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Effect of cesium bromide on the structural, optical, thermal and electrical properties of polyvinyl alcohol and polyethylene oxide

机译:溴化铯对聚乙烯醇和聚环氧乙烷的结构,光学,热和电性能的影响

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The molecular structures of polyvinyl alcohol and polyethylene oxide doped with various concentrations of CsBr were investigated by FT-IR, UV/Vis. and XRD. The surface of the prepared films was studied by SEM. Thermal and electrical properties were studied via TGA, DSC and DC electrical conductivity to use as a sensor in electronic devices. X-ray diffraction displays the semicrystalline nature of PVA/PEO, characterized by two broad bands at 2θ ≈19 and 23°, which decreased by increasing cesium bromide. FT-IR spectra revealed that there is a change in intensities of some bands compared with the spectrum of the pure blend. This indicates that interaction and complexation between PVA/PEO polymer blend and the filler took place in amorphous regions. UV/Vis. spectroscopy revealed that the values of the optical energy gap are decreased with increasing the CsBr concentration, which decreased from 5.90 to 4.90eV for direct transition and decreased from 4.72 to 3.51eV for indirect transition. TGA curves depicted that the thermal stability of samples was changed. DSC analysis showed a single glass transition temperature (Tg=60°C), which confirms the miscibility of the prepared films. The DC graph showed that the conductivity of the samples had been increased with increasing the fillers content and the activation energy was decreased from 1.03 to 0.36eV. SEM displays transparent, soft and a uniform surface for polyvinyl alcohol and polyethylene oxide while after adding CsBr there is a semi- tori/ granules randomly distributed on the surface.
机译:通过FT-IR,UV / Vis研究了掺杂有各种CSBR的聚乙烯醇和聚环氧乙烷的分子结构。和XRD。通过SEM研究制备的薄膜的表面。通过TGA,DSC和DC导电性研究热和电性能,用作电子设备中的传感器。 X射线衍射显示PVA / PEO的半结晶性质,其特征在于2θ≈19和23°的两个宽带,其通过增加溴化铯降低。与纯混合物的光谱相比,FT-IR光谱揭示了一些带的强度变化。这表明PVA / PEO聚合物共混物与填料之间的相互作用和络合在非晶区域中发生。紫外/近。光谱学揭示了光能间隙的值随着CSBR浓度的增加而降低,从5.90降至4.90EV以直接过渡,从4.72降至3.51EV以间接转变。所描绘的TGA曲线描绘了样品的热稳定性改变。 DSC分析显示单个玻璃化转变温度(Tg = 60℃),证实了制备薄膜的混溶性。 DC图表明,随着填料含量的增加,样品的电导率增加,激活能量从1.03降至0.36eV​​。 SEM显示聚乙烯醇和聚环氧乙烷的透明,柔软和均匀的表面,同时加入CSBR之后,存在随机分布在表面上的半圆环/颗粒。

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