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Properties of Cu(In,Ga)Se_2 Thin Films and Solar Cells Deposited by Hybrid Process

机译:杂化沉积Cu(In,Ga)Se_2薄膜和太阳能电池的性能

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摘要

Cu(In,Ga)Se_2 solar cells were fabricated using a hybrid cosputtering/evaporation process, and efficiencies as high as 12.4% were achieved. The films were characterized by energy-dispersive X-ray spectroscopy, glancing incidence X-ray diffraction, scanning electron microscopy, auger electron spectroscopy, and transmittance and reflectance spectroscopy, and their properties were compared to the ones of films deposited by coevaporation. Even though the films were relatively similar, the ones deposited by the hybrid process tend to have smaller grains with a slightly preferred orientation along the (112) axis and a rougher surface. Both types of films have uniform composition through the depth. Characterization of these films by variable angle of incidence spectroscopic ellipsometry allowed for the calculation of the position of the critical points, via calculation of the second derivative of the dielectric function and fit with critical points parabolic band oscillators. The solar cells were then characterized by current-voltage and quantum efficiency measurements. An analysis of the diode parameters indicates that the cells are mostly limited by a low fill factor, associated mostly with a high diode quality factor (A - 1.8) and high series resistance (R_s ~ 1.1 Ω-cm~2).
机译:使用混合共溅射/蒸发工艺制备了Cu(In,Ga)Se_2太阳能电池,效率高达12.4%。通过能量色散X射线光谱,掠入射X射线衍射,扫描电子显微镜,俄歇电子能谱,透射率和反射光谱对膜进行了表征,并将它们的性能与通过共蒸发沉积的膜进行了比较。即使薄膜相对相似,通过混合工艺沉积的薄膜也趋向于具有较小的晶粒,沿着(112)轴的取向稍佳,且表面更粗糙。两种类型的薄膜在整个深度上都具有均匀的成分。通过可变入射角光谱椭圆偏振法对这些薄膜进行表征,可以通过计算介电函数的二阶导数来计算临界点的位置,并与临界点抛物线型振荡器匹配。然后通过电流-电压和量子效率测量来表征太阳能电池。对二极管参数的分析表明,电池主要受低填充因子的限制,而填充因子主要与高二极管质量因子(A-1.8)和高串联电阻(R_s〜1.1Ω-cm〜2)相关。

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