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Double plasmonic structure design for broadband absorption enhancement in molecular organic solar cells

机译:分子有机太阳能电池宽带吸收增强双等离子体结构设计

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Absorption enhancement by a double plasmonic nanostructure in molecular organic photovoltaics (OPVs) is theoretically investigated. The structure consists of a periodic array of metal nanodiscs on one side of the OPV active layers and a thin metal nanohole array on the other side. Excitation of coupled modes of localized surface plasmon polaritons at the nanodiscs and short - range surface plasmon polaritons at the nanohole array causes the electromagnetic field to be highly concentrated within the organic active layers, leading to a polarization- independent, broadband absorption enhancement in the visible and near-infrared portion of the solar spectrum. Calculations show that an optimized double plasmonic structure can enhance the total photon absorption by > 125% for molecular OPVs based on a double heterojunction of an electron donor/hole transporter and an electron acceptor/transporter.
机译:理论上研究了分子有机光伏(OPV)中双重等离子体纳米结构的吸收增强。该结构包括在OPV有源层的一侧上的一侧的金属纳米纳米族的周期性阵列和另一侧的薄金属纳米孔阵列。在纳米孔阵列的纳米粥样硬化局部等离子体极性官能中耦合模式的激发导致电磁场在有机活性层内高度浓缩,导致可见的极化,宽带吸收增强和太阳光谱的近红外部分。计算表明,优化的双重等离子体结构可以基于电子供体/空穴传输仪的双异质结和电子受体/转运蛋白来增强分子OPV的总光子吸收> 125%。

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