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首页> 外文期刊>Journal of Applied Physics >Broadband absorption enhancement via light trapping in periodically patterned polymeric solar cells
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Broadband absorption enhancement via light trapping in periodically patterned polymeric solar cells

机译:通过定期构图的聚合物太阳能电池中的光捕获增强宽带吸收

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摘要

Improved absorption is needed for thin-film organic solar cells to increase charge generation and/or reduce the thickness of the organic active film. Absorption enhancement by light trapping in a photonic crystal (PC) can be used to enhance the absorption in a patterned photo-active polymer blend. We used the finite difference time domain (FDTD) method to study the effect of combining the PC with different vertical layer configurations, including a hole transporting flash layer, used for charge separation and for increasing the photo-voltage, and a reflective metallic back electrode. The model was applied to P3HT:PCBM and pBBTDPP2:PCBM blends as the active materials, to examine the effect of different absorption spectra on the results. We found that the combination of PC and a reflector electrode is synergistic for enhancing the absorption in such devices, while the effect of the flash layer is minor. The combination of lateral and vertical reflections by the PC and the reflector, respectively, results in significant light scattering and enhancement of the absorption in a wide range of wavelengths. An increase of 30% to 60% (depending on the active material) in the number of absorbed photons of the solar spectrum was calculated compared to un-patterned blends. Broadband absorption enhancement in a realistic cell configuration is expressed as absorption enhancement of solar photons in a wide range of PC periods, i.e., the presence of periodic structuring is more important for absorption enhancement of the solar irradiation than the dimension of its period.
机译:薄膜有机太阳能电池需要改善吸收以增加电荷产生和/或减小有机活性膜的厚度。通过捕获光子晶体(PC)中的光来增强吸收可用于增强图案化光敏聚合物共混物中的吸收。我们使用时差有限域(FDTD)方法研究了将PC与不同的垂直层配置结合在一起的效果,这些垂直层配置包括用于电荷分离和增加光电压的空穴传输闪光层以及反射型金属背电极。将该模型应用于活性物质P3HT:PCBM和pBBTDPP2:PCBM混合物,以检验不同吸收光谱对结果的影响。我们发现,PC和反射电极的组合在增强此类设备的吸收方面具有协同作用,而闪光层的影响则很小。 PC和反射器分别产生的横向和垂直反射相结合,会导致很大的光散射并增强在宽波长范围内的吸收。与未图案化的混合物相比,计算得出太阳光谱吸收光子数量增加了30%至60%(取决于活性物质)。实际单元配置中的宽带吸收增强表示为在宽范围的PC周期内太阳光子的吸收增强,即,周期性结构的存在对于太阳辐射的吸收增强比其周期的尺寸更为重要。

著录项

  • 来源
    《Journal of Applied Physics》 |2013年第1期|1-7|共7页
  • 作者单位

    Department of Chemistry;

    Ben Gurion University of the Negev;

    Be'er Sheva;

    Israel|c|;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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