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Electron paramagnetic resonance as a probe of technologically relevant processing effects on CdTe solar cell materials

机译:电子顺磁共振探究CdTe太阳能电池材料的技术相关处理效果

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The performance of polycrystalline thin film CdTe solar cells is limited by as yet poorly understood deep level defects which serve as recombination centers. Electron paramagnetic resonance (EPR) has unrivaled analytical power and sensitivity in the identification of deep level defects in semiconductors; however, very little EPR literature exists with regard to technologically relevant processing of present day polycrystalline CdTe solar cells. In this study we explore the effects of several features important in these present day processing techniques: (1) effects of CdCl2 etching and (2) effects of Cu on the CdTe. Cu is widely used with CdTe solar cells and is thought to play a significant role in CdTe solar cells performance. Although the EPR spectra in all the cases we explored are dominated by a substitutional Mn site signal, our results are clearly sensitive to multiple changes caused by the aforementioned processing parameters.
机译:多晶薄膜CdTe太阳能电池的性能受到至今尚不了解的作为复合中心的深层缺陷的限制。电子顺磁共振(EPR)在鉴定半导体深层缺陷方面具有无与伦比的分析能力和灵敏度;然而,关于当今的多晶CdTe太阳能电池在技术上相关的处理,几乎没有EPR文献。在这项研究中,我们探索了在当今处理技术中重要的几个功能的影响:(1)CdCl2蚀刻的影响和(2)Cu对CdTe的影响。 Cu被广泛用于CdTe太阳能电池,并且被认为在CdTe太阳能电池的性能中起着重要的作用。尽管在我们探索的所有情况下,EPR谱都以锰位点取代信号为主,但我们的结果显然对上述加工参数引起的多种变化敏感。

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