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用于增强有机光伏吸收的宽带短程表面等离子体结构。

Broadband short-range surface plasmon structures for absorption enhancement in organic photovoltaics.

作者信息

Bai Wenli, Gan Qiaoqiang, Song Guofeng, Chen Lianghui, Kafafi Zakya, Bartoli Filbert

机构信息

Electrical and Computer Engineering Department, Lehigh University, Bethlehem, PA 18015, USA.

出版信息

Opt Express. 2010 Nov 8;18 Suppl 4:A620-30. doi: 10.1364/OE.18.00A620.

Abstract

We theoretically demonstrate a polarization-independent nanopatterned ultra-thin metallic structure supporting short-range surface plasmon polariton (SRSPP) modes to improve the performance of organic solar cells. The physical mechanism and the mode distribution of the SRSPP excited in the cell device were analyzed, and reveal that the SRSPP-assisted broadband absorption enhancement peak could be tuned by tailoring the parameters of the nanopatterned metallic structure. Three-dimensional finite-difference time domain calculations show that this plasmonic structure can enhance the optical absorption of polymer-based photovoltaics by 39% to 112%, depending on the nature of the active layer (corresponding to an enhancement in short-circuit current density by 47% to 130%). These results are promising for the design of organic photovoltaics with enhanced performance.

摘要

我们从理论上证明了一种支持短程表面等离激元极化激元(SRSPP)模式的偏振无关纳米图案超薄金属结构,以提高有机太阳能电池的性能。分析了在电池器件中激发的SRSPP的物理机制和模式分布,结果表明,通过调整纳米图案金属结构的参数,可以调节SRSPP辅助的宽带吸收增强峰。三维时域有限差分计算表明,这种等离子体结构可以使基于聚合物的光伏器件的光吸收提高39%至112%,这取决于活性层的性质(相应地,短路电流密度提高47%至130%)。这些结果对于设计高性能有机光伏器件很有前景。

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