Calculation Aspects of Diffusion Coefficients in Micellar Solutions of Ionic Surfactants
Article
First Online:
Abstract
Results of calculating diffusion coefficients of ionic surfactants as functions of their concentration in micellar solutions have been analyzed within the framework of the quasi-chemical variant of the law of mass action. Diffusion coefficients have been evaluated for an ideal mixture of monomeric molecules and micelles, as well as taking into account the correction for the variability of the aggregation number of a surfactant using aqueous solutions of hexadecyltrimethylammonium bromide, hexadecylpyridinium chloride and bromide, and alkyltriphenylphosphonium bromides as examples.
Notes
ACKNOWLEDGMENTS
This work was supported by the Russian Science Foundation, project no. 14-13-00112.
REFERENCES
- 1.Weinheimer, R.M., Evans, D.F., and Cussler, E.L., J. Colloid Interface Sci., 1981, vol. 80, p. 357.CrossRefGoogle Scholar
- 2.Corti, M. and Degiorgio, V., J. Phys. Chem., 1981, vol. 85, p. Ð. 711.Google Scholar
- 3.Dorshow, R., Briggs, J., Bunton, C.A., and Nicoli, D.F., J. Phys. Chem., 1982, vol. 86, p. 2388.CrossRefGoogle Scholar
- 4.Dorshow, R.B., Bunton, C.A., and Nicoli, D.F., J. Phys. Chem., 1983, vol. 87, p. 1409.CrossRefGoogle Scholar
- 5.Evans, D.F., Mukherjee, S., Mitchell, D.J., and Ninham, B.W., J. Colloid Interface Sci., 1983, vol. 93, p. 184.CrossRefGoogle Scholar
- 6.Candau, S.J., Hirsch, E., and Zana, R., J. Phys., 1984, vol. 45, p. 1263.CrossRefGoogle Scholar
- 7.Annunziata, O., Costantino, L., D’Errico, G., Paduano, L., and Vitagliano, V., J. Colloid Interface Sci., 1999, vol. 216, p. 16.CrossRefGoogle Scholar
- 8.Sutherland, E., Mercer, S., Everist, M., and Leaist, D., J. Chem. Eng. Data, 2009, vol. 54, p. 272.CrossRefGoogle Scholar
- 9.Leaist, D., J. Colloid Interface Sci., 1986, vol. 111, p. 230.CrossRefGoogle Scholar
- 10.Siderius, A., Kehl, S.K., and Leaist, D., J. Solution Chem., 2002, vol. 31, p. 607.CrossRefGoogle Scholar
- 11.Movchan, T.G., Soboleva, I.V., Plotnikova, E.V., Shchekin, A.K., and Rusanov, A.I., Colloid J., 2012, vol. 74, p. 239.CrossRefGoogle Scholar
- 12.Movchan, T.G., Shchekin, A.K., Soboleva, I.V., Khlebunova, N.R., Plotnikova, E.V., and Rusanov, A.I., Colloid J., 2015, vol. 77, p. 179.CrossRefGoogle Scholar
- 13.Movchan, T.G., Rusanov, A.I., Plotnikova, E.V., and Soboleva, I.V., Colloid J., 2018, vol. 80, p. 290.CrossRefGoogle Scholar
- 14.Movchan, T.G., Rusanov, A.I., Soboleva, I.V., Khlebunova, N.R., Plotnikova, E.V., and Shchekin, A.K., Colloid J., 2015, vol. 77, p. 492.CrossRefGoogle Scholar
- 15.Movchan, T.G., Rusanov, A.I., and Plotnikova, E.V., Colloid J., 2016, vol. 78, p. 785.CrossRefGoogle Scholar
- 16.Rusanov, A.I., Colloid J., 2016, vol. 78, p. 102.CrossRefGoogle Scholar
- 17.Rusanov, A.I., Movchan, T.G., and Plotnikova, E.V., Colloid J., 2015, vol. 77, p. 507.CrossRefGoogle Scholar
- 18.Hansson, P., Jönsson, B., Ström, C., and Söder-man, O., J. Phys. Chem. B, 2000, vol. 104, p. 3496.CrossRefGoogle Scholar
