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CdS/CdSe Quantum dots Co-sensitized TiO_2 Nanowire/Nanotube Solar Cells with Enhanced Efficiency

机译:CdS / CdSe量子点以更高的效率共敏化TiO_2纳米线/纳米管太阳能电池

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Translucent TiO_2 nanowiresanotubes (TiO_2 NW/NT) film would be a promising candidate in constructing photoelectrochemical solar cells for its advantages in sensitizer loading, charge separation, electronic transport and light harvesting. In this report, translucent TiO_2 NW/NT film was prepared by a two-step anodization method. The formation mechanisms of nanowires originated from nanotubes were explored. The hydrogen ions generated by electrolysis of water were driven by electric field to form ions flow, which altered the interfacial stress of nanotubes, resulting in vertically or spirally splitting the mouth of nanotubes to form nanowires. The CdS, CdSe and CdS/CdSe quantum dots (QDs) sensitized TiO_2 NW/NT solar cells were constructed. Among them, The TiO_2 NW/NT solar cells co-sensitized with CdS/CdSe QDs showed higher efficiencies than ones sensitized with CdS or CdSe QDs. By varying successive ionic layer adsorption and reaction (SILAR) cycles of CdS/CdSe, it was found that CdS(9)/CdSe(6)/TiO_2 NW/NT device reached to a maximum power conversion efficiency of 2.41%, which was 78.5% higher than that of the CdS(9)/CdSe(6)/TiO_2 NT solar cell. The excellent photoelectrochemical properties of our solar cell suggest that the translucent TiO_2 NW/NT films co-sensitized with CdS and CdSe QDs have potential application in photovoltaic cells.
机译:半透明的TiO_2纳米线/纳米管(TiO_2 NW / NT)膜由于其在敏化剂负载,电荷分离,电子传输和光收集方面的优势,将成为构建光电化学太阳能电池的有希望的候选者。在此报告中,通过两步阳极氧化方法制备了半透明的TiO_2 NW / NT膜。探索了源自纳米管的纳米线的形成机理。电场驱动水电解产生的氢离子形成离子流,改变了纳米管的界面应力,导致纳米管口垂直或螺旋分裂形成纳米线。构建了CdS,CdSe和CdS / CdSe量子点(QDs)敏化的TiO_2 NW / NT太阳能电池。其中,与CdS / CdSe量子点共敏化的TiO_2 NW / NT太阳能电池具有更高的效率。通过改变CdS / CdSe的连续离子层吸附和反应(SILAR)周期,发现CdS(9)/ CdSe(6)/ TiO_2 NW / NT器件达到2.41%的最大功率转换效率,即78.5。比CdS(9)/ CdSe(6)/ TiO_2 NT太阳能电池高%。我们的太阳能电池优异的光电化学性能表明,与CdS和CdSe QDs共敏化的半透明TiO_2 NW / NT薄膜在光伏电池中具有潜在的应用前景。

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