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Structural and Optical Properties of CuS-ZnS Nanocomposite Films Containing Different at of Zn

机译:CUS-ZnS纳米复合膜的结构和光学性质,其含有不同的Zn%

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CuS-ZnS nanocomposite films were synthesized through the interaction of H_2S gas with nanostructured Cu-Zn films deposited through vacuum evaporation technique at a relatively high pressure of an inert gas. The film samples were synthesized for four different atom% of Zn. XPS analysis showed that both Cu and Zn existed in the +2 oxidation state in the samples. XRD patterns showed that in the samples, CuS and ZnS existed as separate phases and hence the samples were copper sulphide-zinc sulphide nanocomposite films. Also, HRTEM image and SAED pattern of the sample containing the highest atom% of Zn confirmed the co-existence of both CuS and ZnS phases in the sample. The grain size of CuS which was the major phase in the CuS-ZnS nanocomposite films decreased with increase in the atom% of Zn. Red shift of the Raman modes of CuS phase in the samples was an indication of substitutional doping of Zn into the CuS lattice. Analysis of optical absorption and reflection spectra of the samples indicated the possible application of the films as window layer in solar cells.
机译:通过H_2S气体与纳米结构Cu-Zn膜的相互作用在惰性气体的相对高压下通过真空蒸发技术的相互作用来合成CUS-ZnS纳米复合膜。将薄膜样品用于四种不同原子%的Zn。 XPS分析显示Cu和Zn在样品中的+2氧化态中存在。 XRD图案显示,在样品中,CU和Zns存在于单独的相中,因此样品是硫化铜 - 硫化锌纳米复合膜。此外,含有最高原子%Zn的样品的HRTEM图像和Saed图案证实了样品中的CU和ZnS相的共存。 CUS的晶粒尺寸随着CUS-ZnS纳米复合膜中的主要相,随着Zn的原子%的增加而降低。样品中CUS相的拉曼模式的红色偏移表现为Zn中的Zn掺杂到CUS格子中的指示。样品的光学吸收和反射光谱分析表明,在太阳能电池中可能施加薄膜作为窗口层。

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