2.87 [ | −2.87 | 0 | 294.15 |
| IM14 | PF6 | −2.89 [ | −2.87 | 0.02 | 295 |
| IM14 | PF6 | −2.9 [ | −2.87 | 0.03 | 296.5 |
| IM14 | PF6 | −2.92 [ | −2.87 | 0.05 | 298.15 |
| Py3OH | (CF3SO2)2N | −2.43 | −2.83 | −0.4 | 293.15 |
| IM12OH | (CF3SO2)2N | −2.34 [ | −2.66 | −0.32 | 296.5 |
| IM12 | B(CN)4 | −2.46 [ | −2.46 | 0 | 296.5 |
| N4444 | (6-2Et)2SS | −1.52 [ | −1.52 | 0 | 298 |
Cation acronyms explained in Table 1
(6-2Et)-2SS = bis(2-ethylhexyl)sulfosuccinate
Statistical parameters of the model described in equation 1 applied to only our own water solubility data at 293.15 K (UFT data only), and the complete water solubility dataset for 293.15 ± 5 K (Full dataset) given in Table 3. Numbers in parentheses after the anion constants are the number of data points for each anion that the constant is based on. n is the overall number of data points in the model, df is the number of statistical degrees of freedom, R2 is the fraction of the variability in water solubility explained by the model, and RSE is the standard error of the residuals. Note that data points for anions that are only present in one IL have a zero residual, giving a favorable bias to R2 and RSE. The anion acronym (6-2Et)2SS stands for bis(2-ethylhexyl)sulfosuccinate.
| Parameter | UFT data only | Full dataset |
|---|---|---|
| 0.97 | 0.881 | |
| 0.521 (1) | ||
| −1.268 (2) | ||
| −1.343 (1) | ||
| −1.642 (3) | ||
| −1.853 (1) | ||
| −2.264 (1) | ||
| −2.178 (3) | −2.28 (18) | |
| −2.61 (4) | ||
| −2.868 (8) | −2.911 (50) | |
| −3.165 (1) | ||
| −3.363 (2) | ||
| −3.841 (1) | −3.902 (2) | |
| −4.803 (2) | −4.883 (2) | |
| 14 | 88 | |
| df | 9 | 74 |
| 0.999 | 0.998 | |
| RSE | 0.157 | 0.16 |