首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Nanocauliflower like structure of CdS thin film for solar cell photovoltaic applications: In situ tin doping by chemical bath deposition technique
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Nanocauliflower like structure of CdS thin film for solar cell photovoltaic applications: In situ tin doping by chemical bath deposition technique

机译:纳米绦虫等CDS薄膜的结构用于太阳能电池光伏应用:用化学浴沉积技术原位锡掺杂

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摘要

We report on surface morphology changes of in situ tin (Sn) doped cadmium sulphide (CdS) thin film nanostructures prepared on a glass substrate using the chemical bath deposition (CBD) technique. Sn-doping in the presence of triethanolammine (TEOA) as complexing agent resulted in the formation of nanocauliflower like structure of CdS thin film. X-ray diffraction (XRD) results indicated that Sn-doped CdS thin films show a hexagonal structure with a preferential orientation growth along,the c-axis (002). The Sn~(4+) doping markedly influenced on the evolution of the CdS nanostructures, resulting in the forma tion of nanocracks due to the substitution of Cd~(2+) ions by larger-than-host Sn~(4+) ions as well as a drastic increase in electrical conductivity. An improved optical transmittance property was also achieved by the Sn-doping with no considerable change in the energy band gap. Moreover, a large improvement in both electrical conductivity and photosensitivity observed in the Sn-doped CdS thin films suggests that Sn-doping is highly effective for applications as window/buffer layers in future solar cell applications. Structural evolution of cauliflower like nanostructures are also discussed in this paper.
机译:我们报告了使用化学浴沉积(CBD)技术在玻璃基板上制备的原位锡(Sn)掺杂的硫化镉(Cds)薄膜纳米结构的表面形态变化。在三乙醇氨基(TeoA)存在下作为络合剂的Sn-掺杂导致形成Cds薄膜的纳米毛杆状的形成。 X射线衍射(XRD)结果表明,Sn掺杂的Cds薄膜显示出具有优先取向生长的六边形结构,C轴(002)。 SN〜(4+)掺杂显着影响CDS纳米结构的演化,导致纳米裂纹的含量由于较大于宿主的Sn〜(4+)离子的CD〜(2+)离子取代以及导电性的急剧增加。通过在能带隙中没有相当大的变化,还可以实现改善的光学透射率特性。此外,在SN掺杂CDS薄膜中观察到的电导率和光敏性的大大提高表明,Sn-掺杂对于在未来的太阳能电池应用中作为窗口/缓冲层的应用非常有效。本文还讨论了纳米结构等结构的结构演变。

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