Abstract
Investigation of the electric properties of semi-conducting materials in an applied ac electric fields gives in-formation about the nature of charge transport and localized states in the forbidden gap. Layered crystals usually contain structural defects, such as dislocations and vacancies that may form a high density of local-ized states near the Fermi level. So, the current study was carried out for insight into the dielectric Properties of Tl 2 S layered single crystals. These properties were studied using the ac measurements in the low tempera-tures ranging from 77 to 300 K. The real part of dielectric constant ε ׳ , imaginary part of dielectric constant ε ״ , the dissipation factor tan δ and the alternating current conductivity σ ac were measured in an applied ac elec-tric field of frequencies extending from 2.5 to 50 kHz. Based on the dependencies of these dielectric pa-rameters on both the frequency and temperature, the dielectric properties of the crystals under investigation were elucidated and analyzed. The ac conductivity was found to obey the power law σ ac (ω) = Aω s with which the values of the exponent s were evaluated to be less than unity in the range 0.21 ≥ s ≥ 0.19. Fur-thermore, it was found that the temperature dependence of ac conductivity follows the Arrhenius relation via which the impact of temperature on the electrical processes in an applied ac electric field was illustrated and analyzed. The influences of temperature and frequency on both the exponent s and band gap were also dis-cussed in this investigation.
Cite
CITATION STYLE
Badr, A. M. (2011). Impacts of Temperature and Frequency on the Dielectric Properties for Insight into the Nature of the Charge Transports in the Tl2S Layered Single Crystals. Journal of Modern Physics, 02(01), 12–25. https://doi.org/10.4236/jmp.2011.31004
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