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Locally placed nanoscale gold islands film within a TiO2 photoanode for enhanced plasmon light absorption in dye sensitized solar cells

机译:TiO2光阳极内的局部放置的纳米级金岛膜用于增强染料敏化太阳能电池中的等离激元光吸收

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摘要

As metal nanostructures demonstrated extraordinary plasmon resonance, their optical characteristics have widely been investigated in photo-electronic applications. However, there has been no clear demonstration on the location effect of plasmonic metal layer within the photoanode on both optical characteristics and photovoltaic performances. In this research, the gold (Au) nano-islands (NIs) film was embedded at different positions within the TiO2 nanoparticulate photoanode in dye-sensitized solar cells (DSSC) to check the effect of plasmon resonance location on the device performance; at the top, in the middle, at the bottom of the TiO2 photoanode, and also at all the three positions. The Au NIs were fabricated by annealing a Au thin film at 550 °C. The DSSC having the Au NIs-embedded TiO2 photoanode exhibited an increase in short circuit currents (Jsc) and power conversion efficiency (PCE) owing to the plasmon resonance absorption. Thus, the PCE was increased from 5.92% (reference: only TiO2 photoanode) to 6.52% when the Au NIs film was solely positioned at the bottom, in the middle or at the top of TiO2 film. When the Au NIs films were placed at all the three positions, the Jsc was increased by 16% compared to the reference cell, and consequently the PCE was further increased to 7.01%.
机译:随着金属纳米结构表现出非凡的等离子体共振,其光学特性已在光电应用中得到广泛研究。然而,关于光电阳极内的等离激元金属层的位置对光学特性和光伏性能的影响还没有明确的证明。在这项研究中,金(Au)纳米岛(NIs)膜嵌入在染料敏化太阳能电池(DSSC)中的TiO2纳米颗粒光阳极内的不同位置,以检查等离子体共振位置对器件性能的影响;在TiO2光电阳极的顶部,中间,底部以及所有三个位置。 Au NIs是通过在550°C下退火Au薄膜而制成的。由于等离子体共振吸收,具有Au NIs嵌入的TiO 2光电阳极的DSSC表现出短路电流(Jsc)和功率转换效率(PCE)的增加。因此,当Au NIs膜仅位于TiO2膜的底部,中间或顶部时,PCE从5.92%(参考:仅TiO2光电阳极)增加到6.52%。当将Au NIs膜放置在所有三个位置时,与参考电池相比,Jsc增大了16%,因此PCE进一步增大到了7.01%。

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