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首页> 外文期刊>Nanoscale >The influence of shell thickness of Au@TiO2 core-shell nanoparticles on the plasmonic enhancement effect in dye-sensitized solar cells
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The influence of shell thickness of Au@TiO2 core-shell nanoparticles on the plasmonic enhancement effect in dye-sensitized solar cells

机译:壳牌Au@TiO2厚度的影响核壳纳米粒子在电浆色素增感太阳能电池的增强效果

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摘要

Plasmonic core-shell nanoparticles (PCSNPs) can function as nanoantennas and improve the efficiency of dye-sensitized solar cells (DSSCs). To achieve maximum enhancement, the morphology of PCSNPs needs to be optimized. Here we precisely control the morphology of Au@TiO2 PCSNPs and systematically study its influence on the plasmonic enhancement effect. The enhancement mechanism was found to vary with the thickness of the TiO2 shell. PCSNPs with a thinner shell mainly enhance the current, whereas particles with a thicker shell improve the voltage. While pronounced plasmonic enhancement was found in the near infrared regime, wavelength-independent enhancement in the visible range was observed and attributed to the plasmonic heating effect. Emission lifetime measurement confirms that N719 molecules neighboring nanoparticles with TiO2 shells exhibit a longer lifetime than those in contact with metal cores. Overall, PCSNPs with a 5 nm she!) give the highest efficiency enhancement of 23%. Our work provides a new synthesis route for well-controlled Au@TiO2 core-shell nanoparticles and gains insight into the plasmonic enhancement in DSSCs.
机译:电浆核壳纳米粒子(PCSNPs)函数作为nanoantennas和改善色素增感太阳能电池的效率(DSSCs)。的形态,以达到最大程度的增强,PCSNPs需要优化。控制的形态Au@TiO2 PCSNPs和系统地研究其影响电浆的增强效果。机制被发现随厚度二氧化钛壳。主要是提高当前,而粒子厚壳改善电压。明显的电浆增强被发现的近红外政权,非波长依赖型在可见的范围是观察和增强由于电浆加热效果。发射寿命测量证实N719分子邻近与二氧化钛纳米颗粒贝壳展览更长的寿命比接触金属芯。5 nm她!)给最高的效率提高了23%。为控制Au@TiO2合成路线核壳纳米粒子和洞察DSSCs电浆增强。

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