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Synthesis and optical properties of alizarin yellow GG-Cu(II)-PVA nanocomposite film as a selective filter for optical applications

机译:茜素黄GG-Cu(II)-PVA纳米复合膜作为光学应用选择性滤波的合成与光学性能

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In this paper, alizarin yellow GG (AYGG) – CuCl2doped with polyvinyl alcohol (PVA) has been successfully synthesized. This composite has spherical shape particles with amorphous structure. Thermal analysis indicates that there is an endothermic change, which is related to the glass transition. In addition, the coordination between the transition metal Cu(II) ion and AYGG (ligand) occurs via oxygen atoms of phenolic hydroxyl groups and a nitrogen atom of azo moiety from the two ligand molecules. AYGG – Cu(II) doped PVA has high dispersion for high frequency lights and vice versa for low frequency lights. Therefore, it is concluded that AYGG – Cu(II) doped PVA film is suggested as a selective filter for ultraviolet and high frequency visible lights for many optical applications like protective shields for solar cells and packaging.
机译:本文已成功地合成茜素黄色GG(AYGG) - 用聚乙烯醇(PVA)的CuCl2Doped。该复合材料具有具有无定形结构的球形颗粒。热分析表明存在与玻璃过渡有关的吸热变化。另外,过渡金属Cu(II)离子和Aygg(配体)之间的配位通过酚羟基的氧原子和来自两个配体分子的偶氮部分的氮原子发生。 Aygg - Cu(ii)掺杂的PVA对于高频灯具有高频率,对低频灯反之亦然。因此,得出结论是,掺杂Aygg - Cu(II)掺杂的PVA薄膜作为紫外线和高频可见光的选择过滤器,用于许多光学应用,如用于太阳能电池和包装的保护罩。

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