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AC conductivity studies in copper decorated and zinc oxide embedded polypyrrole composite nanorods: Interfacial effects

机译:铜装饰和氧化锌嵌入聚吡咯复合纳米棒的交流电导率研究:界面效应

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摘要

In this work, synthesis, characterization and temperature dependent alternating current (AC) conductivity studies on copper decorated and zinc oxide embedded polypyrrole (PPy/Cu-ZnO) ternary composite nanorods are reported. The composite nanorods were prepared by mechanical mixing of chemically synthesized copper decorated polypyrrole (PPy/Cu composite) with zinc oxide (ZnO). The so prepared nanorods were thoroughly characterized using TEM, SEM, FTIR and XRD techniques. Significant morphological change in the form of solid nanorods of the ternary composite was confirmed from its TEM image. The surface morphology of the composite nanorods was shown to be porous hinting that these nanorods have good prospects for gas sensing applications. The AC conductivities of PPy, PPy/Cu composite and PPy/Cu-ZnO composite nanorods were studied in the frequency range 100 Hz to 5 MHz over a temperature range 303 K-373 K. The increased AC conductivity of the composite nanorods as compared to those of PPy/Cu composite and PPy is discussed on the basis of interfacial effects and supported theoretically on the basis of correlated barrier hopping (CBH) model.
机译:在这项工作中,报道了对装饰铜的合成,表征和温度依赖性交流(AC)电导率研究和氧化锌嵌入聚吡咯(PPY / Cu-ZnO)三元复合纳米杆ODS。通过用氧化锌(ZnO)的化学合成的铜装饰的聚吡咯(PPY / Cu复合)的机械混合来制备复合纳米棒。使用TEM,SEM,FTIR和XRD技术进行了如此制备的纳米棒。从其TEM图像证实了三元复合物的固体纳米棒形式的显着形态变化。显示复合纳米棒的表面形态被认为是多孔暗示,即这些纳米杆具有良好的气体传感应用的前景。在303k-373k的温度范围内,在频率范围为100Hz至5MHz的频率范围内进行PPY,PPY / Cu复合材料和PPY / Cu-ZnO复合纳米棒的AC电导率。与...相比,复合纳米棒的AC电导率增加增加基于相关屏障跳跃(CBH)模型理论上讨论了PPY / Cu复合材料和PPY的那些。

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