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  • Title: Ultraslow dielectric relaxation process in supercooled polyhydric alcohols.
    Author: Yomogida Y, Minoguchi A, Nozaki R.
    Journal: Phys Rev E Stat Nonlin Soft Matter Phys; 2006 Apr; 73(4 Pt 1):041510. PubMed ID: 16711812.
    Abstract:
    Complex permittivity was obtained on glycerol, xylitol, sorbitol and sorbitol-xylitol mixtures in the supercooled liquid state in the frequency range between 10 microHz and 500 MHz at temperatures near and above the glass transition temperature. For all the materials, a dielectric relaxation process was observed in addition to the well-known structural alpha and Johari-Goldstein beta relaxation process [G. P. Johari and M. Goldstein, J. Chem. Phys. 53, 2372 (1970)]. The relaxation time for the new process is always larger than that for the alpha process. The relaxation time shows non-Arrhenius temperature dependence with correlation to the behavior of the alpha process and it depends on the molecular size systematically. The dielectric relaxation strength for the new process shows the effect of thermal history and decreases exponentially with time at a constant temperature. It can be considered that a nonequilibrium dynamics causes the new process.
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