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Optical, electrical, mechanical, and thermal properties and non-isothermal decomposition behavior of poly(vinyl alcohol)-ZnO nanocomposites

机译:聚(乙烯醇)-ZnO纳米复合材料的光学,电气,机械和热性能和非等温分解行为

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Poly(vinyl alcohol) (PVA) nanocomposites incorporated with ZnO nanofiller were prepared and examined to study the influence of nanofiller on their properties. All the prepared samples were analyzed using FTIR and XRD. The observation of M-O stretching peak (at 526 cm(-1)) in the samples indicated the interaction of ZnO with PVA matrix. The XRD patterns of PVA nanocomposites confirmed the presence of ZnO nanofiller. The uniform dispersion of ZnO nanofiller as well as the interaction of nanofiller with the PVA matrix was also observed in SEM study. The size of the ZnO nanoparticles (NPs) was estimated to be less than 35 nm from the TEM micrograph. The light absorption and transmittance behaviors of the PVA nanocomposites were examined by analyzing the UV-visible spectra. The prepared PVA nanocomposite films exhibited high absorption in the UV region. The band gap of PVA was decreased after incorporating the ZnO NPs. The thermal property and non-isothermal degradation behavior of the polymer nanocomposites were assessed using a TGA instrument. The energy of activation associated with the thermal decomposition behavior of the polymer composites was determined using the kinetic models. The DC electrical conductivity, mechanical properties, and thermal stability of the nanocomposite films were enhanced by the addition of ZnO NPs as compared with the pure PVA.
机译:制备与ZnO纳米填充物的聚(乙烯醇)(PVA)纳米复合材料进行制备并检查以研究纳米填充物对其性质的影响。使用FTIR和XRD分析所有制备的样品。样品中的M-O拉伸峰(在526cm(-1))的观察表明ZnO与PVA基质的相互作用。 PVA纳米复合材料的XRD图案证实存在ZnO纳米填料的存在。在SEM研究中,还观察到ZnO纳米填充物的均匀分散氮以及纳米填充物与PVA基质的相互作用。估计ZnO纳米颗粒(NPS)的尺寸距离TEM显微照片小于35nm。通过分析UV可见光光谱检查PVA纳米复合材料的光吸收和透射行为。制备的PVA纳米复合膜在UV区域中表现出高吸收。掺入ZnO NP后,PVA的带隙降低。使用TGA仪器评估聚合物纳米复合材料的热性和非等温降解行为。使用动力学模型测定与聚合物复合物的热分解行为相关的激活能量。与纯PVA相比,通过加入ZnO NPS来增强纳米复合膜的直流电电导率,机械性能和热稳定性。

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