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Electrical conduction and dielectric relaxation in p-type PVA/CuI polymer composite

机译:p型PVA / CuI聚合物复合材料的电导率和介电弛豫

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摘要

PVA/CuI polymer composite samples have been prepared and subjected to characterizations using FT-IR spectroscopy, DSC analysis, ac spectroscopy and dc conduction. The FT-IR spectral analysis shows remarkable variation of the absorption peak positions whereas DSC illustrates a little decrease of both glass transition temperature, Tg, and crystallization fraction, χ, with increasing CuI concentration. An increase of dc conductivity for PVA/CuI nano composite by increasing CuI concentration is recoded up to 15 wt%, besides it obeys Arhenuis plot with an activation energy in the range 0.54–1.32 eV. The frequency dependence of ac conductivity showed power law with an exponent 0.33 < s < 0.69 which predicts hopping conduction mechanism. The frequency dependence of both dielectric permittivity and dielectric loss obeys Debye dispersion relations in wide range of temperatures and frequency. Significant values of dipole relaxation time obtained which are thermally activated with activation energies in the range 0.33–0.87 eV. A significant value of hopping distance in the range 3.4–1.2 nm is estimated in agreement with the value of Bohr radius of the exciton.
机译:已制备了PVA / CuI聚合物复合材料样品,并使用FT-IR光谱,DSC分析,交流光谱和直流电进行了表征。 FT-IR光谱分析显示出吸收峰位置的显着变化,而DSC显示,随着CuI浓度的增加,玻璃化转变温度Tg和结晶分数χ都有少许降低。通过增加CuI浓度来增加PVA / CuI纳米复合材料的直流电导率,使其重新编码达到15 wt%,此外,它遵循Arhenuis图,其激活能在0.54–1.32 eV范围内。交流电导率的频率依赖性显示出幂律,其指数为0.33

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