黑色氧化镍纳米颗粒对制备的 PVA-PEG/Ni2O3 纳米复合材料的影响:形态、光学和 A.C. 电学特性

Foaad S. Hashim, Marwa M. Naeem, Shurooq S.Abed Al-Abbas
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摘要

基于聚合物混合物聚(乙烯醇)(PVA)/聚(乙二醇)(PEG)(PEG 在 PVA 中的含量为 10 wt.%)和 Ni2O3(5 个不同的 wt.%,如 3、4.5、6、7.5 和 9)制备了纳米复合薄膜。傅立叶变换红外光谱分析证实了聚合物体系中官能团的存在。表面图像显示,Ni2O3 颗粒分布均匀,并在聚合物混合物中形成了电荷转移路径网络。在 300 纳米以上,所有样品的透射率曲线都显示出饱和的趋势,在可见光和近红外光谱区域,共混聚合物薄膜的透射率值约为 88%,但随着重量的增加,透射率几乎逐渐下降,当 Ni2O3 的重量为 9 wt.% 时,透射率约为 66%,这使其适用于不同的应用领域(例如,不计成本的药物储存包装或太阳能电池应用)。 允许跃迁的光带隙从 4.385 eV 减小到 2.22 eV。随着纳米粒子浓度从 3 wt.% 增加到 9 wt.%,折射率值也从 2.45 微升至 2.68,同时,Ni2O3 NPs 的负载也增加了极化率值。最高的光导率值出现在紫外线区域,尤其是在 Ni2O3 NPs 的最佳添加量(9 和 7.5 wt.%)时。纳米添加剂还影响了其他检测特征。PVA-PEG/Ni2O3 的介电常数、介电损耗和 A.C 电导率等电气参数随 Ni2O3 浓度和外加电场频率的变化而变化,使其适合应用于电容器、晶体管和电子电路中。
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Impact of black nickel oxide nanoparticles on fabricated PVA-PEG/Ni2O3 nanocomposites: morphology, optical and A.C electrical properties
Nanocomposite films based on polymeric blend poly(vinyl alcohol) (PVA)/poly (ethylene glycol) (PEG) with 10 wt.% PEG in PVA and Ni2O3 at five different wt.% like 3, 4.5, 6, 7.5 , and 9 were fabricated. The analysis of FTIR spectra confirms the presence of functional groups belonging to the polymer systems. The surface images denote a good distribution of Ni2O3 particles and form a network of paths charge transfer within the polymeric blend. Above 300 nm, the transmittance curves of all samples showed a tendency towards saturation, and the value for blended polymer film was ~ 88% in the Vis and NIR areas of the spectrum, but it decreases almost gradually with increasing the weight reaching ~66% at 9 wt.% Ni2O3, which makes it suitable for different applications, (e.g. packaging for storage drugs regardless of cost or for solar cell applications).  Optical band gaps of allowed transitions decreased from 4.385 to 2.22 eV. The values of the refractive index showed small increases from 2.45 to 2.68 with the increasing concentration of nanoparticles from 3 to 9 wt.%, where an increase in polarizability values upon loading of Ni2O3 NPs. The highest optical conductivity values appear in the UV region particularly in optimum incorporating amount of Ni2O3 NPs (9 and 7.5 wt.%). Other features under examination were also seen to be affected by the nano additive. Change of electrical parameters such as dielectric constant, dielectric loss, and A.C electrical conductivity for PVA-PEG/Ni2O3 as a function of Ni2O3 concentrations and applied electric field frequency makes it suitable for application in capacitors, transistors, and electronic circuits.
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