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Functions of Self-Assembled Ultrafine TiO2Nanocrystals for High Efficient Dye-Sensitized Solar Cells

机译:Functions of self-assembled Ultrafine TiO2Nanocrystals for High Efficient Dye-sensitized solar Cells

摘要

In this paper, we demonstrate a simple approach of self-assembled process to form a very smooth and compacted TiO2 underlayer film from ultrafine titanium oxide (TiO2) nanocrystals with dimension of 4 nm for improving the electrical properties and device performances of dye-sensitized solar cells (DSSCs). Because the TiO2 film self-assembles by simply casting the TiO2 on fluorine-doped tin oxide (FTO) substrate, it can save a lot of materials in the process. As compared with control DSSC without the self-assembled TiO2 (SA-TiO2) layer, short-circuit current density (Jsc) improves from 14.9 mA/cm(2) for control DSSC to 17.3 mA/cm(2) for masked DSSC with the SA-TiO2 layer. With the very smooth SA-TiO2 layer, the power conversion efficiency is enhanced from 8.22% (control) to 9.35% for the DSSCs with mask and from 9.79% (control) to 11.87% for the DSSCs without mask. To explain the improvement, we have studied the optical properties, morphology, and workfunction of the SA-TiO2 layer on FTO substrate as well as the impedance spectrum of DSSCs. Importantly, we find that the SA-TiO2 layers have better morphology, uniformity, and contact with FTO electrode, increased workfunction and optical transmission, as well as reduced charge recombination at the contact of FTO substrate contributing to the improved device performances. Consequently, our results show that the simple self-assembly of TiO2 ultrafine nanocrystals forms a very good electron extraction layer with both improved optical and electrical properties for enhancing performances of DSSCs.
机译:在本文中,我们演示了一种自组装过程的简单方法,该方法由尺寸为4 nm的超细氧化钛(TiO2)纳米晶体形成非常光滑且致密的TiO2底层膜,以改善染料敏化太阳能电池的电性能和器件性能单元(DSSC)。由于TiO2膜通过简单地将TiO2浇铸在掺氟氧化锡(FTO)衬底上而自组装,因此可以节省大量材料。与不带自组装TiO2(SA-TiO2)层的对照DSSC相比,短路电流密度(Jsc)从对照DSSC的14.9 mA / cm(2)改善到采用掩膜DSSC的掩膜DSSC的17.3 mA / cm(2)。 SA-TiO2层。有了非常光滑的SA-TiO2层,带掩模的DSSC的功率转换效率从8.22%(对照)提高到9.35%,不带掩模的DSSC的功率转换效率从9.79%(对照)提高到11.87%。为了解释这种改进,我们研究了FTO衬底上SA-TiO2层的光学性质,形态和功函数,以及DSSC的阻抗谱。重要的是,我们发现SA-TiO2层具有更好的形态,均匀性,并与FTO电极接触,提高了功函和光透射率,并减少了FTO基板接触时的电荷复合,从而改善了器件性能。因此,我们的结果表明,TiO2超细纳米晶体的简单自组装形成了一个非常好的电子提取层,具有改善的光学和电学性质,可增强DSSC的性能。

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