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Nanocomposites based on chalcogenide glass semiconductor and metal phtalocyanine

机译:基于硫族化物玻璃半导体和金属酞菁的纳米复合材料

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A novel technique for the fabrication of chalcogenide nanocomposites based on chalcogenide glass (ChGs) and manganese phtalocyanine (MnPc) is presented. The structural and optical characterization of obtained composites in comparison to chalcogenide glass was carried out. Two-component nanocomposite films were obtained by simultaneous vacuum co-condensation of the ChGs components and organic dye on the substrate surface. The spatial arrangement of the two evaporators and substrates in a vacuum chamber allowed obtain samples with varied composite ratio. ChGs films optical band gap values were not sufficiently changed with growth rate and films thickness. It was shown that in case of dye concentration reduction for more than three orders specific absorption per dye molecule will be decreased by two orders. At greater concentrations solid solution of dye is clusterized, dye is distinctly aggregated and the absorbance is nearly the same as of the pure dye in the form of thin fdm. Therefore composite properties changes from cluster solution into molecular solution and thus dye molecule absorbance decrease. Relation of specific dye absorption on composite concentration was explained as electrons exchange with donor and acceptor subsystems and corresponding electron levels population. Sketch of electron density diagrams and corresponding bonds schema for composites are presented. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:提出了一种基于硫属化物玻璃(ChGs)和酞菁锰(MnPc)的硫属化物纳米复合材料的制备新技术。与硫属化物玻璃相比,对所得复合材料进行了结构和光学表征。通过同时在基材表面上同时将ChGs组分和有机染料真空共缩合获得两组分纳米复合膜。真空室中两个蒸发器和基板的空间布置允许获得具有变化的复合比的样品。 ChGs薄膜的光学带隙值没有随生长速率和薄膜厚度充分变化。已经表明,在染料浓度降低超过三个数量级的情况下,每个染料分子的比吸收将降低两个数量级。在较高浓度下,染料的固溶体会聚集,染料会明显聚集,并且吸光度几乎与纯fdm形式的纯染料相同。因此,复合性质从团簇溶液变为分子溶液,因此染料分子的吸光度降低。特定染料吸收与复合物浓度的关系解释为与供体和受体子系统的电子交换以及相应的电子能级数。给出了复合材料的电子密度图和相应的键结构示意图。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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