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Enhanced photo-conversion efficiency of CdSe-ZnS core-shell quantum dots with Au nanoparticles on TiO2 electrodes

机译:Au纳米粒子在TiO2电极上提高CdSe-ZnS核壳量子点的光转换效率

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摘要

This study demonstrates that configurations that include gold nanoparticles (Au NPs) as the primary layer attached to a TiO2 electrode with quantum dots (QDs) as the secondary layer have superior photoelectrochemical properties. We found that all Au-QD nanoparticle hybrid systems reveal enhanced photocurrent generation as compared to only a QD-nanoparticle interface. The enhanced J_(sc) is attributed to sensitization that results indirectly from quantum dots becoming attached to Au NPs by intramolecular charge transfers. As a result of the improved performance, the overall energy conversion efficiency was increased by 100% as compared to that of a reference cell without Au NPs at 100 mW cm~(-2). When (CdSe)ZnS is prepared from Au-coated TiO2, incident photon-to-current efficiency values approaching 20% can be achieved by (CdSe)ZnS devices. In the electrochemical impedance spectroscopy results, the intermediate frequency region of the Au-QD cells was more significantly reduced compared to that in bare QD cells due to the enhanced charge separation that occurs in the Au-QD structure. Mott-Schottky (C~(-2)-φ) analysis shows that the lowest acceptor and donor densities having a positive effect on the efficiency could be found in (CdSe)ZnS-Au/TiO2 cells. Therefore, (CdSe)ZnS-Au/TiO2 has a very thin depletion layer that is restricted to the surface of Au/TiO2. Consequently, this system can be employed to enhance the effective efficiency in the design of the QD-sensitized solar cells.
机译:这项研究表明,包括金纳米颗粒(Au NPs)作为附着在TiO2电极上的第一层以及量子点(QDs)作为第二层的配置具有优异的光电化学性能。我们发现,与仅QD-纳米颗粒界面相比,所有Au-QD纳米颗粒杂化系统均显示出增强的光电流生成。增强的J_(sc)归因于敏化作用,该敏化作用是由于量子点通过分子内电荷转移而附着在Au NP上而间接产生的。由于性能的提高,与在100 mW cm〜(-2)时没有Au NPs的参考电池相比,总能量转换效率提高了100%。当用Au包覆的TiO2制备(CdSe)ZnS时,(CdSe)ZnS器件可以实现接近20%的入射光子-电流效率值。在电化学阻抗谱结果中,由于在Au-QD结构中发生的电荷分离增强,因此与裸QD电池相比,Au-QD电池的中频区域更加明显地减少。 Mott-Schottky(C〜(-2)-φ)分析表明,在(CdSe)ZnS-Au / TiO2电池中可以发现最低的受体和施主密度,对效率有积极影响。因此,(CdSe)ZnS-Au / TiO2具有非常薄的耗尽层,该耗尽层仅限于Au / TiO2的表面。因此,可以使用该系统来提高QD敏化太阳能电池的设计效率。

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