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Acetic Acid Assisted Crystallization Strategy for High Efficiency and Long‐Term Stable Perovskite Solar Cell

机译:醋酸辅助结晶策略可实现高效长期稳定的钙钛矿太阳能电池

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摘要

Improving the quality of perovskite poly‐crystalline film is essential for the performance of associated solar cells approaching their theoretical limit efficiency. Pinholes, unwanted defects, and nonperovskite phase can be easily generated during film formation, hampering device performance and stability. Here, a simple method is introduced to prepare perovskite film with excellent optoelectronic property by using acetic acid (Ac) as an antisolvent to control perovskite crystallization. Results from a variety of characterizations suggest that the small amount of Ac not only reduces the perovskite film roughness and residual PbI but also generates a passivation effect from the electron‐rich carbonyl group (C=O) in Ac. The best devices produce a PCE of 22.0% for Cs FA MA Pb(I Br ) and 23.0% for Cs FA MA Pb(I Br ) on 0.159 cm with negligible hysteresis. This further improves device stability producing a cell that maintained 96% of its initial efficiency after 2400 h storage in ambient environment (with controlled relative humidity (RH) <30%) without any encapsulation.
机译:钙钛矿多晶膜的质量提高对于相关太阳能电池的性能接近其理论极限效率至关重要。在成膜过程中容易产生针孔,有害缺陷和非钙钛矿相,从而影响器件性能和稳定性。在此,介绍了一种简单的方法,该方法通过使用乙酸(Ac)作为控制钙钛矿结晶的抗溶剂来制备具有优异光电性能的钙钛矿膜。各种表征的结果表明,少量的Ac不仅会降低钙钛矿膜的粗糙度和残留的PbI,而且还会由于Ac中的富电子羰基(C = O)产生钝化作用。最好的器件在0.159 cm处产生的Cs FA MA Pb(I Br)的PCE为22.0%,而Cs FA MA Pb(I Br)的PCE则为23.0%,滞后可以忽略不计。这进一步提高了设备​​的稳定性,从而生产出一种电池,该电池在周围环境中储存2400小时(保持相对湿度(RH)<30%)后,没有任何封装即可保持其初始效率的96%。

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