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Fluorine-induced improvement of structural and optical properties of CdTe thin films for solar cell efficiency enhancement

机译:氟诱导的CdTe薄膜结构和光学性能的改善,以提高太阳能电池的效率

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摘要

CdTe thin films of different thicknesses were electrodeposited and annealed in air after different chemical treatments to study the effects of thickness and the different chemical treatments on these films for photovoltaic applications. The thicknesses of the samples range from 1.1 μm to 2.1 μm and the annealing process was carried out after prior CdCl2 treatment and CdCl2+CdF2 treatment as well as without any chemical treatment. Detailed optical and structural characterisation of the as-deposited and annealed CdTe thin films using UV-Vis spectrophotometry and x-ray diffraction reveal that incorporating fluorine in the well-known CdCl2 treatment of CdTe produces remarkable improvement in the optical and structural properties of the materials. This CdCl2+CdF2 treatment produced solar cell with efficiency of 8.3% compared to CdCl2 treatment, with efficiency of 3.3%. The results reveal an alternative method of post-deposition chemical treatment of CdTe which can lead to the production of CdTe-based solar cells with enhanced photovoltaic conversion efficiencies compared to the use of only CdCl2.\udKeywords: CdTe; CdCl2;
机译:经过不同的化学处理后,将不同厚度的CdTe薄膜在空气中进行电沉积和退火,以研究厚度和不同化学处理对这些薄膜在光伏应用中的影响。样品的厚度在1.1μm至2.1μm的范围内,并且在先前的CdCl2处理和CdCl2 + CdF2处理以及没有任何化学处理之后进行退火工艺。使用UV-Vis分光光度法和x射线衍射对沉积和退火后的CdTe薄膜进行详细的光学和结构表征,发现在著名的CdCl2处理CdTe中掺入氟可显着改善材料的光学和结构性能。与CdCl2处理相比,这种CdCl2 + CdF2处理产生的太阳能电池的效率为8.3%,效率为3.3%。结果表明,与仅使用CdCl2相比,CdTe的沉积后化学处理的另一种方法可导致生产CdTe基太阳能电池,且具有更高的光电转换效率。氯化镉;

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