- 19.Pisarčik, M., Devinsky, F., and Pupak, M., Open Chem., 2015, vol. 13, p. 922.Google Scholar
- 20.Anachkov, S.E., Danov, K.D., Basheva, E.S., Kralchevsky, P.A., and Ananthapadmanabhan, K.P., Adv. Colloid Interface Sci., 2012, vol. 55, p. 183.Google Scholar
- 21.Rusanov, A.I., Colloid J., 2017, vol. 79, p. 654.CrossRefGoogle Scholar
- 22.Rusanov, A.I., Colloid J., 2018, vol. 80, p. 81.CrossRefGoogle Scholar
- 23.Rusanov, A.I., Colloids Surf. A, 2018, vol. 551, p. 158.CrossRefGoogle Scholar
- 24.Rusanov, A.I., Mitselloobrazovanie v rastvorakh po-verkhnostno-aktivnykh veshchestv (Micellization in Surfactant Solutions), St. Petersburg: Khimiya, 1992.Google Scholar
- 25.Rusanov, A.I., Colloid J., 2016, vol. 78, p. 371.CrossRefGoogle Scholar
- 26.Gonzalez-Perez, A., Czapkiewicz, J., Prieto, G., and Rodriguez, J.R., Colloid Polym. Sci., 2003, vol. 281, p. 1191.CrossRefGoogle Scholar
- 27.Lide, D.R., CRC Handbook of Chemistry and Physics, p. 74.Google Scholar
- 28.Danov, K.D., Basheva, E.S., Kralchevsky, P.A., Ananthapadmanabhan, K.P., and Lips, A., Adv. Colloid Interface Sci., 2011, vol. 168, p. 50.CrossRefGoogle Scholar
- 29.Choudhury, S.D., Barooah, N., Aswal, V.K., Pal, H., Bhasikuttana, A.C., and Mohanty, J., Soft Matter, 2014, vol. 10, p. 3485.CrossRefGoogle Scholar
- 30.Galgano, P.D. and El Seoud, O.A., J. Colloid Interface Sci., 2011, vol. 361, p. 186.CrossRefGoogle Scholar
- 31.Abezgauz, L., Kuperkar, K., Hassan, P.A., Ramon, O., Bahadur, P., and Danino, D., J. Colloid Interface Sci., 2010, vol. 342, p. 83.CrossRefGoogle Scholar
- 32.Vicente, F.A., Cardoso, I.S., Sintra, T.E., Lemus, J., Marques, E.F., Ventura, S.P.M., and Coutinho, J.A.P., J. Phys. Chem. B, 2017, vol. 121, p. 8742.CrossRefGoogle Scholar
- 33.Sÿkerjanc, J., Kogej, K., and Cerar, J., Langmuir, 1999, vol. 15, p. 5023.CrossRefGoogle Scholar
- 34.Vagapova, G.I., Valeeva, F.G., Gainanova, G.A., Syakaev, V.V., Galkina, I.V., Zakharova, L.Ya., Latypov, Sh.K., and Konovalov, A.I., Colloids Surf. A, 2013, vol. 419, p. 186.CrossRefGoogle Scholar
- 35.Prasad, M., Moulik, S.P., Macdonald, A., and Palepu, R., J. Phys. Chem. B, 2004, vol. 108, p. 355.CrossRefGoogle Scholar
- 36.Thakkar, K., Bharatiya, B., Shah, D.O., Ray, D., Aswal, V.K., and Pratap, B.P., Colloids Surf. A, 2015, vol. 484, p. 547.CrossRefGoogle Scholar
- 37.Gainanova, G.A., Vagapova, G.I., Valeeva, F.G., Vasilieva, E.A., Galkina, I.V., Zakharova, L.Ya., and Sinyashin, O.G., Colloids Surf. A, 2016, vol. 489, p. 95.CrossRefGoogle Scholar
- 38.Gainanova, G.A., Vagapova, G.I., Syakaev, V.V., Ibragimova, A.R., Valeeva, F.G., Tudriy, E.V., Gal-kina, I.V., Kataeva, O.N., Zakharova, L.Ya., Latypov, Sh.K., and Konovalov, A.I., J. Colloid Interface Sci., 2012, vol. 367, p. 327.CrossRefGoogle Scholar
- 39.Ray, G.B., Ghosh, S., and Moulik, S.P., J. Chem. Sci., 2010, vol. 122, p. 109.CrossRefGoogle Scholar
Copyright information
© Pleiades Publishing, Inc. 2018