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Plasmonic Ag nanostructures on thin substrates for enhanced energy harvesting

机译:薄基材上的等离子体Ag纳米结构,用于增强能量收集

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Nanoparticles and nanostructures with plasmonic resonances are currently being employed to enhance the efficiency of solar cells. Ag stripe arrays have been shown theoretically to enhance the short-circuit current of thin silicon layers. Such Ag stripes are combined with 200 nm long and 60 nm wide "teeth", which act as nanoantennas, and form vertical rectifying metal-insulator-metal (MIM) nanostructures on metallic substrates coated with thin oxides, such as Nb/NbO_x films. We characterize experimentally and theoretically the visible and near-infrared spectra of these "stripe-teeth" arrays, which act as microantenna arrays for energy harvesting and detection, on silicon substrates. Modeling the stripe-teeth arrays predicts a substantial net a.c. voltage across the MIM diode, even when the stripe-teeth microrectenna arrays are illuminated at normal incidence.
机译:目前采用纳米颗粒和纳米结构具有等离子体共振来提高太阳能电池的效率。理论上已经显示了AG条纹阵列以增强薄硅层的短路电流。这种AG条纹与200nm长和60nm宽的“齿”组合,其充当纳米烯烃,并在涂覆有薄氧化物的金属底物上形成垂直整流金属 - 绝缘体 - 金属(MIM)纳米结构,例如Nb / NbO_x膜。我们在实验和理论上表征了这些“条纹齿”阵列的可见和近红外光谱,其充当微阴茎阵列以进行硅基板的能量收集和检测。建模条纹齿阵列预测了大量净净额。 MIM二极管上的电压,即使在正常入射时照明条纹齿微小阵列。

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