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使用纳米结构电极的胶体量子点太阳能电池中的共振诱导吸收增强

Resonance-induced absorption enhancement in colloidal quantum dot solar cells using nanostructured electrodes.

作者信息

Mahpeykar Seyed Milad, Xiong Qiuyang, Wang Xihua

出版信息

Opt Express. 2014 Oct 20;22 Suppl 6:A1576-88. doi: 10.1364/OE.22.0A1576.

Abstract

The application of nanostructured indium-doped tin oxide (ITO) electrodes as diffraction gratings for light absorption enhancement in colloidal quantum dot solar cells is numerically investigated using finite-difference time-domain (FDTD) simulation. Resonant coupling of the incident diffracted light with supported waveguide modes in light absorbing layer at particular wavelengths predicted by grating far-field projection analysis is shown to provide superior near-infrared light trapping for nanostructured devices as compared to the planar structure. Among various technologically feasible nanostructures, the two-dimensional nano-branch array is demonstrated as the most promising polarization-independent structure and proved to be able to maintain its performance despite structural imperfections common in fabrication.

摘要

采用时域有限差分(FDTD)模拟,对纳米结构的铟掺杂氧化锡(ITO)电极作为衍射光栅在胶体量子点太阳能电池中增强光吸收的应用进行了数值研究。通过光栅远场投影分析预测,在特定波长下,入射衍射光与光吸收层中支持的波导模式的共振耦合,相比于平面结构,为纳米结构器件提供了卓越的近红外光捕获能力。在各种技术上可行的纳米结构中,二维纳米分支阵列被证明是最有前景的与偏振无关的结构,并且尽管在制造过程中常见结构缺陷,但仍能保持其性能。

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