1 |
Interaction of antipsychotic drug with novel surfactants: Micellization and binding studies Azum N, Rub MA, Asiri AM Chinese Journal of Chemical Engineering, 26(3), 566, 2018 |
2 |
Monte Carlo simulation and theoretical approach to mixed surfactant system consisting gemini and conventional surfactants in aqueous solutions Khodadadi Z, Mousavi-Khoshdel SM, Gharibi H Fluid Phase Equilibria, 406, 175, 2015 |
3 |
Molecular interactions of cationic gemini surfactants (m-s-m) with an environmental friendly nonionic sugar-based surfactant (β-C12G): Interfacial, micellar and aggregation behavior Aslam J, Siddiqui US, Bhat IA, Kabir-ud-Din Journal of Industrial and Engineering Chemistry, 20(5), 3841, 2014 |
4 |
Studies of mixed surfactant solutions of cationic dimeric (gemini) surfactant with nonionic surfactant C12E6 in aqueous medium Sharma KS, Rodgers C, Palepu RM, Rakshit AK Journal of Colloid and Interface Science, 268(2), 482, 2003 |
5 |
Mixed micellization of dimeric (gemini) surfactants and conventional surfactants - II. CMC and micelle aggregation numbers for various mixtures Alargova RG, Kochijashky II, Sierra ML, Kwetkat K, Zana R Journal of Colloid and Interface Science, 235(1), 119, 2001 |
6 |
A spin-probe study of the modification of the hydration of SDS micelles by insertion of sugar-based nonionic surfactant molecules Bales BL, Howe AM, Pitt AR, Roe JA, Griffiths PC Journal of Physical Chemistry B, 104(2), 264, 2000 |
7 |
Micellar Immiscibility of Lithium 1,1,2,2-Tetrahydroheptadecafluorodecyl Sulfate and Lithium Tetradecyl Sulfate Mixture Asakawa T, Amada K, Miyagishi S Langmuir, 13(17), 4569, 1997 |
8 |
Micellar Pseudophase Separation Regions of 1H,1H,2H,2H-Perfluoroalkylpyridinium Chloride and Hydrocarbon Surfactants by Group-Contribution Method Asakawa T, Hisamatsu H, Miyagishi S Langmuir, 11(2), 478, 1995 |
9 |
Thermodynamics of Micelle Formation by 1-Methyl-4-Alkylpyridinium Halides Bijma K, Engberts JB, Haandrikman G, Vanos NM, Blandamer MJ, Butt MD, Cullis PM Langmuir, 10(8), 2578, 1994 |