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Effect of CuO nanofiller on the spectroscopic properties, dielectric permittivity and dielectric modulus of CMC/PVP nanocomposites

机译:CuO纳米填料对CMC / PVP纳米复合材料的光谱性质,介电常数和介电模量的影响

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System of nanocomposite films containing carboxymethyl cellulose (CMC) and polyvinyl pyrrolidone (PVP) embedded copper oxide (CuO) nanoparticles were synthesized using the casting method solution and it was described by appropriate techniques. The semicrystalline nature of the structure for the nanocomposites was confirmed by X-ray spectra. The main characteristic bands of IR groups of CMC and PVP were clearly founded in the IR spectra. The intensity of some bands was reduced confirms a well reacts between CuO the main IR groups inside CMC/PVP polymer were occurring. The estimations ofM′ were studied according to the conduction phenomenon related to short-range mobility of charge carriers. Minimum values ofM″ at lower frequency were attributed to the indication of transport for ions with one relaxation peaks were founded which increase with an increase of CuO attributed to the relaxation process. The presence of a semicircle shape in the relation betweenM′ andM″ was observed demonstrating the presence of broad relaxation processes. The behaviour of?′ was reduced as an increase of the frequency ascribed to polarization effects and it reaches to constant values at a higher frequency according to the contribution for charge accumulation. The behaviour of Z′ and Z″ was reduced as the increase of frequency as well as CuO. The magnitude of tanδwas also reduced because the hopping of charge carriers does not cause any changes of the applied field.
机译:采用流延法合成了含有羧甲基纤维素(CMC)和聚乙烯吡咯烷酮(PVP)包埋的氧化铜(CuO)纳米颗粒的纳米复合薄膜体系,并通过适当的技术对其进行了描述。纳米复合材料的结构的半结晶性质通过X射线光谱证实。在IR光谱中清楚地建立了CMC和PVP的IR基团的主要特征带。某些谱带的强度降低,证实了CMC / PVP聚合物内部主要IR基团CuO之间发生了良好的反应。根据与电荷载流子的短程迁移率有关的传导现象研究了M'的估计。较低频率下的M''最小值归因于具有一个弛豫峰的离子的传输指示,该弛豫峰随归因于弛豫过程的CuO的增加而增加。观察到在M'和M''之间的关系中存在半圆形,这表明存在宽弛豫过程。随着归因于极化效应的频率的增加,α′的行为减小,并且根据电荷积累的贡献在较高的频率处达到恒定值。 Z'和Z''的行为随着频率和CuO的增加而降低。 tanδ的幅度也减小了,因为电荷载流子的跳跃不会引起施加场的任何变化。

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