Copyright (c) 2016 AJC
This work is licensed under a Creative Commons Attribution 4.0 International License.
Salt Effect on Interfacial Properties of Cetyltrimethylammonium Bromide and Triton X-102 Mixed Surfactant System
Corresponding Author(s) : Taliha Sidim
Asian Journal of Chemistry,
Vol. 28 No. 2 (2016): Vol 28 Issue 2
Abstract
Micellar and surface properties of cationic surfactants octyl phenolethoxylate (Triton X-102) and cetyltrimethylammonium bromide were investigated with both contact angle measurements and surface tension measurements in the presence of sodium halide (NaF, NaCl and NaBr) solutions at 300 K. Surface tension data were used to compute the critical micelle concentration and interfacial parameters, such as the minimum area per molecule (Amin), the maximum surface excess (Gmax) and surface pressure at the critical micelle concentration (PCMC). Micellar and surface properties of mixed surfactants were evaluated both with and without salts. The critical micelle concentration and degree of the micellar ionization values were found to decrease with an increased salt concentration were proportional to decreased micellar ionization and critical micelle concentration, in the order NaBr < NaCl < NaF.
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References
M.J. Rosen, in ed.: J.F. Scamehorn, Phenomena in Mixed Surfactant Systems, American Chemical Society, Washington D.C., pp. 145-162 (1996).
M. Bhat and V.G. Gaikar, Langmuir, 16, 1580 (2000); doi:10.1021/la9906119.
T. Okano, T. Tamura, Y. Abe, T. Tsuchida, S. Lee and G. Sugihara, Langmuir, 16, 1508 (2000); doi:10.1021/la990331t.
M. Aratono, M. Villeneuve, T. Takiue, N. Ikeda and H. Iyota, J. Colloid Interf. Sci., 200, 161 (1998); doi:10.1006/jcis.1997.5369.
A.M. Misselyn-Bauduin, A. Thibaut, J. Grandjean, G. Broze and R. Jérôme, Langmuir, 16, 4430 (2000); doi:10.1021/la991020l.
C.C. Ruiz and J. Aguiar, Langmuir, 16, 7946 (2000); doi:10.1021/la000154s.
H.A. Maeda, J. Colloid Interf. Sci., 172, 98 (1995); doi:10.1006/jcis.1995.1230.
M.J. Rosen and B. Gu, Colloids Surf., 23, 119 (1987); doi:10.1016/0166-6622(87)80254-8.
Z. Huang and T. Gu, Colloids Surf., 28, 159 (1987); doi:10.1016/0166-6622(87)80181-6.
T.R. Desai and S.G. Dixit, J. Colloid Interf. Sci., 179, 544 (1996); doi:10.1006/jcis.1996.0248.
Q. Xu, T.V. Vasudevan and P. Somasundaran, J. Colloid Interf. Sci., 142, 528 (1991); doi:10.1016/0021-9797(91)90083-K.
L. Huang, C. Maltesh and P. Somasundaran, J. Colloid Interf. Sci., 177, 222 (1996); doi:10.1006/jcis.1996.0024.
A. Thibaut, Misselyn-Bauduin, J. Grandjean, G. Broze and R. Jérôme, Langmuir, 16, 9192 (2000); doi:10.1021/la000302e.
N.I. Ivanova, Colloid J., 62, 56 (2000).
Yu.G. Bogdanova, V.D. Dolzhikova and B.D. Summ, Colloid J., 65, 290 (2003); doi:10.1023/A:1024242419876.
V.N. Kislenko and R.M. Verlinskaya, Colloid J., 65, 323 (2003); doi:10.1023/A:1024206806672.
A.H. Saiyad, A.K. Rakhshit and S.G.T. Bhat, Indian J. Chem., 34A, 611 (1995).
M. Otani, M. Saito and A. Yabe, Text. Res. J., 55, 582 (1985); doi:10.1177/004051758505501003.
L.Y. Ostrovskaya, Powder Metall. Met. Ceram., 42, 1 (2003); doi:10.1023/A:1023978613302.
M. Zielecka, Polimery, 49, 327 (2004).
L. O'Neill, S.P. Ryan, L.A. O'Hare, S.R. Leadley and A.J. Goodwin, Technical Conference, Denver, 219 (2005).
G.F. Brookes and P.J. Bethell, Powder Technol., 40, 207 (1984); doi:10.1016/0032-5910(84)85066-4.
A. Yehia and M.I. Al-Wakeel, Miner. Eng., 13, 111 (2000); doi:10.1016/S0892-6875(99)00154-5.
G. Newcombe and J. Ralston, Langmuir, 8, 190 (1992); doi:10.1021/la00037a035.
R.D. Hazlett, J. Colloid Interf. Sci., 137, 527 (1990); doi:10.1016/0021-9797(90)90425-N.
A. Mennella, N.R. Morrow and X. Xie, J. Petrol. Sci. Eng., 13, 179 (1995); doi:10.1016/0920-4105(95)00009-7.
D.N. Rao, Petroleum Sci. Technol., 19, 157 (2001); doi:10.1081/LFT-100001232.
D.N. Rao and S.C. Ayirala, Proceedings of International Conference on MEMS NANO and Smart Systems, 59, 17 (2005).
G.K. Tampy, W.J. Chen, M.E. Prudich and R.L. Savage, Energy Fuels, 2, 782 (1988); doi:10.1021/ef00012a010.
Y.L. Yuan and T. Randall, Contact Angle and Wetting Properties, Berlin Heidelberg (2013).
S. Wu, Polymer Interface and Adhesion, Marcel Dekker, New York (1982).
N. Thongyai, S. Daowphiset and N. Pungwiwat, Study of Stainless Steel Surface Cleanability King Mongkut’s Institute of Technology, Bangkok (2005).
S. Sunayana, Wetting of PTFE surface by Mixed Surfactant Solutions in the Presence of Electrolyte, India (2010).
L. Leontidis, Curr. Opin. Colloid Interface Sci., 7, 81 (2002); doi:10.1016/S1359-0294(02)00010-9.
J.R. Kanicky, A.F. Poniatowski, N.R. Mehta and D.O. Shah, Langmuir, 16, 172 (2000); doi:10.1021/la990719o.
N.R. Baddoo, R. Burgan and R. Ogden, Architects’ Guide to Stainless Steel, SCI-P-179 The Steel Construction Institute, UK (1997).
G. Luo, X. Qi, C. Han, C. Liu and J. Gui, J. Surf. Deterg., 16, 531 (2013); doi:10.1007/s11743-012-1431-3.
F. Yang, G. Li, J. Qi, S. Zhang and R. Liu, Appl. Surf. Sci., 257, 312 (2010); doi:10.1016/j.apsusc.2010.06.094.
C. Xue, H. Zhu, T. Zhang, H. Cao and Z. Hu, Colloids Surf. A, 375, 141 (2011); doi:10.1016/j.colsurfa.2010.12.004.
D. Feng, Y. Zhang, Q. Chen, J. Wang, B. Li and Y. Feng, J. Surf. Deterg., 15, 657 (2012); doi:10.1007/s11743-012-1359-7.
M. del Mar Graciani, A. Rodríguez, M. Muñoz and M.L. Moyá, Langmuir, 21, 7161 (2005); doi:10.1021/la050862j.