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Dye-sensitized solar cells with inkjet-printed dyes

机译:带有染料的染料敏化太阳能电池

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摘要

The slow process in which the light absorbing dye molecules are adsorbed from solution on the nanocrystalline TiO2 photoelectrode film has been a handicap to the fast and cost-effective fabrication of dye-sensitized solar cells (DSSCs) using printing techniques. Here, we report a versatile dye sensitization process, achieved by inkjet printing a concentrated dye solution over the TiO2 film, which produces solar cells with equal performance and stability as obtained using the popular dye drop casting method. In addition to allowing precise control of dye loading required for dispensing just the right amount of dye to achieve uniform and full coloration of the TiO2 films without any need for washing off the excess dye, inkjet printing also makes it possible to freely adjust the amount and position of the dye to create DSSCs with tailored transparency, color density gradients, and patterns of one or more dyes on the same electrode. The method was confirmed to be applicable also for non-transparent, high-efficiency DSSC designs that employ a light scattering layer. The inkjet-dyed DSSCs exhibited high stability, retaining almost 100% of their conversion efficiency (η = 6.4 ± 0.2%) and short circuit current density (JSC = 14.2 ± 0.6 mA cm-2) when subjected to a 1000 h accelerated aging test under 1 Sun illumination at 35 °C, followed by additional 1154 hours under 0.5 Sun at 60 °C. These results overcome one of the main hurdles in realizing fully printed DSSCs and open opportunities for entirely new DSSC designs.
机译:吸光染料分子从溶液中吸附到纳米晶TiO2光电极膜上的缓慢过程一直是使用印刷技术快速且经济高效地制造染料敏化太阳能电池(DSSC)的障碍。在这里,我们报告了一种通用的染料敏化工艺,该工艺是通过在TiO2薄膜上喷墨印刷浓缩染料溶液而实现的,该工艺可以生产出与使用流行的染料滴铸法所获得的性能和稳定性相同的太阳能电池。除了可以精确控制分配正确数量的染料所需的染料负载量,以实现TiO2薄膜的均匀和完全着色而无需洗去多余的染料外,喷墨打印还可以自由调节染料的用量和用量。染料的位置,以创建具有定制透明度,色密度梯度以及一种或多种染料在同一电极上的图案的DSSC。确认该方法也适用于采用光散射层的非透明,高效DSSC设计。经过1000小时加速老化测试后,喷墨染色的DSSC表现出很高的稳定性,保留了几乎100%的转换效率(η= 6.4±0.2%)和短路电流密度(JSC = 14.2±0.6 mA cm-2)。在35°C的1个太阳光照下,然后在60°C的0.5个太阳光照下另外1154小时。这些结果克服了实现完全印刷的DSSC以及为全新的DSSC设计提供开放机会的主要障碍之一。

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