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Original Articles

Mixed micellization of binary mixture of amino sulfonate amphoteric surfactant with octadecyltrimethyl ammonium bromide in water/isopropanol solution: Comparison with that in aqueous solution

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Pages 1353-1359 | Received 05 Jun 2018, Accepted 18 Aug 2018, Published online: 08 Oct 2018

References

  • López-Díaz, D.; García-Mateos, I.; Velázquez, M. M. Synergism in Mixtures of Zwitterionic and Ionic Surfactants. Colloids and Surfaces A: Physicochem. Eng. Aspects. 2005, 270–271, 153–162.
  • Rosen, M. J.; Junkappu, J. T. Surfactants and Interfacial Phenomena, 4th ed. Wiley-Interscience: Hoboken, NL, 2012.
  • Ren, Z. H.; Luo, Y.; Zheng, Y. C.; Mei, P.; Li, F. X.; Shi, D. P. Synergistic Effect between Amino Sulfonate Amphoteric Surfactant and Octylphenol Polyoxyethylene Ether (10) in Aqueous Solutions with Different Acidicities: consideration of Different Thermodynamic Models. J. Chem. Technol. Biotechnol. 2015, 90, 2113–2121.
  • Hao, L.; Deng, Y.; Zhou, L.; Ye, H.; Nan, Y.; Hu, P. Mixed Micellization and the Dissociated Margules Model for Cationic/Anionic Surfactant Systems. J. Phys. Chem. B 2012, 116, 5213–5225.
  • Negm, N. A.; Tawfik, S. M. Studies of Monolayer and Mixed Micelle Formation of Anionic and Nonionic Surfactants in the Presence of Adenosine-5-Monophosphate. J. Solution Chem. 2012, 41, 335–350.
  • Clint, J. H. Micellisation of Mixed Nonionic Surface Active Agents. J. Chem. Soc., Faraday Trans. 1 1975, 71, 1327–1334.
  • Holland, P. M.; Rubingh, D. N. Nonideal Multicomponent Mixed Micelle Model. J. Phys. Chem. 1983, 87, 1984–1990.
  • Maeda, H. A Simple Thermodynamic Analysis of the Stability of Ionic/Nonionic Mixed Micelles. J. Colloid Interface Sci. 1995, 172, 98–105.
  • Aslanzadeh, S.; Yousefi, A. The Effect of Ethanol on Nanostructures of Mixed Cationic and Anionic Surfactants. J. Surfact. Deterg. 2014, 17, 709–716.
  • Ren, Z. H.; Huang, J.; Luo, Y.; Zheng, Y. C.; Mei, P.; Yu, W. C.; Lai, L.; Chang, Y. L.; Li, F. X. Effect of Isopropanol on the Micellization of Binary Mixture Containing Amino Sulfonate Amphoteric Surfactant in Aqueous Solution: Mixing with Octadecyltrimethyl Ammonium Bromide. Colloids Surf. A: Physicochem. Eng. Aspects. 2016, 504, 131–138.
  • Javadian, S.; Gharibi, H.; Bromand, Z.; Sohrabi, B. Electrolyte Effect on Mixed Micelle and Interfacial Properties of Binary Mixtures of Cationic and Nonionic Surfactants. J. Colloid Interface Sci. 2008, 318, 449–456.
  • Ren, Z. H.; Huang, J.; Luo, Y.; Zheng, Y. C.; Mei, P.; Lai, L.; Chang, Y. L. Micellization Behavior of Binary Mixtures of Amino Sulfonate Amphoteric Surfactant with Different Octylphenol Polyoxyethylene Ethers in Aqueous Salt Solution: Both Cationic and Hydrophilic Effects. J. Ind. Eng. Chem. 2016, 36, 263–270.
  • Ren, Z. H. Effect of Sodium Chloride on Interaction between Amino Sulfonate Amphoteric Surfactant and Octylphenol Polyoxyethylene Ether (10) in Aqueous Solution. J. Ind. Eng. Chem. 2015, 30, 44–49.
