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首页> 外文期刊>Physica, B. Condensed Matter >Effect of zinc oxide nanorods on the structural, thermal, dielectric and electrical properties of polyvinyl alcohol/carboxymethyle cellulose composites
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Effect of zinc oxide nanorods on the structural, thermal, dielectric and electrical properties of polyvinyl alcohol/carboxymethyle cellulose composites

机译:氧化锌纳米棒对聚乙烯醇/羧甲基米纤维素复合材料的结构,热,电介质和电性能的影响

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ZnO nanorods were prepared by chemical vapor deposition (CVD) have lengths ranging between 104.12 and 307.64 nm and diameters ranging between 21.17 and 55.88 nm determined by transmission electron microscopy (TEM). Polyvinyl alcohol/carboxymethyl cellulose nanocomposites and Zinc oxide (ZnO) were prepared by casting method. The prepared samples were characterised by various methods. The results of XRD analysis depict theamorphous nature of these polymer samples and the degree of amorphousity is increased due to the addition process. The interaction of the ZnO NRs with the PVA/CMC blend was identified by Fourier transforms infrared spectroscopy (FTIR). The dispersion of dopant within the polymer matrix was supported by scanning electron microscopy (SEM). DSC and TGA was utilized to study the thermal behavior of the films and the highest conducting polymer material is lower the glass transition temperature. The conductivity and dielectric behaviors were analyzed by complex impedance spectroscopy as a frequency function at different temperature. The ac conductivity is found to obey Jonscher's law, whereas dc conductivity is seen to exhibit Arrhenius behavior and increases with temperatures and the activation energy of the films with an increasing of ZnO NRs content was decreased. The dielectric properties of pure blend and nanocomposites have been enhanced due to the addition of ZnO NRs and are found to be highly temperature dependent. The frequency exponent (s) have been well fitted with the proposed correlation equation of the barrier hopping model. Significant increase in dc and ac conductivities in these nanocomposites samples makes them a potential candidate for electrochemical device applications.
机译:ZnO纳米棒是由化学气相沉积(CVD)的长度范围纳米104.12和307.64之间,并且直径范围纳米21.17和55.88之间确定由制备透射电子显微镜(TEM)。聚乙烯醇/羧甲基纤维素纳米复合材料和氧化锌(ZnO)的通过铸造方法制备。通过各种方法将所制备的样品进行表征。 XRD分析结果描绘这些聚合物样品的theamorphous性质和amorphousity的程度由于加入过程增加。在ZnO自然保护区与PVA / CMC混合物的鉴定通过傅立叶变换的相互作用变换红外光谱(FTIR)。在聚合物基质中掺杂剂的分散液通过扫描电子显微镜(SEM)的支持。 DSC和TGA被用来研究薄膜和最高导电聚合物材料是降低玻璃化转变温度的热行为。的导电率和电介质的行为,通过复阻抗光谱法在不同温度下的频率函数进行分析。该交流电导率被发现服从Jonscher定律,而直流电导率被认为是表现出的Arrhenius行为,并随温度增加,薄膜的氧化锌具有保护区内容的增加而降低活化能。纯共混物和纳米复合材料的介电特性进行了增强由于加入氧化锌的NRS和被发现是高度依赖于温度。频率指数(一个或多个)已被很好地拟合与阻挡跳频模型的提出相关方程。显著上升直流和交流电导率纳米复合材料,这些样品中,使它们电化学装置应用的潜在候选。

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