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首页> 外文期刊>Plasmonics >Resonant Aluminum Nanodisk Array for Enhanced Tunable Broadband Light Trapping in Ultrathin Bulk Heterojunction Organic Photovoltaic Devices
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Resonant Aluminum Nanodisk Array for Enhanced Tunable Broadband Light Trapping in Ultrathin Bulk Heterojunction Organic Photovoltaic Devices

机译:谐振铝纳米磁盘阵列,用于超薄块状异质结有机光伏器件中的增强型可调谐宽带光陷波

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摘要

A cost-effective approach to enhancing broadband light trapping in ultrathin bulk heterojunction organic photovoltaic (OPV) devices is proposed. This is achieved by simply inserting an array of Al nanodisks at the interface of the ITO anode and the organic active layer; forming circular plasmonic nanopatch cavities (between the nanodisks and the Al cathode) that sandwich the active layer. Through interactions between the surface plasmon polaritons localized at the nanodisk and the cathode, a tunable broadband resonance peak spanning 450-700 nm in the scattering cross-section spectrum is formed, thereby enhancing the electromagnetic field in the active layer. Compared to an OPV device with a 60-nm-thick PCPDTBT/PC_(60)BM layer, our numerical simulations reveal that integrated absorption enhancements of up to 40 % can be achieved in an equivalent device integrated with an array of nanodisks with a diameter of 100 nm and a periodicity of 250 nm. From the analysis of the structure-performance relationships, implications for the design of these nanopatch cavities for light harvesting in ultrathin OPV devices are discussed.
机译:提出了一种经济高效的方法来增强超薄体异质结有机光伏(OPV)器件中的宽带光捕获。这可以通过在ITO阳极和有机活性层的界面处简单插入Al纳米盘阵列来实现。形成将活性层夹在中间的圆形等离激元纳米贴片腔(在纳米盘和Al阴极之间)。通过位于纳米盘上的表面等离激元极化子与阴极之间的相互作用,在散射截面光谱中形成了跨越450-700 nm的可调宽带共振峰,从而增强了活性层中的电磁场。与具有60nm厚PCPDTBT / PC_(60)BM层的OPV设备相比,我们的数值模拟表明,在与直径为一定直径的纳米磁盘阵列集成在一起的等效设备中,集成吸收最多可提高40% 100nm的周期和250nm的周期。从结构-性能关系的分析,讨论了用于超薄OPV器件中光收集的这些纳米贴片腔的设计意义。

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