  • Rub, M. A.; Kumar, D.; Azum, N.; Khan, F.; Asiri, A. M. Study of the Interaction between Promazine Hydrochloride and Surfactant (Conventional Gemini) Mixtures at Different Temperatures. J. Solution Chem. 2014, 43, 930–949.
  • Berger, P. D.; Berger, C. H. Oil recovery method employing amphoteric surfactants. U.S. Patent 7,556,098, 2009.
  • Ren, Z. H.; Luo, Y. Dynamic Interfacial Tension Behavior of Alkyl Amino Sulfonate in Crude Oil-Brine System. Tsd. 2013, 50, 369–375.
  • Ren, Z. H.; Chen, D. J.; Luo, Y.; Huang, J. Investigation of Influence of Inorganic Salt on the Critical Micelle Concentration of Sodium Octylphenol Polyoxyethylenated Ethylsulfonate. Acta Chim. Sin. 2010, 6, 1771–1775.
  • Bakshi, M.; Sachar, S.; Mahajan, N.; Kaur, I.; Kaur, G.; Singh, N.; Sehgal, P.; Doe, H. Mixed-Micelle Formation by Strongly Interacting Surfactant Binary Mixtures: effect of Head-Group Modification. Colloid Polym. Sci. 2002, 280, 990–1000.
  • Faustino, C. M. C.; Calado, A. R. T.; Garcia-Rio, L. Mixed Micelle Formation between Amino Acid-Based Surfactants and Phospholipids. J. Colloid Interface Sci. 2011, 359, 493–498.
  • Rodenas, E.; Valiente, M.; Villafruela, M. S. Different Theoretical Approaches for the Study of the Mixed Tetraethylene Glycol Mono-n-Dodecyl Ether/Hexadecyltrimethylammonium Bromide Micelles. J. Phys. Chem. B. 1999, 103, 4549–4554.
  • Ren, Z. H.; Luo, Y.; Zheng, Y. C.; Wang, C. J.; Shi, D. P.; Li, F. X. Micellization Behavior of the Mixtures of Amino Sulfonate Amphoteric Surfactant and Octadecyltrimethyl Ammonium Bromide in Aqueous Solution at 40 °C: A Tensiometric Study. J. Mater. Sci. 2015, 50, 1965–1972.
  • Rodriguez, A.; Graciani, M. M.; Moya, M. L. Effects of Addition of Polar Organic Solvents on Micellization. Langmuir. 2008, 24, 12785–12792.
  • Ren, Z. H. Interacting Behavior between Amino Sulfonate Amphoteric Surfactant and Octylphenol Polyoxyethylene Ether (7) in Aqueous Solution and pH Effect. J. Ind. Eng. Chem. 2014, 20, 3649–3657.
  • Vora, S.; George, A.; Desai, H.; Bahadur, P. Mixed Micelles of Some Anionic-Anionic, Cationic-Cationic, and Ionic-Nonionic Surfactants in Aqueous Media. J. Surfact. Deterg. 1999, 2, 213–221.
  • Nandni, D.; Mahajan, R. K. Micellar and Interfacial Behavior of Cationic Benzalkonium Chloride and Nonionic Polyoxyethylene Alkyl Ether Based Mixed Surfactant Systems. J. Surfact. Deterg. 2013, 16, 587–599.
  • Sehgal, P.; Kosaka, O.; Doe, H.; Otzen, D. E. Interaction and Stability of Mixed Micelle and Monolayer of Nonionic and Cationic Surfactant Mixtures. J. Dispers. Sci. Technol. 2009, 30, 1050–1058.
  • Cui, Z. G.; Canselier, J. P. Interfacial and Aggregation Properties of Some Anionic/Cationic Surfactant Binary Systems II. Mixed Micelle Formation and Surface Tension Reduction Effectiveness. Colloid Polym. Sci. 2001, 279, 259–267.
  • Padasala, S.; Kanoje, B.; Kuperkar, K.; Bahadur, P. Mixed Micellization Study of Alkyltrimethylammonium and Alkyltriphenylphosphonium Bromides in Aqueous Solution. J. Surfact. Deterg. 2016, 19, 389–398.

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