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Characterization of CIGS thin films fabricated from nanoparticles under selenization process

机译:硒化过程中纳米颗粒制成的CIGS薄膜的表征

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In the present report, the synthesis process of CuIn_xGa_(1-x)Se_2 nanoparticles as an absorption layer in tetraethylene glycol using metallic chloride and Se powder for the purpose of solar cell application. Whole processes were performed under glovebox condition. Nanoparticles sizes were achieved via manipulation of reaction temperature and various precursor concentrations. CuIn_xGa_(1-x)Se_2 or CIGS nanoparticles with diameters in the range of about 20-50 nm were prepared via polyol route and purified through centrifugation and precipitation processes. Then nanoparticles were dispersed to obtain stable inks that could be directly used for thin-film deposition via spin coating. Then, CIGS nanoparticles were coated on soda lime glass for fabrication of inorganic thin film solar cell via spin coating as a film. In those devices, the prepared films yielded relatively dense CuInGaSe_2 films with some void spaces. For elimination of the void spaces, the nanocrystals were exposed to selenium vapor atmosphere. Filling the voids with selenium can lead to the fabrication of CIGS absorptive layers having good dense structures and high efficiency. CIGS thin films were characterized by various analytical tools, such as XRD, UV-Visible spectroscopy and SEM imaging.
机译:在本报告中,Cuin_xga_(1-x)Se_2纳米颗粒的合成方法是使用金属氯化物和Se粉末作为太阳能电池应用的金属氯化物和Se粉末中的吸收层。整个过程在手套盒状况下进行。通过操纵反应温度和各种前体浓度来实现纳米粒子尺寸。通过多元醇途径制备具有约20-50nm的直径的Cuin_xga_(1-x)Se_2或具有直径的纳米颗粒,并通过离心和沉淀过程纯化。然后分散纳米颗粒以获得稳定的油墨,其可通过旋涂可直接用于薄膜沉积。然后,将CIGS纳米颗粒涂覆在钠钙玻璃上,通过作为薄膜通过旋涂制备无机薄膜太阳能电池。在这些装置中,制备的薄膜具有相对致密的Cucingase_2膜,其具有一些空隙空间。为了消除空隙空间,纳米晶体暴露于硒蒸汽气氛。用硒填充空隙可以导致具有良好致密结构和高效率的CIGS吸收层的制造。 CIGS薄膜的特征在于各种分析工具,例如XRD,UV可见光谱和SEM成像。

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