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New strategy to promote conversion efficiency using high-index nanostructures in thin-film solar cells

机译:在薄膜太阳能电池中使用高折射率纳米结构提高转换效率的新策略

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Nano-scaled metallic or dielectric structures may provide various ways to trap light into thin-film solar cells for improving the conversion efficiency. In most schemes, the textured active layers are involved into light trapping structures that can provide perfect optical benefits but also bring undesirable degradation of electrical performance. Here we propose a novel approach to design high-performance thin-film solar cells. In our strategy, a flat active layer is adopted for avoiding electrical degradation, and an optimization algorithm is applied to seek for an optimized light trapping structure for the best optical benefit. As an example, we show that the efficiency of a flat a-Si:H thin-film solar cell can be promoted close to the certified highest value. It is also pointed out that, by choosing appropriate dielectric materials with high refractive index (>3) and high transmissivity in wavelength region of 350?nm–800?nm, the conversion efficiency of solar cells can be further enhanced.
机译:纳米级金属或介电结构可以提供各种方式来将光捕获到薄膜太阳能电池中,以提高转换效率。在大多数方案中,织构化的有源层被包含在光捕获结构中,该结构可以提供完美的光学优势,但同时也会带来不良的电性能下降。在这里,我们提出了一种新颖的方法来设计高性能薄膜太阳能电池。在我们的策略中,采用平坦的有源层来避免电性能下降,并应用优化算法来寻求具有最佳光学效果的优化光捕获结构。例如,我们表明,可以将a-Si:H平面薄膜太阳能电池的效率提高到接近认证的最高值。还指出,通过选择在350?nm–800?nm波长范围内具有高折射率(> 3)和高透射率的合适介电材料,可以进一步提高太阳能电池的转换效率。

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