Tuning of physico-chemical characteristics of charged micelles by controlling head group interactions via hydrophobically and sterically modified counter ions†
Abstract
Different tetraalkylammoniums, viz., N+(CH3)4, N+(C2H5)4, N+(C3H7)4, N+(C4H9)4 along with simple ammonium salts of dodecylbenzene sulphonic acid were prepared by an ion-exchange technique. The cmcs of dodecylbenzene sulfonate salts with various counterions were determined by electrical conductivity and surface tension measurements within the temperature range 283–313 K. The counterion ionization constant, α, the surface parameters Γmax and Amin and also the thermodynamic parameters of the micellization process, viz., ΔG0m, ΔH0m and ΔS0m in aqueous solution have been determined by using a pseudo-phase model. The order of cmcs in aqueous solution is found to be NH4+ > N+(CH3)4 > N+(C2H5)4 > N+(C3H7)4 > N+(C4H9)4 at any given temperature. On the other hand, the aggregation number increases with alkyl chain length first due to increasing hydrophobic interactions and then decreases as a function of counterion size passing through a maximum for N+(C2H5)4. Spontaneity of micellization in aqueous solution is supported by large negative ΔG0m as well as the positive entropy change for the micellization process for all the above counterions. At a given temperature, ΔG0m for a surfactant with different counterions followed the order N+(CH3)4 > NH4+ > N+(C2H5)4 > N+(C3H7)4 > N+(C4H9)4. Electrostatic interaction along with effective charge screening and hydrophobicity of the surfactant head group together may give an explanation for the observed variation of aggregation behaviour and the energetics as a function of the nature of the counterion.