Issue
Korean Journal of Chemical Engineering,
Vol.32, No.2, 308-315, 2015
Binary mixtures of cationic surfactants with triton X-100 and the studies of physicochemical parameters of the mixed micelles
The mixtures of alkylpyridinium chloride (CnPC, n=14, 16) and Triton X-100 were studied over the entire mole fractions at 298.15 K. For each mixture, CMC was obtained from surface tension measurements. To estimate the interaction parameter values (β), the calculation of the monomer concentrations and the mole fractions of the individual surfactants in the mixed micelles, the CMC data were used by applying the regular solution theory. The obtained results showed that the increase of the chain length of CnPC led to the stronger preferential incorporation of cationic surfactant in mixed micelle. The large values of |ΔGo| confirmed that mixed micelle of C16PC and Triton X-100 was significantly favorable.
[References]
  1. Mohamed DE, Negm NA, Mishrif MR, J. Surf. Deterg., 16, 723, 2013
  2. Sheikh MS, Kabir-ud-Din DAA, Dar AA, Colloids Surf., A, 378, 60, 2011
  3. Rub MA, Asiri AM, Azum N, Khan A, Khan AAP, Khan SB, Rahman MM, Din KU, J. Ind. Eng. Chem., 19(6), 1774, 2013
  4. Holland PM, Rubingh DN, J. Phys. Chem., 87, 1984, 1983
  5. Bergstrom M, Eriksson JC, Langmuir, 16(18), 7173, 2000
  6. Bergstrom M, Langmuir, 17(4), 993, 2001
  7. Olea AF, Gamboa C, J. Colloid Interface Sci., 257(2), 321, 2003
  8. Rosen MJ, Surfactants and interfacial phenomena, Wiley, New York, 1989
  9. Asadoorian J, Williams KB, J. Dental Hygiene, 82, 42, 2008
  10. Dejan CM, Posa MM, Krstonosic VS, Chemistry Central Journal, 5, 89, 2011
  11. Rubingh DN, Mittal KL, In Solution Chemistry of Surfactants, 1, 337, 1979
  12. Holland PM, Adv. Colloid Interface Sci., 26, 111, 1986
  13. Maeda H, J. Colloid Interface Sci., 172(1), 98, 1995
  14. Clint JH, J. Chem. Soc. Faraday Trans., 71, 1327, 1975
  15. Rafati AA, Maleki H, J. Mol. Liq., 135, 128, 2007
  16. Motomura K, Aratono M, In Mixed Surfactant Systems, Edited by Ogino K, Abe M, Marcel Dekker, New York, 1993
  17. Slagle AR, PhD Thesis, University of Oklahoma, USA, 1998
  18. Munster A, Statistical Thermodynamics, Springer-Verlag, Berlin, 1974
  19. Holland PM, Modeling mixed surfactant systems, ACS Symposium Series; Chapter 2. American Chemical Society, Washington, DC, 1992
  20. Rosen MJ, Hua XY, J. Colloid Interface Sci., 86, 164, 1982
  21. Bergstrom M, Eriksson JC, Langmuir, 16(18), 7173, 2000
  22. Bergstrom M, Langmuir, 17(4), 993, 2001
  23. Rub MA, Asiri AM, Azum N, Kabir-ud-Din, J. Ind. Eng. Chem., DOI:10.1016/j.jiec.2013.09.027., 2013
  24. Rub MA, Sheikh MS, Asiri AM, Azum N, Khan A, Khan AAP, Khan SB, Kabir-ud-Din, J. Chem. Thermodyn., 64, 28, 2013
  25. Rub MA, Asiri AM, Naqvi AZ, Rahman MM, Khan SB, Kabir-ud-Din, J. Mol. Liq., 177, 19, 2013
  26. Zhou Q, Rosen MJ, Langmuir, 19(11), 4555, 2003
  27. Otto M, Chemometrics: Statistics and computer application in analytical chemistry, Weinheim, WILEY-VCH, 2007
  28. Sarmoria C, Puvvada S, Blankschtein D, Langmuir, 8, 2690, 1992
  29. Cox DR, Hinkley DV, Theoretical Statistics, Chapman & Hall, London, 1974
  30. Razavizadeh BM, Mousavi-Khoshdel A, Gharibi H, Behjatmanesh-Ardakani R, Javadian S, Sohrabi B, J. Colloid Interface Sci., 276(1), 197, 2004
  31. Palepu R, Gharibi H, Bloor DM, Wyn-Jones E, Langmuir, 9, 110, 1993
  32. Patil RS, Buchavzov N, Careya E, Stubenrauch C, Soft Matter, 4, 840, 2008
  33. Danov KD, Kralchevska SD, Kralchevsky PA, Ananthapadmanabhan KP, Lips A, Langmuir, 20(13), 5445, 2004
  34. Ikeda S, Tsunoda M, Maeda H, J. Colloid Interface Sci., 67, 336, 1987