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NON-DESTRUCTIVE ANALYSIS METHOD FOR DETERMINING THE QUALITY OF A SOLAR CELL, AND APPLICATION OF THE SAME

机译:用于确定太阳能电池质量的非破坏性分析方法及其应用

摘要

Known analysis methods do not enable a correlation to be identified between the structural properties of a semiconductor layer and the electrical properties of a solar cell mounted on the same. The inventive analysis method is based on rapid and non-destructive Raman spectroscopy by which means significant structural parameters (FWHM) relating to the structural properties of a processed absorber layer can be determined in a solar cell. The knowledge of such structural parameters enables a correlation to be established with electric parameters (Voc) which are relevant in terms of the expected electrical properties of the finished processed solar cell. A linear correlation is indicated between the parameters with a saturation region of satisfying electrical properties and a threshold value of a region of unsatisfying electrical properties of the solar cell. The inventive analysis method thus enables the electrical quality of the finished processed solar cell to be determined, exclusively from the structural parameters of the absorber layer. Accordingly, it can be decided in situ, in a production line for, for example, polycrystalline solar cells with heterojunctions, whether an absorber layer analysed ex situ can be reprocessed or must be extracted.
机译:已知的分析方法不能识别半导体层的结构特性和安装在其上的太阳能电池的电特性之间的相关性。本发明的分析方法基于快速无损拉曼光谱,通过该光谱法,可以在太阳能电池中确定与加工后的吸收层的结构特性有关的重要结构参数(FWHM)。这种结构参数的知识使得能够建立与电参数(Voc)的相关性,该电参数就成品的已加工太阳能电池的预期电特性而言是相关的。在具有满足电特性的饱和区域的参数与太阳能电池的不满足电特性的区域的阈值之间指示线性相关。因此,本发明的分析方法使得能够仅从吸收体层的结构参数确定完成的加工太阳能电池的电质量。因此,可以在例如具有异质结的多晶太阳能电池的生产线中原位确定是否可以对原位分析的吸收体层进行再处理或必须对其进行提取。

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