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Optical Properties and Conductivity of PVA–H3PO4 (Polyvinyl Alcohol–Phosphoric Acid) Film Blend Irradiated by γ-Rays

机译:PVA-H3PO4(聚乙烯醇 - 磷酸)膜共混物的光学性质和电导率γ射线照射

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摘要

This study assesses the optical properties and conductivity of PVA–H3PO4 (polyvinyl alcohol–phosphoric acid) polymer film blend irradiated by gamma (γ) rays. The PVA–H3PO4 polymer film blend was prepared by the solvent-casting method at H3PO4 concentrations of 75 v% and 85 v%, and then irradiated up to 25 kGy using γ-rays from the Cobalt-60 isotope source. The optical absorption spectrum was measured using an ultraviolet–visible spectrophotometer over a wavelength range of 200 to 700 nm. It was found that the absorption peaks are in three regions, namely two peaks in the ultraviolet region (310 and 350 nm) and one peak in the visible region (550 nm). The presence of an absorption peak after being exposed to hυ energy indicates a transition of electrons from HOMO to LUMO within the polymer chain. The study of optical absorption shows that the energy band gap (energy gap) depends on the radiation dose and the concentration of H3PO4 in the polymer film blend. The optical absorption, absorption edge, and energy gap decrease with increasing H3PO4 concentration and radiation dose. The interaction between PVA and H3PO4 blend led to an increase in the conductivity of the resulting polymer blend film.
机译:该研究评估了通过γ(γ)射线照射的PVA-H3PO4(聚乙烯醇 - 磷酸)聚合物膜共混物的光学性质和电导率。通过75V%和85V%的H3PO4浓度的溶剂浇铸方法制备PVA-H3PO4聚合物膜混合物,然后使用来自钴-60同位素源的γ射线照射高达25kGy。使用紫外线可见光光度计在200至700nm的波长范围内测量光学吸收光谱。发现吸收峰位于三个区域,即紫外区域(310和350nm)中的两个峰,并且可见区域中的一个峰(550nm)。暴露于H∞能量后的吸收峰的存在表明电子从聚合物链内的电子转变为Homo至LumO。光学吸收的研究表明,能带隙(能隙)取决于聚合物膜混合物中的辐射剂量和H3PO4的浓度。随着H3PO4浓度和辐射剂量的增加,光学吸收,吸收边缘和能隙降低。 PVA和H3PO4共混物之间的相互作用导致所得聚合物共混膜的导电率的增加。

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