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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Controlled fabrication of mesoporous TiO2 hierarchical structures as scattering layers to enhance the power conversion efficiency of dye-sensitized solar cells
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Controlled fabrication of mesoporous TiO2 hierarchical structures as scattering layers to enhance the power conversion efficiency of dye-sensitized solar cells

机译:受控制造介孔TiO2分层结构作为散射层,以提高染料敏化太阳能电池的功率转换效率

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摘要

To meet the nanofabrication requirements, such as control of structure and scalability, we investigated an electrospray-based method to manufacture scattering layers (SLs) for dye-sensitized solar cells (DSSCs). TiO2 spherical and disk-shaped particles with a large surface area, high crystallinity, uniform nanostructure and good light scattering properties were fabricated via a simple electrospray method. We showed how the morphology and structure of the resulting films can be controlled by varying the droplet evaporation rates before impact on the substrate. Thus, by tuning the process conditions, high-quality TiO2 spheres and disks were obtained. Then, these mesoporous TiO2 particles were used as the SLs in photoelectrodes, which resulted in enhanced power conversion efficiency (PCE). Compared with conventional SLs (8.45%), DSSCs based on spherical and disk-shaped particle SLs yield higher PCEs of 9.0% and 9.53%, respectively. This is because the generated TiO2 spheres and disks provide a large surface area and exhibit excellent light scattering capabilities, allowing a low total internal resistance and a long electron lifetime.
机译:为了满足纳米制造的要求,例如结构和可扩展性的控制,我们研究了一种基于电喷雾的方法,用于制造染料敏化太阳能电池(DSSC)的散射层(SL)。通过简单的电喷雾法制备了具有大表面积,高结晶度,均匀的纳米结构和良好的光散射特性的TiO 2球形和盘状颗粒。我们展示了如何通过在影响基材之前改变液滴的蒸发速率来控制所得薄膜的形态和结构。因此,通过调整工艺条件,可以获得高质量的TiO2球和圆盘。然后,将这些介孔的TiO2颗粒用作光电极中的SL,从而提高了功率转换效率(PCE)。与传统的SL(8.45%)相比,基于球形和盘状颗粒SL的DSSC的PCE分别更高,分别为9.0%和9.53%。这是因为生成的TiO2球和盘具有较大的表面积,并具有出色的光散射能力,因此总内阻低,电子寿命长。

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