Molecular motions in glass and supercooled states of clotrimazole studied by broadband dielectric spectroscopy
arXiv:1609.02649
Abstract
The molecular mobility of glassy and supercooled liquid states of clotrimazole is studied using broadband dielectric spectroscopy for a wide range of temperatures and frequency. The dielectric loss data of clotrimazole below T, do not show well resolved relaxation. Above T, dielectric loss show the structural -relaxation which is reformed to shoulder like shape at high frequencies due to the secondary relaxation. The relaxation time of -process, follows Vogel-Fulcher-Tammann equation. The glass transition temperature, =296K and fragility index, m=50 are obtained from the thermal behaviour of the -process. At temperature near T the dielectric loss has Kohlrausch-Williams-Watts stretch exponential parameter =0.56. The primitive relaxation time obtained from the coupling model coincides with the experimentally observed secondary relaxation of clotrimazole. Hence the secondary relaxation is considered to be the Johari-Goldstein (JG) process which may be the precursor -process. The value of exponent increases with increase of temperature and scaled dielectric loss do not form as single master curve. The structural relaxation -relaxation and JG -relaxation process and its effects in clorimazole is discussed.
6 pages, 8 figures