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Nanoscale Imaging of Photo current and Efficiency in CdTe Solar Cells

机译:CdTe太阳能电池中光电流和效率的纳米级成像

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摘要

The local collection characteristics of grain interiors and grain boundaries in thin-film CdTe polycrystalline solar cells are investigated using scanning photocurrent microscopy. The carriers are locally generated by light injected through a small aperture (50-300 nm) of a near-field scanning optical microscope in an illumination mode. Possible influence of rough surface topography on light coupling is examined and eliminated by sculpting smooth wedges on the granular CdTe surface. By varying the wavelength of light, nanoscale spatial variations in external quantum efficiency are mapped. We find that the grain boundaries (GBs) are better current collectors than the grain interiors (GIs). The increased collection efficiency is caused by two distinct effects associated with the material composition of GBs. First, GBs are charged, and the corresponding built-in field facilitates the separation and the extraction of the photogenerated carriers. Second, the GB regions generate more photocurrent at long wavelength corresponding to the band edge, which can be caused by a smaller local band gap. Resolving carrier collection with nanoscale resolution in solar cell materials is crucial for optimizing the polycrystalline device performance through appropriate thermal processing and passivation of defects and surfaces.
机译:利用扫描光电流显微镜研究了薄膜CdTe多晶太阳能电池晶粒内部和晶界的局部收集特征。载流子是通过在照明模式下通过近场扫描光学显微镜的小孔径(50-300 nm)注入的光局部产生的。通过在CdTe颗粒表面雕刻光滑的楔形,检查并消除了粗糙的表面形貌对光耦合的可能影响。通过改变光的波长,可以绘制出外部量子效率的纳米级空间变化。我们发现,晶界(GBs)比晶粒内部(GIs)更好。收集效率的提高是由与GBs的材料组成相关的两个不同的影响引起的。首先,对GB进行充电,并且相应的内置字段有助于光生载流子的分离和提取。其次,GB区域在对应于带边缘的长波长处产生更多的光电流,这可能是由较小的局部带隙引起的。通过适当的热处理以及缺陷和表面的钝化,以纳米级分辨率解决太阳能电池材料中载流子的收集对于优化多晶器件性能至关重要。

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