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首页> 外文期刊>Journal of Electronic Materials >Structure, Surface Morphology, and Optical and Electronic Properties of Annealed SnS Thin Films Obtained by CBD
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Structure, Surface Morphology, and Optical and Electronic Properties of Annealed SnS Thin Films Obtained by CBD

机译:CBD退火SnS薄膜的结构,表面形貌及光学和电子性质

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摘要

SnS thin films were initially coated onto Pyrex substrates by the chemical bath deposition (CBD) method and annealed at various temperatures ranging from 200A degrees C to 600A degrees C for 30 min in nitrogen gas. X-ray diffraction (XRD) analysis revealed that a structural transition from face-centered cubic to orthorhombic occurs when the annealing temperature is over 500A degrees C. The surface morphology of all thin layers was investigated by means of scanning electron microscopy and atomic force microscopy. The elemental composition of Sn and S, as measured by energy dispersive spectroscopy, is near the stoichiometric ratio. Optical properties studied by means of transmission and reflection measurements show an increase in the absorption coefficient with increasing annealing temperatures. The band gap energy is close to 1.5 eV, which corresponds to the optimum for photovoltaic applications. Last, the thermally stimulated current measurements show that the electrically active traps located in the band gap disappear after annealing at 500A degrees C. These results suggest that, once again, annealing as a post-deposition treatment may be useful for improving the physical properties of the SnS layers included in photovoltaic applications. Moreover, the thermo-stimulated current method may be of practical relevance to explore the electronic properties of more conventional industrial methods, such as sputtering and chemical vapor deposition.
机译:首先通过化学浴沉积(CBD)方法将SnS薄膜涂覆到Pyrex基板上,并在200 A到600 A的各种温度下于氮气中退火30分钟。 X射线衍射(XRD)分析表明,当退火温度超过500A时,会发生从面心立方到正交晶的结构转变。通过扫描电子显微镜和原子力显微镜研究了所有薄层的表面形态。 。通过能量色散光谱法测定的Sn和S的元素组成接近化学计量比。通过透射和反射测量研究的光学性质表明,吸收系数随退火温度的升高而增加。带隙能量接近1.5 eV,这对应于光伏应用的最佳能量。最后,热激电流测量表明,在500A的温度下退火后,位于带隙中的电活性陷阱消失了。这些结果表明,作为沉积后处理的退火再一次可用于改善金属的物理性能。光伏应用中包含的SnS层。此外,热激励电流方法对于探索更常规的工业方法(例如溅射和化学气相沉积)的电子特性可能具有实际意义。

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