Langmuir, Vol.20, No.3, 632-636, 2004
NMR investigation of the short-chain ionic surfactant - Water systems
The structure and dynamics of surfactant molecules [CH3(CH2)(7)COOK] in heavy water solutions were investigated by H-1 and H-2 NMR. A double-exponential attenuation of the spin-echo amplitude in a Carr-Purcell-Meiboom-Gill experiment was found. We expect correspondence to both bounded and monomeric states. At high concentrations in the NMR self-diffusion measurements also a double-exponential decay of the spin-echo signal versus the square of the dc magnetic gradient was observed. The slow component of the diffusion process is caused by micellar aggregates, while the fast component is the result of the self-diffusion of the monomers through the micelles. The self-diffusion studies indicate that the form of micelles changes with increasing total surfactant concentration. The critical temperature range for self-association is reflected in the H-1 transverse relaxation.