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Thermal treatments and characterization of CZTS thin films deposited using nanoparticle ink

机译:使用纳米粒子墨水沉积的CZTS薄膜的热处理和表征

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The structural, optical, and optoelectronic properties of copper zinc tin sulfide (CZTS) films, deposited by a non-vacuum nanoparticle based approach were studied as a function of different annealing temperatures. The CZTS films for photovoltaic applications were deposited using the doctor blading method using an ink prepared with nanoparticles synthesized using the solvothermal method. Deposited films were annealed at different temperatures in N_2-S atmosphere. The films were characterized using different tools such as X-ray diffraction, scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDXS), ultraviolet-visible spectroscopy, Raman spectroscopy, and photoconductivity. The results showed that the kesterite phase was formed in the temperature range between 400 and 550 ℃. At temperatures beyond 500 ℃, many peaks of binary and ternary phases were detected, probably because of the decomposition of the kesterite layer. The cross section SEM images showed that the film is compact; however, there are isolated voids. The EDXS estimated chemical composition was found to vary with annealing temperature; the nearly stoichiometric film was obtained when annealed at 450 ℃. The optical band gap of the stoichiometric film was 1.6 eV, and it showed photoconductivity.
机译:研究了基于非真空纳米粒子的方法沉积的硫化铜锌锡(CZTS)薄膜的结构,光学和光电性质随不同退火温度的变化。使用刮刀刮涂法,使用由溶剂热法合成的纳米颗粒制备的油墨,沉积用于光伏应用的CZTS膜。在N_2-S气氛中,在不同温度下对沉积的薄膜进行退火。使用不同的工具(例如X射线衍射,扫描电子显微镜(SEM),能量色散X射线光谱法(EDXS),紫外可见光谱法,拉曼光谱法和光电导率)对薄膜进行表征。结果表明,在400〜550℃的温度范围内形成了钾长石相。在超过500℃的温度下,检测到许多二元和三元相峰,可能是由于钾长石层的分解。横截面SEM图像显示该膜致密。但是,有孤立的空隙。发现EDXS估计的化学成分随退火温度而变化。在450℃退火时可获得接近化学计量的薄膜。化学计量膜的光学带隙为1.6eV,显示出光电导性。

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