Publication | Open Access
Dielectric Properties, AC Conductivity, and Electric Modulus Analysis of Bulk Ethylcarbazole‐Terphenyl
161
Citations
32
References
2020
Year
EngineeringOrganic ElectronicsChemistryThermal ConductivityPolymersConducting PolymerCopolymer Pecbz‐terElectronic ConductorsPolymer ChemistryMaterials ScienceElectric Modulus AnalysisElectrical EngineeringBulk Ethylcarbazole‐terphenylUniversal Power LawOrganic SemiconductorElectrical PropertyDielectric PropertiesElectronic MaterialsPolymer ScienceApplied PhysicsElectric ModulusElectrical Insulation
Electrical and dielectric properties for bulk ethylcarbazole‐terphenyl (PEcbz‐Ter) have been studied over frequency range 1 kHz–2 MHz and temperature range (R.T –120°C). The copolymer PEcbz‐Ter was characterised by using X‐ray diffraction. The frequency dependence of the dielectric constant () and dielectric loss () has been investigated using the complex permittivity. of the copolymer decreases with increasing frequency and increases with temperature. AC conductivity ( σ ac ) data were analysed by the universal power law. The behaviour of σ ac increases with increasing temperature and frequency. The change of the frequency exponent ( s ) with temperature was analysed in terms of different conduction mechanisms, and it was found that the correlated barrier‐hopping model is the predominant conduction mechanism. The electric modulus was used to analyze the relaxation phenomenon in the material.
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