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Raman microprobe characterization of electrodeposited S-rich CuIn(S,Se)2 for photovoltaic applications: Microstructural analysis

机译:用于光伏应用的电沉积富S的CuIn(S,Se)2的拉曼显微探针表征:微结构分析

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摘要

This article reports a detailed Raman scattering and microstructural characterization of S-rich CuIn(S,Se)2 absorbers produced by electrodeposition of nanocrystalline CuInSe2 precursors and subsequent reactive annealing under sulfurizing conditions. Surface and in-depth resolved Raman microprobe measurements have been correlated with the analysis of the layers by optical and scanning electron microscopy, x-ray diffraction, and in-depth Auger electron spectroscopy. This has allowed corroboration of the high crystalline quality of the sulfurized layers. The sulfurizing conditions used also lead to the formation of a relatively thick MoS2 intermediate layer between the absorber and the Mo back contact. The analysis of the absorbers has also allowed identification of the presence of In-rich secondary phases, which are likely related to the coexistence in the electrodeposited precursors of ordered vacancy compound domains with the main chalcopyrite phase, in spite of the Cu-rich conditions used in the growth. This points out the higher complexity of the electrodeposition and sulfurization processes in relation to those based in vacuum deposition techniques.
机译:本文报道了通过电沉积纳米晶态CuInSe2前驱体并随后在硫化条件下进行反应性退火生产的富S的CuIn(S,Se)2吸收剂的详细拉曼散射和微观结构表征。通过光学和扫描电子显微镜,x射线衍射和深度俄歇电子能谱分析,已将表面和深度分辨拉曼显微探针测量与各层分析相关联。这证实了硫化层的高结晶质量。所使用的硫化条件还导致在吸收剂和Mo背触点之间形成相对较厚的MoS2中间层。吸收剂的分析还允许鉴定富In的第二相的存在,尽管使用了富Cu的条件,这可能与有序空位化合物域的电沉积前体与主要黄铜矿相共存有关。在成长中。这表明与基于真空沉积技术的电沉积和硫化工艺相比,电沉积和硫化工艺的复杂性更高。

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