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Investigation of selenization process of electrodeposited Cu-Zn-Sn precursor for Cu2ZnSnSe4 thin-film solar cells

机译:电沉积Cu2ZnSnSe4薄膜太阳能电池用Cu-Zn-Sn前体的硒化工艺研究

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In this study we present the investigation of Cu2ZnSnSe4 (CZTSe) absorber layers formed using electrochemical co-deposition in the stirred citrate solution. Two different Mo back contacts were tested to evaluate the formation of MoSe2 during selenization of electrodeposited Cu-Zn-Sn (CZT) precursor. Cleaved and focused ion beam made cross-sections of CZT/Mo and CZTSe/MoSe2/Mo layers and surface morphology of CZTSe were studied by scanning microscopy. The chemical composition was determined by x-ray energy dispersive and fluorescence spectroscopy, whereas phase composition was examined by x-ray diffraction and Raman spectroscopy. The formation of MoSe2 strongly depended on the microstructure of Mo and annealing conditions. Possible reasons for different selenization of Mo back contacts used were discussed. Photoluminescence (PL) measurements revealed that characteristics of CZTSe main PL peak were compositional dependent. The highest CZTSe solar cell efficiency obtained was 2.64%. (C) 2015 Elsevier B. V. All rights reserved.
机译:在这项研究中,我们目前对在搅拌的柠檬酸盐溶液中使用电化学共沉积形成的Cu2ZnSnSe4(CZTSe)吸收剂层的研究。测试了两个不同的Mo背触点,以评估在电沉积的Cu-Zn-Sn(CZT)前体硒化过程中MoSe2的形成。通过扫描显微镜研究了CZT / Mo和CZTSe / MoSe2 / Mo层的经切割和聚焦的离子束横截面以及CZTSe的表面形态。化学成分通过X射线能量色散和荧光光谱测定,而相成分通过X射线衍射和拉曼光谱检查。 MoSe2的形成在很大程度上取决于Mo的微观结构和退火条件。讨论了使用不同的Mo背触点硒化的可能原因。光致发光(PL)测量表明CZTSe主PL峰的特征与成分有关。获得的最高CZTSe太阳能电池效率为2.64%。 (C)2015 Elsevier B. V.保留所有权利。

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