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Distribution of Local Open-Circuit Voltage on Amorphous and Nanocrystalline Mixed-Phase Si:H and SiGe:H Solar Cells

机译:非晶和纳米晶混合相Si:H和SiGe:H太阳能电池上的局部开路电压分布

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Local open-circuit voltage (Voc) distributions on amorphous and nanocrystalline mixed-phase silicon solar cells were measured using a scanning Kelvin probe microscope (SKPM) on the p layer of an n-i-p structure without the top ITO contact. During the measurement, the sample was illuminated with a laser beam that was used for the atomic force microscopy (AFM). Therefore, the surface potential measured by SKPM is the sum of the local Voc and the difference in workfunction between the p layer and the AFM tip. Comparing the SKPM and AFM images, we find that nanocrystallites aggregate in the amorphous matrix with an aggregation size of ~0.5 mum in diameter, where many nanometer-size grains are clustered. The Voc distribution shows valleys in the nanocrystalline aggregation area. The transition from low to high Voc regions is a gradual change within a distance of about 1 mum. The minimum V oc value in the nanocrystalline clusters in the mixed-phase region is larger than the Voc of a nc-Si:H single-phase solar cell. These results could be due to lateral photo-charge redistribution between the two phases. We have also carried out local Voc measurements on mixed-phase SiGe:H alloy solar cells. The magnitudes of Voc in the amorphous and nanocrystalline regions are consistent with the J-V measurements
机译:使用扫描开尔文探针显微镜(SKPM)在没有顶部ITO的压区结构的p层上测量非晶态和纳米晶混合相硅太阳能电池上的局部开路电压(V )分布接触。在测量期间,用用于原子力显微镜(AFM)的激光束照射样品。因此,SKPM测量的表面电势是局部V oc 与p层和AFM尖端之间的功函数差之和。比较SKPM和AFM图像,我们发现纳米晶体聚集在无定形基体中,聚集体直径约为0.5微米,其中聚集了许多纳米级晶粒。 V oc 分布显示出纳米晶体聚集区的谷。从低Voc区到高Voc区的过渡是在大约1毫米的距离内逐渐变化。混合相区域中纳米晶簇中的最小V oc 值大于nc-Si:H单相太阳能电池的V oc 。这些结果可能是由于两相之间的横向光电荷重新分布。我们还对混合相SiGe:H合金太阳能电池进行了局部V oc 测量。非晶和纳米晶区域中V oc 的大小与J-V测量值一致

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