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首页> 外文期刊>Optical Materials >Optical properties upon ZnS film thickness in ZnS/ITO/glass multilayer films by ellipsometric and spectrophotometric investigations for solar cell and optoelectronic applications
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Optical properties upon ZnS film thickness in ZnS/ITO/glass multilayer films by ellipsometric and spectrophotometric investigations for solar cell and optoelectronic applications

机译:ZnS / ITO /玻璃多层膜的ZnS膜厚度在ZnS膜厚度上通过椭圆和光学质测定的太阳能电池和光电应用研究

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摘要

ZnS film with various thicknesses (d approximate to 100-350 nm) deposited on the ITO coated glass substrate (ZnS/ITO/glass) by an electron beam evaporation process was examined structurally and optically. Different techniques were used to specify and analyze the optical characteristics of the film, such as spectroscopic ellipsometric (SE) and spectrophotometric (SP). The ZnS/ITO/glass films exhibit a wurtzite hexagonal type structure entrenched in the crystalline background of ITO film. XRD analysis revealed changes in structural and microstructural parameters, such as a decrease in lattice parameters, a reduction in microstrain, and a raise in crystallite size. The optical constants and the optical energy gap were extracted from SE by constructing an ellipsometric optical model, while the optical constants were calculated from SP by using Murmann's exact equations. It was seen that the overall behaviour of the refractive index n of the ZnS/ITO/glass films obtained from SE and SP increases with an increase in ZnS layer thickness, which is attributed to the increment of the size of the grain. It was additionally found that, the overall behaviour of the extinction coefficient k of the ZnS/ITO/glass films increases, when the thickness of the ZnS layer increments. Also, the direct optical transition was observed with energy band gap diminishes from 3.423 (d = 100 nm) eV to 3.287 eV (d = 350 nm) that is because of the rise in grain size, the decrease in microstrain, and reduction in lattice constants. Furthermore, it was found that the deposition of ZnS on ITO coated glass substrate increases the absorption compared with the ZnS/glass film and then reduces the transmittance and energy band gap. It was concluded that as the ZnS thickness increases, the optical constants of ZnS/ITO/glass films enhance. Finally, the overall behaviour of the optical constants within the experimental error range of the ZnS/ITO/glass films with different ZnS layer thicknesses obtained by SE was found to be consistent with that calculated from SP measurement.
机译:在结构上和光学上通过电子束蒸发过程沉积在ITO涂覆的玻璃基板(ZnS / ITO /玻璃)上的各种厚度(D近似为100-350nm)的ZnS膜。使用不同的技术来指定和分析膜的光学特性,例如光谱椭圆形(SE)和分光光度法(SP)。 ZnS / ITO /玻璃膜表现出在ITO薄膜的晶体背景中根深蒂固的紫立岩六角形型结构。 XRD分析显示结构和微观结构参数的变化,例如晶格参数的降低,微晶的减少,以及微晶尺寸的提升。通过构造椭圆形光学模型从SE中提取光学常数和光学能量间隙,而通过使用MURMANN的确切方程,从SP计算光学常数。可以看出,从SE和SP获得的ZnS / ITO /玻璃膜的折射率N的总体行为随着ZnS层厚度的增加而增加,这归因于晶粒尺寸的增量。另外发现,当ZnS层增量的厚度时,ZnS / ITO /玻璃膜的消光系数k的整体行为增加。此外,通过能带隙观察到直接光学转变从3.423(d = 100nm)EV中减少至3.287eV(d = 350nm),这是因为晶粒尺寸的上升,微纹理的减少和晶格的减少常数。此外,发现与ZnS /玻璃膜相比,ZnS对ITO涂覆的玻璃基板的沉积增加了吸收,然后降低了透射率和能带隙。结论是,随着ZnS厚度的增加,ZnS / ITO /玻璃膜的光学常数增强。最后,发现通过SE获得的不同ZnS层厚度的ZnS / ITO /玻璃膜的实验误差范围内的光学常数的总体行为与来自SP测量计算的ZnS层厚度相一致。

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