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Enhanced photovoltaic properties in dye sensitized solar cells by surface treatment of SnO2 photoanodes

机译:通过表面处理SnO2光阳极提高染料敏化太阳能电池的光伏性能

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摘要

We report the fabrication and testing of dye sensitized solar cells (DSSC) based on tin oxide (SnO2) particles of average size ~20 nm. Fluorine-doped tin oxide (FTO) conducting glass substrates were treated with TiOx or TiCl4 precursor solutions to create a blocking layer before tape casting the SnO2 mesoporous anode. In addition, SnO2 photoelectrodes were treated with the same precursor solutions to deposit a TiO2 passivating layer covering the SnO2 particles. We found that the modification enhances the short circuit current, open-circuit voltage and fill factor, leading to nearly 2-fold increase in power conversion efficiency, from 1.48% without any treatment, to 2.85% achieved with TiCl4 treatment. The superior photovoltaic performance of the DSSCs assembled with modified photoanode is attributed to enhanced electron lifetime and suppression of electron recombination to the electrolyte, as confirmed by electrochemical impedance spectroscopy (EIS) carried out under dark condition. These results indicate that modification of the FTO and SnO2 anode by titania can play a major role in maximizing the photo conversion efficiency.
机译:我们报告了基于平均尺寸约为20 nm的氧化锡(SnO2)颗粒的染料敏化太阳能电池(DSSC)的制造和测试。在流延铸造SnO2介孔阳极之前,用TiOx或TiCl4前体溶液处理掺杂氟的氧化锡(FTO)导电玻璃基板,以形成阻挡层。另外,用相同的前体溶液处理SnO2光电电极以沉积覆盖SnO2颗粒的TiO2钝化层。我们发现,这种修改增强了短路电流,开路电压和填充因子,从而导致功率转换效率几乎提高了2倍,从未经任何处理的1.48%提高到采用TiCl4处理的2.85%。如在黑暗条件下进行的电化学阻抗谱(EIS)所证实的那样,与修饰的光电阳极组装在一起的DSSC的优异光伏性能归因于延长的电子寿命并抑制了电子重新结合到电解质中。这些结果表明,二氧化钛对FTO和SnO2阳极的改性可以在最大程度提高光转换效率方面发挥重要作用。

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