首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Analysis of thin-film silicon solar cells with plasma textured front surface and multi-layer porous silicon back reflector
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Analysis of thin-film silicon solar cells with plasma textured front surface and multi-layer porous silicon back reflector

机译:具有等离子纹理前表面和多层多孔硅背反射器的薄膜硅太阳能电池的分析

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摘要

The optical performance of thin crystalline silicon solar cells with plasma textured front surface and with porous silicon stack back reflector is analysed. A rigorous analytical ray tracing model, that uses an accurately estimated porous silicon refractive index, is elaborated to predict the optical absorption, carrier generation, external quantum efficiency, and total photogenerated current in the cell. Calculated results best fitted to those measured for an experimental demonstration cell show that surface recombination is a major loss factor in the demonstration cell. The study also concludes that the plasma textured front surface has poor light diffusion properties, and predicts that the maximum gain in the photocurrent from back reflection at the porous silicon stack equals 10% compared to 20% if the back reflector is ideal. However, the proposed cell is realistic and promises excellent performance when state of the art front surface texturing, passivation and front metallization techniques are implemented.
机译:分析了具有等离子纹理前表面和多孔硅堆叠背反射器的薄晶硅太阳能电池的光学性能。建立了严格的分析射线追踪模型,该模型使用精确估算的多孔硅折射率来预测光吸收,载流子产生,外部量子效率和电池中的总光生电流。计算结果最适合用于实验演示电池的测量结果表明,表面重组是演示电池的主要损耗因子。该研究还得出结论,等离子体织构化的前表面具有较差的光扩散特性,并预测在多孔硅叠层处背反射产生的光电流的最大增益等于10%,而背反射器理想时则为20%。然而,提出的电池是现实的,并且当实施最先进的前表面纹理化,钝化和前金属化技术时,有望表现出优异的性能。

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