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首页> 外文期刊>Organic Electronics >Plasmonic nanoparticle incorporation into inverted hybrid organic-inorganic solar cells
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Plasmonic nanoparticle incorporation into inverted hybrid organic-inorganic solar cells

机译:等离子体纳米粒子掺入反向混合有机-无机太阳能电池

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To enhance solar harvesting in hybrid organic-inorganic photovoltaic devices we positioned plasmonic gold nanostructures in titania-conjugated polymer devices. Two plasmonic structures were judiciously designed and studied. In the first, agglomerates of gold nanoparticles, ~150 nm in diameter, were positioned as scattering clusters at the active layer/ITO electrode interface. In the second approach, 5 nm isolated Au particles were suspended inside the hybrid active layer to induce localized plasmonic field enhancement. The location of the particles, size and distribution in the film was confirmed using scanning and transmission electron microscopy and X-ray scattering. The optical absorption measurements confirmed that both plasmonic structures enhance light harvesting, and photovoltaic devices utilizing each of the approaches showed improved photocurrent generation. Finite difference time domain simulations have corroborated that scattering-based and near-field absorption enhancements occur in the active layer, in good agreement with the measured absorption. Finally, combining both approaches to fabricate a hybrid photovoltaic device with both plasmonic nanostructures, i.e. Au NPs both in and on the active layer, resulted in a twofold increase in photocurrent generation.
机译:为了增强混合有机-无机光伏装置中的太阳能收集,我们将等离子体金纳米结构放置在二氧化钛共轭聚合物装置中。明智地设计和研究了两个等离子体结构。首先,将直径约150 nm的金纳米颗粒的附聚物作为散射簇放置在活性层/ ITO电极界面处。在第二种方法中,将5 nm分离出的Au颗粒悬浮在混合有源层内部,以诱导局部等离子体场增强。使用扫描和透射电子显微镜以及X射线散射来确认膜中颗粒的位置,大小和分布。光吸收测量结果证实,两个等离激元结构都增强了光收集,并且利用每种方法的光电器件显示出改善的光电流产生。时域有限差分仿真已证实,在有源层中会发生基于散射的吸收和近场吸收增强,这与测得的吸收非常吻合。最后,将两种方法组合以制造具有两种等离子体纳米结构,即在有源层中和在有源层上的Au NP的混合光伏器件,导致光电流产生增加了两倍。

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