Journal of Chemical Physics, Vol.121, No.15, 7332-7340, 2004
Dielectric study of the alpha and beta processes in supercooled ethylene glycol oligomer-water mixtures
Broadband dielectric measurements for 65 wt % ethylene glycol oligomer (EGO)-water mixtures with one to six repeat units of EGO molecules were performed in the frequency range of 10 muHz-10 GHz and the temperature range of 128-298 K. In the case of the water-EGO mixtures with one and two repeat units of the EGO molecule (small EGO), the shape of the dielectric loss peak of the primary process is asymmetrical about the logarithm of the frequency of maximum loss above the crossover temperature, T-C. The asymmetric process continues to the alpha process at a low frequency, and an additional beta process appears in the frequency range higher than that of the alpha process below T-C. In contrast, the water-EGO mixtures with three or more repeat units of the EGO molecule (large EGO) show a broad and symmetrical loss peak of the primary process above T-C. The symmetric process continues to the beta process, and an additional alpha process appears in the frequency range lower than that of the beta process below T-C. These different scenarios of the alpha-beta separation related to the shape of the loss peak above T-C are a result of the difference in the cooperative motion of water and solute molecules. The solute and water molecules move cooperatively in the small EGO-water mixtures above T-C, and this cooperative motion leads to the asymmetric loss peak above T-C and the alpha process below T-C. For the large EGO-water mixtures, the spatially restricted motion of water confined by solute molecules leads to the symmetric loss peak above T-C and the beta process below T-C. (C) 2004 American Institute of Physics.