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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Reconstruction of the (001) surface of TiO2 nanosheets induced by the fluorine-surfactant removal process under UV-irradiation for dye-sensitized solar cells
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Reconstruction of the (001) surface of TiO2 nanosheets induced by the fluorine-surfactant removal process under UV-irradiation for dye-sensitized solar cells

机译:染料敏化太阳能电池在紫外线照射下通过氟表面活性剂去除工艺诱导的TiO2纳米片的(001)表面重建

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The champion dye-sensitized solar cells (DSSCs) based on TiO2 nanoparticles nearly reach the limit of photo-current density using the black dye or zinc porphyrin dye as sensitizer. However, the way to make ordinary DSSCs more efficient as well as to understand the mechanism is still essential. Here we present an elegant UV irradiation treatment of TiO2 nanosheets to enhance the performance of DSSCs based on the TiO2 nanosheets via room temperature removal of inorganic surfactants and reconstruction of the (001) surface of TiO2 nanosheets, killing two birds with one stone. UV irradiation was utilized to remove the fluorine-surfactant on the surface of anatase TiO2 nanosheets with a high percentage of exposed {001} facets which were synthesized with the aid of hydrofluoric acid. The nanosheets treated with UV irradiation for 40 min had the advantage of improving the photoelectric conversion efficiency of DSSCs by 17.6%, compared to that without UV treatment when they were introduced into DSSCs as photoanode materials. The improved efficiency was ascribed to more dye adsorption. A theoretical calculation proposed that UV irradiation induced microfaceted steps on the TiO2 surface by two domain (1 x 4) reconstruction after UV irradiating the (1 x 1) (001) surface. The microfaceted steps increase the active surface area of the TiO2 nanosheets by increasing the exposure of titanium atoms and engendering active sites.
机译:使用黑色染料或锌卟啉染料作为敏化剂,基于TiO2纳米粒子的冠军染料敏化太阳能电池(DSSC)几乎达到了光电流密度的极限。但是,使普通DSSC更加有效以及理解该机制的方法仍然至关重要。在这里,我们介绍了一种TiO2纳米片的优雅的紫外线照射处理方法,以通过在室温下去除无机表面活性剂和重建TiO2纳米片的(001)表面,从而增强TiO2纳米片的DSSC的性能,用一块石头杀死两只鸟。利用紫外线辐射来去除具有高百分比的暴露的{001}面的锐钛矿型TiO 2纳米片表面上的氟表面活性剂,所述表面是借助于氢氟酸合成的。当将纳米片作为光阳极材料引入DSSC中时,与未经UV处理的纳米片相比,未经UV处理的纳米片具有将DSSC的光电转换效率提高17.6%的优势。效率的提高归因于更多的染料吸附。理论计算表明,紫外线辐射(1 x 1)(001)表面后,通过两个域(1 x 4)重构,紫外线辐射在TiO2表面上引起了微面台阶。微面步骤通过增加钛原子的暴露并产生活性位点来增加TiO2纳米片的活性表面积。

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