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Classification of recombination-active defects in multicrystalline solar cells made from upgraded metallurgical grade (UMG) silicon

机译:由升级冶金级(UMG)硅制成的多晶太阳能电池中复合活性缺陷的分类

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In this contribution a classification of recombination active defects in multicrystalline silicon solar cells made from electronic grade (eg) and upgraded metallurgical grade (umg) silicon feedstock is introduced. On a macroscopic scale the classification is performed by using forward and reverse biased electroluminescence imaging (EL / ReBEL) and imaging of sub-band defect luminescence (ELsub). The luminescence behavior due to structural defects already present in the wafer can be divided into two groups based on their recombination and prebreakdown behavior. As a first step towards a more detailed analysis of the cause for these differences, the classification was also performed on microscopic scale. For this ReBEL and ELsub was performed under an optical microscope (μReBEL/μELsub) and EL was correlated to Electron Beam Induced Current (EBIC) in an electron microscope. All defect types observed on a macroscopic scale were observed on a microscopic scale; however, a third defect type had to be introduced. Finally, we propose a qualitative model for the different classified types of recombination active defect structures that can explain the observed recombination and prebreakdown behavior.
机译:在该贡献中,介绍了由电子级(例如)和升级冶金级(umg)硅原料制成的多晶硅太阳能电池中复合活性缺陷的分类。在宏观尺度上,分类是通过使用正向和反向偏置电致发光成像(EL / ReBEL)和子带缺陷发光成像(ELsub)进行的。由于晶片中已经存在的结构缺陷而引起的发光行为可根据其重组和预击穿行为分为两组。作为对导致这些差异的原因进行更详细分析的第一步,分类也是在微观尺度上进行的。为此,在光学显微镜下(μReBEL/μELsub)执行ReBEL和ELsub,并且在电子显微镜中将EL与电子束感应电流(EBIC)相关。在宏观尺度上观察到的所有缺陷类型都在微观尺度上观察到。但是,必须引入第三种缺陷类型。最后,我们为重组活性缺陷结构的不同分类类型提出了一个定性模型,该模型可以解释观察到的重组和预分解行为。

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