Abstract

Micellization behavior was investigated for polyoxyethylene-type nonionic surfactants with varying chain length (C n E m ) in a room temperature ionic liquid, 1-butyl-3-methylimidazolium tetrafluoroborate (bmimBF 4). Critical micelle concentration (cmc) was determined from the variation of 1H NMR chemical shift with the surfactant concentration. The logarithmic value of cmc decreased linearly with the number of carbon atoms in the surfactant hydrocarbon chain, similarly to the case observed in aqueous surfactant solutions. However, the slope of the straight line is much smaller in bmimBF 4 than in aqueous solution. Thermodynamic parameters for micelle formation estimated from the temperature dependence of cmc showed that the micellization in bmimBF 4 is an entropy-driven process around room temperature. This behavior is also similar to the case in aqueous solution. However, the magnitude of the entropic contribution to the overall micellization free energy in bmimBF 4 is much smaller compared with that in aqueous solution. These results suggest that the micellization in bmimBF 4 proceeds through a mechanism similar to the hydrophobic interaction in aqueous surfactant solutions, although the solvophobic effect in bmimBF 4 is much weaker than the hydrophobic effect.

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