Plasmonic electrodes for organic photovoltaics: polarization-independent absorption enhancement

Beibei Zeng, Z. Kafafi, F. Bartoli
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引用次数: 3

Abstract

We systematically investigate the optical and electrical properties of ultrathin two-dimensional (2D) Ag nanogratings (NGs), and explore their use as plasmonic transparent conducting electrodes in molecular organic photovoltaics (OPVs). A large broadband and polarization-insensitive optical absorption enhancement in the CuPc (copper phthalocyanine): PTCBI (perylene tetracarboxylic bisbenzimidazole) active light-harvesting layers is demonstrated using ultrathin 2D Ag NGs, and is attributed to the excitation of surface plasmon resonances and plasmonic cavity modes.
有机光伏用等离子体电极:偏振无关吸收增强
我们系统地研究了超薄二维(2D)银纳米光栅(NGs)的光学和电学性质,并探索了它们作为等离子体透明导电电极在分子有机光伏(opv)中的应用。利用超薄二维Ag纳米粒子,在酞菁铜(CuPc)和苝四羧基双苯并咪唑(PTCBI)有源光捕获层中发现了宽带和偏振不敏感的光吸收增强,这归因于表面等离子体共振和等离子体腔模式的激发。
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