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Photophysical and electronic properties of Congo red dye embedded in polyvinyl alcohol as an efficient laser optical limiter: enhancement of the electrical conductivity and dielectric properties

机译:将刚果红染料嵌入聚乙烯醇中作为高效激光光限制器的光物理和电子性能:增强导电性和介电性能

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摘要

Abstract High-quality polymeric composite films containing Congo red dye and PVA were prepared using the casting technique. The proposed Cr-doped PVA composites were examined using XRD, UV–visible optical, dielectric, and optical limiting effect techniques. The XRD patterns of CR-doped PVA composite films display diffraction peaks belonging to CR organic dye. There was a broadening and reduction of the initial peak intensity in polymer composite films at higher doping concentrations. The band edge of CR: PVA composites reduced with a massive shift from 4.63 to 1.86 eV, where Congo red controls the energy bandgap of the PVA polymer. Dielectric permittivity diminishes with increasing the frequency and achieves constant values at higher frequencies through the relation between the electric dipole and the electric field differences. Increasing the percentage ratio of the CR doping enhances the electrical conductivity and dielectric permittivities due to the large size of the CR molecules. The solid optical limiting of the CR-doped PVA composites is determined using different laser sources of 632.8 and 532 nm wavelengths. The excellent obtained results imply that CR: PVA composite films are very significant for applying large-scale CUT-OFF laser filters for medical optical and electronic device systems.
机译:摘要 采用流延技术制备了含有刚果红染料和PVA的高质量高分子复合薄膜。采用XRD、紫外-可见光、介电和光学极限效应技术对所提出的Cr掺杂PVA复合材料进行了研究。CR掺杂PVA复合薄膜的XRD图谱显示出属于CR有机染料的衍射峰。在较高掺杂浓度下,聚合物复合薄膜的初始峰强度有所增宽和降低。CR:PVA复合材料的带缘从4.63 eV大幅变小到1.86 eV,刚果红控制着PVA聚合物的能带隙。介电常数随着频率的增加而减小,并通过电偶极子和电场差之间的关系在较高频率下达到恒定值。由于CR分子的尺寸较大,增加CR掺杂的百分比比可增强电导率和介电常数。使用波长为632.8和532 nm的不同激光源测定了CR掺杂PVA复合材料的固体光学极限。结果表明,CR:PVA复合薄膜对于大规模CUT-OFF激光滤光片在医疗光学和电子器件系统中的应用具有重要意义。

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