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Optical and Structural Characterization of Cd-Free Buffer Layers Fabricated by Chemical Bath Deposition

机译:由化学浴沉积制造的无CD缓冲层的光学和结构表征

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Chemical bath deposition (CBD) is a suitable, inexpensive, and versatile synthesis technique to fabricate different semiconductors under soft conditions. In this study, we deposited Zn(O;OH)S thin films by the CBD method to analyze the effect of the number of thin film layers on structural and optical properties of buffer layers. Thin films were characterized by X-ray diffraction (XRD) and UV-Vis transmittance measurements. Furthermore, we simulated a species distribution diagram for Zn(O;OH)S film generation during the deposition process. The optical results showed that the number of layers determined the optical transmittance of buffer layers, and that the transmittance reduced from 90% (with one layer) to 50% (with four layers) at the visible range of the electromagnetic spectrum. The structural characterization indicated that the coatings were polycrystalline (α-ZnS and β-Zn(OH)2 to four layers). Our results suggest that Zn(O;OH)S thin films could be used as buffer layers to replace CdS thin films as an optical window in thin-film solar cells.
机译:化学浴沉积(CBD)是一种合适,廉价,通用的合成技术,用于在柔软条件下制造不同的半导体。在本研究中,通过CBD方法沉积Zn(O; OH)S薄膜,分析薄膜层数对缓冲层的结构和光学性质的影响。通过X射线衍射(XRD)和UV-Vis透射率测量以薄膜为特征。此外,我们在沉积过程中模拟了Zn(O; OH)S薄膜的物种分布图。光学结果表明,层数确定缓冲层的光学透射率,并且在电磁谱的可见范围内,透射率在50%(具有一层)到50%(具有四层)。结构表征表明涂层是多晶(α-ZnS和β-Zn(OH)2至4层)。我们的研究结果表明,Zn(O; OH)的薄膜可以用作缓冲层,以将Cds薄膜替换为薄膜太阳能电池中的光学窗口。

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