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Numerical Simulations for the Efficiency Improvement of Hybrid Dye-microcrystalline Silicon pin-solar cells

机译:杂交染料微晶硅销太阳能电池效率改进的数值模拟

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In hybrid solar cells consisting of dye sensitizers incorporated in the i-layer of a microcrystalline silicon (μc-Si:H) pin solar cell the dye sensitizer molecules are embedded in the matrix and enhance the overall absorption of the dye-matrix system due to their high absorption coefficient in the spectral range interesting for photovoltaic applications. This contribution investigates the efficiency improvement of hybrid dye-uc-Si:H solar cells compared to pure uc-Si:H solar cells by simulation. The results indicate that, under optimum conditions, the efficiency can be improved by more than a factor of 1.2 compared to a pure uc-Si:H cell. The thickness reduction for the hybrid system can be as large as 50 % for the same efficiency. However, the efficiency improvement also depends on the amount of additionally induced defects in the matrix by the embedded dye molecules. Therefore, the simulations investigate the performance of the hybrid solar cell for different absorption enhancements and defect densities.
机译:在由掺入微晶硅(μC-Si:H)销太阳能电池的I层中的染料太阳能电池组成的杂交太阳能电池,染料敏化剂分子嵌入基质中,并提高染料矩阵系统的整体吸收光伏应用的光谱范围内的高吸收系数。通过模拟研究了与纯UC-Si:H太阳能电池相比,研究了杂种染料-UC-Si:H太阳能电池的效率改善。结果表明,与纯UC-Si:H细胞相比,在最佳条件下,可以通过1.2重量超过1.2倍。混合系统的厚度降低可以同样效率大至50%。然而,效率改善还取决于嵌入染料分子的另外诱导的缺陷的量。因此,仿真研究了混合太阳能电池对不同吸收增强和缺陷密度的性能。

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