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An Investigation of Ac Impedance and Dielectric Spectroscopic Properties of Conducting Chitosan-silane Crosslinked-poly (Vinyl Alcohol) Blended Films

机译:进行壳聚糖 - 硅烷交联聚(乙烯醇)混合膜的交流阻抗和介电光谱性能研究

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The films of chitosan (CS)-silane crosslinked-poly(vinyl alcohol) (PVA) with different weight % were prepared. The effect on conductivity of CS/PVA blended films due to change in the concentration of PVA and temperature was investigated by impedance spectroscopy and showed good conductance properties. The complex impedance plots revealed single semicircular arcs indicating the bulk contribution to overall electrical behavior of all synthesized samples. The ac conductivity obeyed the Jonscher's power law for all samples in the frequency range of 2 kHz to 2 MHz. The ionic conductivity of the films was increased with the increase in temperature for all synthesized samples which showed an increase in the number of effective charge carriers while it was decreased at a specific higher temperature for each film. The observed activation energy for CP4, CP8 and CP10 were 0.431, 0.610 and 0.425 eV, respectively. These properties showed that the films were promising materials to be employed for conducting properties.
机译:制备壳聚糖(CS) - 硅烷交联聚(乙烯醇)(PVA)的壳聚糖(Cs)交联聚(PVA)的薄膜。采用阻抗光谱研究了由于PVA和温度浓度的变化而导致Cs / PVA混合膜的电导率的影响,并显示出良好的电导性能。复杂的阻抗图揭示了单个半圆形弧,表明散装对所有合成样品的整体电气行为的贡献。交流电导率遵守了频率范围为2kHz至2 MHz的所有样品的Jonscher的权力法。随着所有合成样品的温度的增加而增加,膜的离子电导率增加,其显示出有效电荷载体的数量增加,而在每种膜的特定较高温度下降低。对于CP4,CP8和CP10的观察到的激活能量分别为0.431,0.610和0.425eV。这些性质表明,薄膜是用于进行性能的有希望的材料。

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