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Method to Increase the Surface Area of Titania Films and Its Effects on the Performance of Dye-Sensitized Solar Cells

机译:增加二氧化钛膜表面积的方法及其对染料敏化太阳能电池性能的影响

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摘要

We report a method to increase the surface area of the titania films used as the anodes of dye-sensitized solar cells (DSSCs) by applying additional titania-coating. The modification was achieved by spin-coating a coating solution that contained a surfactant with a titania source onto the titania electrodes, followed by calcination. Previous similar attempts without a surfactant all reported decreased surface areas. We fabricated DSSCs by using the modified titania films as the anode and measured their performances. The increased surface area increased the amount of adsorbed dyes, which resulted in increased current densities. At the same time, the titania-coating increased both the open-circuit voltage and the current density by reducing the charge-recombination rates of the injected electrons, similar to the results of literatures. Therefore, our method shows an additional mechanism to increase the current density of DSSCs in addition to the other mechanisms of surface modifications with titania-coatings.
机译:我们报告了一种方法,通过应用额外的二氧化钛涂层来增加用作染料敏化太阳能电池(DSSCs)阳极的二氧化钛薄膜的表面积。通过将包含具有二氧化钛源的表面活性剂的涂料溶液旋涂到二氧化钛电极上,然后煅烧来实现改性。先前没有表面活性剂的类似尝试均报道了表面积减小。我们通过使用改性的二氧化钛薄膜作为阳极来制造DSSC,并测量其性能。增加的表面积增加了吸附染料的量,这导致电流密度增加。同时,二氧化钛涂层通过降低注入的电子的电荷复合率而增加了开路电压和电流密度,类似于文献的结果。因此,除了用二氧化钛涂层进行表面改性的其他机理外,我们的方法还显示了增加DSSC电流密度的其他机理。

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