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Studying the Effect of Metallic Precursor Concentration on the Structural, Optical, and Morphological Properties of Zinc Sulfide Thin Films in Photovoltaic Cell Applications

机译:金属前体浓度对光伏电池应用中硫化锌薄膜结构,光学和形态学性能的影响

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Thin films of zinc sulfide (ZnS) with different concentrations of zinc acetate have been made by chemical bath deposition technique in acidic medium (pH?=?5) on glass substrate using zinc acetate and sodium sulfide as sources of Zn +2 ion and S ?2 ion, respectively, and ethylenediaminetetraacetate as complexing agents and sulfuric acid to adjust pH value at a constant deposition temperature of 85°C, and the deposition time of 90 minutes was used. The effect of the concentration of metallic precursor on the structural, morphological, and optical properties of chemical bath deposited zinc sulfide thin films was investigated in this study. The XRD result confirmed mixed phases of crystalline and amorphous structure dominating other phases, which is witnessed by larger crystallite size than other phases. It reveals that the thin films had hexagonal structure at the medium concentration with preferred orientation along (111) plane, and at lower and higher concentration, it showed that film has an amorphous structure in nature. The crystallinity of all the phases significantly enlarged with increasing the zinc precursor concentration. The SEM micrographs showed high-pitched edged irregular-shaped grains covering the substrate with pinholes and bangs. The optical properties investigated by the UV-VIS spectrometer specified a decrease in the optical bandgap of the films between 3.5?eV and 2.6?eV as the zinc acetate concentration in the solution increased from 0.1 to 0.2?M. It showed that the zinc sulfide had high absorption in the UV radiation. The main finding of this paper is that metallic precursor concentration has a significant role in the optical, morphological, and microstructural properties of the cobalt sulfide thin films, which are most suitable for photovoltaic applications.
机译:用不同浓度的锌乙酸锌硫化锌(ZnS)薄膜已通过在酸性介质中的玻璃基板上化学浴沉积技术(pH值=?5)使用了由锌乙酸乙酯和硫化钠以Zn +2离子和S的源?2离子,分别与被用来作为乙二胺络合剂和硫酸在85℃的恒定沉积温度以调节pH值,和90分钟的沉积时间。金属前体的浓度的化学浴的结构,形态,和光学性能的影响沉积的硫化锌薄膜在本研究中调查。的XRD结果确认结晶和无定形结构支配其它相,这是由大的晶粒尺寸比其他相见证了混合相。它揭示了薄膜在介质浓度与择优取向沿(111)面,并且在较低和较高浓度时有六方晶结构,它表明,膜具有在自然界中的无定形结构。所有相的结晶度与提高的锌前体浓度显著扩大。在SEM显微照片显示高音调边缘不规则形状的颗粒覆盖有针孔和刘海基板。光学特性调查由UV-VIS分光计指定在3.5?eV和2.6之间的薄膜的光学带隙的降低?电子伏特作为在溶液中的醋酸锌浓度从0.1增加至0.2 M +。这表明,硫化锌曾在紫外线辐射高吸收。本文的主要发现是,金属前体浓度有在硫化钴薄膜的光学,形态学,和微结构性质,这是最适合用于光伏应用一个显著作用。

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