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Correlation of Hydrogen Dilution Profiling to Material Structure and Device Performance of Hydrogenated Nanocrystalline Silicon Solar Cells

机译:氢稀释谱与氢化纳米晶硅太阳能电池材料结构和器件性能的相关性

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We present a systematic study on the correlation of hydrogen dilution profiles to structural properties materials and solar cell performance in nc-Si:H solar cells. We deposited nc-Si:H single-junction solar cells using a modified very high frequency (VHF) glow discharge technique on stainless steel substrates with various profiles of hydrogen dilution in the gas mixture during deposition. The material properties were characterized using Raman spectroscopy, X-TEM, AFM, and C-AFM. The solar cell performance correlates well with the material structures. Three major conclusions are made based on the characterization results. First, the optimized nc-Si:H material does not show an incubation layer, indicating that the seeding layer is well optimized and works as per design. Second, the nanocrystalline evolution is well controlled by hydrogen dilution profiling in which the hydrogen dilution ratio is dynamically reduced during the intrinsic layer deposition. Third, the best nc-Si:H single-junction solar cell was made using a proper hydrogen dilution profile, which caused a nanocrystalline distribution close to uniform throughout the thickness, but with a slightly inverse nanocrystalline evolution. We have used the optimized hydrogen dilution profiling and improved the nc-Si:H solar cell performance significantly. As a result, we have achieved an initial active-area cell efficiency of 9.2% with a nc-Si:H single-junction structure, and 15.4% with an a-Si:H/a-SiGe:H/nc-Si:H triple-junction solar cell structure.
机译:我们目前对氢稀释曲线与nc-Si:H太阳能电池的结构特性材料和太阳能电池性能之间的相关性进行系统研究。我们使用改进的甚高频(VHF)辉光放电技术在不锈钢衬底上沉积了nc-Si:H单结太阳能电池,该衬底具有沉积过程中混合气体中氢稀释的各种曲线。使用拉曼光谱,X-TEM,AFM和C-AFM表征材料的性能。太阳能电池的性能与材料结构密切相关。根据表征结果得出三个主要结论。首先,经过优化的nc-Si:H材料没有显示孵化层,这表明种子层得到了优化,并且可以按照设计工作。第二,通过氢稀释分布图可以很好地控制纳米晶的演化,其中在本征层沉积过程中氢稀释率会动态降低。第三,最好的nc-Si:H单结太阳能电池是使用适当的氢稀释曲线制成的,这会导致纳米晶体分布在整个厚度上接近均匀,但纳米晶体的发展却略有相反。我们使用了优化的氢稀释曲线,并显着改善了nc-Si:H太阳能电池的性能。结果,采用nc-Si:H单结结构时,我们的初始有源区电池效率为9.2%,采用a-Si:H / a-SiGe:H / nc-Si:则为15.4%。 H三结太阳能电池结构。

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