首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Study on permanent deactivation of the light-induced degradation in p-type compensated crystalline silicon solar cells
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Study on permanent deactivation of the light-induced degradation in p-type compensated crystalline silicon solar cells

机译:p型补偿晶体硅太阳能电池中光诱导降解的永久失活研究

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摘要

Low-cost upgraded metallurgical grade silicon (UMG-Si) with inherent boron (B) and phosphorus (P) compensation is a novel material for photovoltaic application. In this study, we demonstrate the negative impact of the light-induced degradation (LID) on the efficiency of p-type UMG-Si solar cells. By a following illumination at elevated temperatures, the LID effect in the compensated silicon solar cells can be fully deactivated, and the minority carrier diffusion length is recovered to the original level. The conversion efficiency of the compensated silicon solar cells is increased by a value of more than 3% absolutely compared to the degraded state and is quite stable under the following illumination at room temperature. It is shown that both the boron-oxygen defect density and deactivation energy mainly depend on the total boron concentration rather than the net doping concentration, which strongly suggests that boron is directly involved in the generation and deactivation of boron-oxygen defect at the solar cell level. These results are of significance for understanding the LID effect of the solar cells based on low cost UMG-Si.
机译:具有固有硼(B)和磷(P)补偿的低成本升级冶金级硅(UMG-Si)是用于光伏应用的新型材料。在这项研究中,我们证明了光诱导降解(LID)对p型UMG-Si太阳能电池效率的负面影响。通过在高温下进行后续照明,可以完全使补偿后的硅太阳能电池中的LID效应失效,并将少数载流子扩散长度恢复到原始水平。与退化状态相比,补偿后的硅太阳能电池的转换效率绝对提高了超过3%的值,并且在室温下的后续照明下非常稳定。结果表明,硼氧缺陷密度和失活能量均主要取决于总硼浓度而不是净掺杂浓度,这强烈表明硼直接参与了太阳能电池中硼氧缺陷的产生和失活。水平。这些结果对于理解基于低成本UMG-Si的太阳能电池的LID效应具有重要意义。

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