Study of dielectric relaxation in 2,4-dimethyl substituted pyridine using microwave cavity spectrometer and time domain reflectometer

G.K. Johri1, R. Sharma1, M. Johri1, S. Johri1, S. Saxena2
1Department of Physics, D.A.V. College, Kanpur, India
2Department of Biochemistry, Dr. Virendra Swarup Center of Applied Science and Technology, Kanpur, India

Tóm tắt

We have used microwave cavity spectrometer and time domain reflectometer for the measurement of permittivity and dielectric loss at different temperatures in 2,4-dimethyl substituted pyridine. The observed data of the width of resonance profile and the shift in the resonance frequency have been analyzed by using Slater perturbation equations useful for cavity spectrometer. The parameters measured from the time domain reflectometer as the function of time at different temperatures have been transformed to obtain permittivity and dielectric loss. The observed values of permittivity and dielectric loss by these two techniques have also been compared. The relaxation time has been evaluated using single relaxation time mechanism and thermodynamical parameters have been determined. This experimental study provides fruitful information about the bulk properties of 2,4-dimethyl substituted pyridine.

Từ khóa

#Electrochemical impedance spectroscopy #Dielectric loss measurement #Dielectric losses #Dielectric measurements #Permittivity measurement #Loss measurement #Time measurement #Temperature #Resonance #Microwave measurements

Tài liệu tham khảo

10.1080/10587250108028692 10.1103/RevModPhys.18.441 bladel, 1964, Electromagnetic Fields debye, 1929, Polar Molecules 10.1039/ft9918701569 patil, 1998, Sensitive Analysis of Bilinear Calibration Method in Time Domain Reflectometry: 1,2 Propane Diol System, Samyak J Chemistry, 2, 54 khirade, 1999, Static Dieelctric Constant and Relaxation Time Measurements on Binary Mixtures of Dimethyl Sulfoxide with Ethanol, 2-Ethoxyethanol, and Propan-1-o1 at 293, 303, 313 And 323 K, J Chemi Engg Data Published on Web, 2.1 10.1063/1.343499 10.1109/JRPROC.1949.232969 samulon, 1951, spectrum analysis of transient response curves, Proceedings of the IRE, 39, 175, 10.1109/JRPROC.1951.231438 10.1021/j100382a014 10.1088/0022-3735/13/2/001 johri, 1995, Dielectric Response of Selected Ionic Solutions Using Loaded Microwave Cavity Operating Near 9GHz, 21GHz and 29GHz as a Probe, J Microwave Power and Electromagnetic Energy, 26, 82 johri, 1995, Dielectric Response and Phase Transition Studies of p-Azoxy Anisol and 1-1 Diacetyl Ferrocene in Pure and. Binary Mixtures, Mol Mat, 5, 63 10.1080/00319100108031687 10.1109/ICDL.1999.798998 hill, 1969, Dielectric Properties and Molecular Behaviour böttcher, 1978, Theory of Electrical Polarization, 2 johri, 2000, Study of The Response of Aqueous Solutions of Copper Sulphate Using Microwave Cavity Spectrometer, Phys Chem Liq (In press) singh, 1983, Dielectric Relaxation Studies in Pure Lutidines at Different Microwave Frequencies, Ind J Pure & Appl Phys, 21, 339