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Highly Efficient and Stable MAPbI3 Perovskite Solar Cell Induced by Regulated Nucleation and Ostwald Recrystallization

机译:调节成核和奥斯特瓦尔德重结晶诱导的高效稳定的MAPbI3钙钛矿太阳能电池

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摘要

Perovskite solar cells have attracted great attention in recent years, due to their high conversion efficiency and solution-processable fabrication. However, most of the solar cells with high efficiency in the literature are prepared employing TiO2 as electron transport material, which needs sintering at a temperature higher than 450 °C, and is not applicable to flexible device and low-cost fabrication. Herein, the MAPbI3 perovskite solar cells are fabricated at a low temperature of 150 °C with SnO2 as the electron transport layer. By dropping the antisolvent of ethyl acetate onto the perovskite precursor films during the spin coating process, compact MAPbI3 films without pinholes are obtained. The addition of ethyl acetate is found to play an important role in regulating the nucleation, which subsequently improves the compactness of the film. The quality of MAPbI3 films are further improved significantly through Ostwald recrystallization by optimizing the thermal treatment. The crystallinity is enhanced, the grain size is enlarged, and the defect density is reduced. Accordingly, the prepared MAPbI3 perovskite solar cell exhibits a record-high conversion efficiency, outstanding reproducibility, and stability, owing to the reduced electron recombination. The average and best efficiency reaches 19.2% and 20.3%, respectively. The device without encapsulation maintains 94% of the original efficiency after storage in ambient air for 600 h.
机译:钙钛矿型太阳能电池由于其高转换效率和可溶液加工的制造而备受关注。然而,文献中大多数高效率的太阳能电池是使用TiO 2作为电子传输材料制备的,其需要在高于450℃的温度下烧结,并且不适用于柔性装置和低成本制造。在此,以SnO 2作为电子传输层,在150℃的低温下制造了MAPbI 3钙钛矿型太阳能电池。通过在旋涂过程中将乙酸乙酯的抗溶剂滴到钙钛矿前体薄膜上,可以获得无针孔的致密MAPbI3薄膜。发现添加乙酸乙酯在调节成核中起重要作用,其随后改善了膜的致密性。通过优化热处理,Ostwald重结晶可进一步显着提高MAPbI3膜的质量。结晶度提高,晶粒尺寸增大,缺陷密度降低。因此,由于减少的电子复合,所制备的MAPbI 3钙钛矿太阳能电池表现出创纪录的高转化效率,优异的可再现性和稳定性。平均效率和最佳效率分别达到19.2%和20.3%。在没有封装的情况下,该器件在环境空气中存储600小时后,可以保持原始效率的94%。

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