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Excitation of Wet Perovskite Films by Ultrasonic Vibration Improves the Device Performance

机译:超声振动激发钙钛矿湿膜可改善器件性能

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In this work, a novel, facile, and low-cost mechanical post treatment technique, i.e., ultrasonic substrate vibration post treatment (SVPT) is applied on wet spun perovskite layers. The effect of varying the time of the SVPT on the characteristics of the perovskite crystals and the perovskite film is studied, in order to achieve the optimum time duration of the SVPT. Among the results, it is found that the application of only three minutes of the SVPT (for the ultrasonic vibration assembly used in this study, operated at 40 kHz) brings about significant improvement in the film coverage, and the contact between the perovskite and the m-TiO 2 layers, owing to the effective penetration of the perovskite solution into the pores, leading to a superior charge transfer, and a significant increase in the device power conversion efficiency (PCE), when compared to the control device. This unprecedented effect is repeatable when applied on both single and mixed halide perovskites, putting forward a reliable and low-cost mechanical technique for the fabrication of perovskite solar cells (PSCs) in the lab and beyond, which could reduce or eliminate the tedious and expensive chemical optimization treatments, commonly used to increase the PCE.
机译:在这项工作中,一种新颖,简便且低成本的机械后处理技术,即超声基片振动后处理(SVPT)被应用于湿纺钙钛矿层。研究了改变SVPT时间对钙钛矿晶体和钙钛矿薄膜特性的影响,以达到SVPT的最佳持续时间。在这些结果中,发现仅使用三分钟的SVPT(对于本研究中使用的超声振动组件,以40 kHz的频率进行操作)就可以显着改善薄膜覆盖率,并且钙钛矿与钙钛矿之间的接触也可以显着改善。与控制设备相比,由于钙钛矿溶液有效渗透到孔中,导致了m-TiO 2层的迁移,从而导致优异的电荷转移,并显着提高了设备​​功率转换效率(PCE)。当应用于单一和混合卤化物钙钛矿时,这种空前的效果是可重复的,从而提出了一种可靠且低成本的机械技术,用于在实验室内外制造钙钛矿太阳能电池(PSC),可以减少或消除繁琐而昂贵的过程化学优化处理,通常用于增加PCE。

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