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Spatially resolved analysis of light induced degradation of multicrystalline PERC solar cells

机译:多晶硅恒温太阳能电池光诱导降解的空间分辨分析

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Light induced degradation at elevated temperatures in mc-Si PERC solar cells can be responsible for major efficiency losses. In this work, a spatially resolved analysis of the degradation behavior of a standard mc-Si PERC solar cell is performed based on carrier lifetime-calibrated photoluminescence (PL) images. An effective defect concentration is calculated from lifetime data at a fixed injection which allows for defect analysis taking into account any other defects. The time-dependent defect evolution is fitted to obtain the spatially resolved maximum effective defect concentration and the degradation time constant. No differences in the behavior between grains and dislocation clusters could be observed. Lower effective defect concentrations have been found around grain boundaries which could be an effect of denuded zones. In the case of our sample, slight local process and material parameter variations, namely the local firing temperature, have a much stronger impact than the crystal structure.
机译:MC-Si Perc太阳能电池中升高温度的光引起的降解可能负责主要的效率损失。在这项工作中,基于载体寿命校准的光致发光(PL)图像来执行标准MC-SI PERC太阳能电池的降解行为的空间解决分析。从固定喷射的寿命数据计算有效的缺陷浓度,这允许考虑到任何其他缺陷的缺陷分析。拟合时间依赖性缺陷进化,以获得空间分辨的最大有效缺陷浓度和降解时间常数。可以观察到谷物和错位簇之间的行为的差异。在晶界周围发现了较低的有效缺陷浓度,这可能是裸露的区域的影响。在我们的样品的情况下,轻微的局部过程和材料参数变化,即局部烧制温度,产生比晶体结构更强大。

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