Solubility Parameters Based on Refractive Index Data of Ionic Liquid

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Abstract:

This article reports on the estimation of solubility parameters using refractive index for a series of imidazolium-based ionic liquids (ILs) and their dependencies on the carbon number of alkyl side-chain of cation and anion. Gathering about 35 ILs of refractive indices data from the literature, the solubility parameters estimation fit well with the suggested correlation. The precision of the estimated solubility parameters obtained indicates that the refractive index-solubility parameters correlation can be an alternative tool to estimate solubility parameter value for ILs.

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45-55

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Lee, S.H., Lee, S B. (2005), Chem. Commun. 3469-71.

Google Scholar

[2] Marciniak, A. (2010), Int. J. Mol. Sci. 11, 1973-90.

Google Scholar

[3] Mutelet, F., Butet, V., Jaubert, J.N. (2005), Ind. Eng. Chem. Res. 44, 4120-7.

Google Scholar

[4] Fedors, R.F. (1974), Polymer Eng. Sci. 14, 147-54.

Google Scholar

[5] Foco, G.M., Bottini, S.B., Quezada, N., Fuente, J.C., Peters, C.J. (2006), J. Chem. Eng. Data 51, 1088-91.

Google Scholar

[6] Lawson, D.D., Ingham, J.D. (1969), Nature 223, 614-5.

Google Scholar

[7] Tariq, M., Forte, P.A.S., Costa Gomes, M.F., Canongia Lopes, J.N., Rebelo, L.P.N. (2009), J. Chem. Thermodyn. 41, 790-8.

Google Scholar

[8] Kumar, A. (2008), J. Sol. Chem. 37, 203-14.

Google Scholar

[9] Arce, A., Rodil, E., Soto, A. (2006), J. Chem. Eng. Data 51, 1453-7.

Google Scholar

[10] Pereiro, A.B., Veiga, H.I.M., Esperanca, J.M.S.S., Rodriguez, A. (2009), J. Chem. Thermdyn. 41, 1419-23.

Google Scholar

[11] Vercher, E., Llopis, F.J., Gonzalez-Alfaro, M.V., Martinez-Andreu, A. (2010), J. Chem. Eng. Data 55, 1377-88.

Google Scholar

[12] Davila, M.J., Aparicio, S., Alcalde, R., Garcia, B., Leal, J.M. (2007), Green Chem. 9, 221-32.

Google Scholar

[13] Huddleston, J.G., Visser, A.E., Reichert, W.M., Willauer, H.D., Broker, G.A., Rogers, R.D. (2001), Green Chem. 3, 156-64.

Google Scholar

[14] Wagner, M., Stanga, O., Schroer, W. (2004), Phys. Chem. Chem. Phys. 6, 4421-31.

Google Scholar

[15] Hernandez-Fernandez, F.J., Gomez, D., Rubio, M., Tomas-Alonso, F., Villora, G.P.A. (2008), Fluid Phase Equilib. 263, 190-8.

Google Scholar

[16] Deenadayalu, N., Ngcongo, K.C., Letcher, T.M., Ramjugernath, D. (2006), J. Chem. Eng. Data 51, 988-91.

Google Scholar

[17] Ortega, J., Vreekamp, R., Penco, E., Marrero, E. (2008), J. Chem. Thermodyn. 40, 1087-94.

Google Scholar

[18] Gonzalez, B., Calvar, N., Gomez, E., Dominguez, I., Dominguez, A. (2009), J. Chem. Eng. Data 54, 1353-8.

Google Scholar

[19] Kim, K.S., Shin, B.K., Ziegler, F. (2004), Fluid Phase Equilib. 218, 215-20.

Google Scholar

[20] Pereiro, A.B., Santamarta, F., Tojo, E., Rodriguez, A., Tojo, J. (2006), J. Chem. Eng. Data 51, 952-4.

Google Scholar

[21] Mokhtarani, B., Mojtahedi, M.M., Mortaheb, H.R., Mafi, M., Yazdani, F., Sadeghian, F. (2008), J. Chem. Eng. Data 53, 677-82.

Google Scholar

[22] Malham, I.B., Turmine, M. (2008), J. Chem. Thermdyn. 40, 718-23.

Google Scholar

[23] Wingefors, S. (1981), J. Chem. Tech. Biotechnol. 31, 530-4.

Google Scholar

[24] Camper, D., Becker, C., Koval, C., Noble, R.D. (2005), Ind. Eng. Chem. Res. 44, 1928-33.

Google Scholar

[25] Swiderski, K., McLean, A., Gordon, C.M., Vaughan, D.H. (2004), Chem. Commun. 2178-9.

Google Scholar

[26] Bara, J.E., Carlisle, T.K., Gabriel, C.J., Camper, D., Finotello, A., Gin, D.L., Noble, R.D. (2009), Ind. Eng. Chem. Res. 48, 2739-51.

DOI: 10.1021/ie8016237

Google Scholar