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优化宽带光捕获纳米图案的空间相关性以提高高效超薄非晶硅薄膜太阳能电池的性能。

Optimized spatial correlations for broadband light trapping nanopatterns in high efficiency ultrathin film a-Si:H solar cells.

机构信息

Center for Nanophotonics, FOM Institute AMOLF , Science Park 104, 1098 XG Amsterdam, The Netherlands.

出版信息

Nano Lett. 2011 Oct 12;11(10):4239-45. doi: 10.1021/nl202226r. Epub 2011 Sep 8.

Abstract

Nanophotonic structures have attracted attention for light trapping in solar cells with the potential to manage and direct light absorption on the nanoscale. While both randomly textured and nanophotonic structures have been investigated, the relationship between photocurrent and the spatial correlations of random or designed surfaces has been unclear. Here we systematically design pseudorandom arrays of nanostructures based on their power spectral density, and correlate the spatial frequencies with measured and simulated photocurrent. The integrated cell design consists of a patterned plasmonic back reflector and a nanostructured semiconductor top interface, which gives broadband and isotropic photocurrent enhancement.

摘要

纳米光子结构在太阳能电池中的光捕获方面引起了关注,具有在纳米尺度上管理和引导光吸收的潜力。虽然已经研究了随机纹理和纳米光子结构,但光电流与随机或设计表面的空间相关性之间的关系尚不清楚。在这里,我们基于功率谱密度系统地设计了伪随机纳米结构阵列,并将空间频率与测量和模拟的光电流相关联。集成的电池设计包括图案化的等离子体后反射器和纳米结构半导体顶界面,这为宽带各向同性光电流增强提供了条件。

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