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Effects of Cd1-xZnxS alloy composition and post-deposition air anneal on ultra-thin CdTe solar cells produced by MOCVD

机译:Cd1-xZnxS合金组成和沉积后空气退火对MOCVD生产的超薄CdTe太阳能电池的影响

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摘要

Ultra-thin CdTe:As/Cd1-xZnxS photovoltaic solar cells with an absorber thickness of 0.5 µm were deposited by metal-organic chemical vapour deposition on indium tin oxide coated boro-aluminosilicate substrates. The Zn precursor concentration was varied to compensate for Zn leaching effects after CdCl2 activation treatment. Analysis of the solar cell composition and structure by X-ray photoelectron spectroscopy depth profiling and X-ray diffraction showed that higher concentrations of Zn in the Cd1-xZnxS window layer resulted in suppression of S diffusion across the CdTe/Cd1-xZnxS interface after CdCl2 activation treatment. Excessive Zn content in the Cd1-xZnxS alloy preserved the spectral response in the blue region of the solar spectrum, but increased series resistance for the solar cells. A modest increase in the Zn content of the Cd1-xZnxS alloy together with a post-deposition air anneal resulted in an improved blue response and an enhanced open circuit voltage and fill factor. This device yielded a mean efficiency of 8.3% over 8 cells (0.25 cm2 cell area) and best cell efficiency of 8.8%.
机译:通过金属有机化学气相沉积在铟锡氧化物涂覆的硼铝硅酸盐衬底上沉积吸收体厚度为0.5 µm的超薄CdTe:As / Cd1-xZnxS光伏太阳能电池。改变Zn前驱物浓度以补偿CdCl 2活化处理后的Zn浸出作用。通过X射线光电子能谱深度剖析和X射线衍射分析太阳能电池的成分和结构,发现Cd1-xZnxS窗口层中较高的Zn浓度可抑制Sd在CdCl2后穿过CdTe / Cd1-xZnxS界面扩散。活化治疗。 Cd1-xZnxS合金中过量的Zn含量保留了太阳光谱蓝色区域的光谱响应,但增加了太阳能电池的串联电阻。 Cd1-xZnxS合金中Zn含量的适度增加以及沉积后的空气退火导致改善的蓝光响应以及增强的开路电压和填充因子。该设备在8个电池(0.25 cm2的电池面积)上产生的平均效率为8.3%,最佳电池效率为8.8%。

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