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Curing of degraded MAPbI3 perovskite films

机译:降解Mapbi3钙钛矿薄膜的固化

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Perovskite films were prepared using one-step solution deposition. The prepared films were degraded for 14 days under ambient atmosphere with controlled humidity of 60 ± 5%. The degraded films showed separated regions of PbI _(2) -rich and methylammonium iodide (MAI)-rich phases. Through X-ray, UV and electron beam irradiation, a fast recovery of perovskite was initiated in the MAI regions and the photoproduct further spread into the PbI _(2) regions over a time frame of minutes. Ultraviolet and electron beam were also explored as irradiation sources and the same photoinduced perovskite formation was observed in each case. XRD results proved that the photoproduct is indeed tetragonal perovskite MAPbI _(3) . A slower conversion process can be achieved by storing the degraded samples at 25% ± 5% humidity. It is also observed that samples degraded at high humidity can be recovered by thermal annealing at a temperature as low as 35 °C. In this work, recovery of the aged perovskite films from decomposed phases (intermediate phase and PbI _(2) ) is shown to be feasible, which paves a new way for sustainable perovskite-based solar cells.
机译:使用一步溶液沉积制备钙钛矿薄膜。制备的薄膜在环境大气下降解14天,湿度为60±5%。降解的薄膜显示出PBI _(2) - 中的分离区域和甲基碘化甲基碘化物(MAI) - 阶段。通过X射线,UV和电子束照射,在MAI区中启动钙钛矿的快速恢复,并在分钟的时间内进一步扩散到PBI _(2)区。紫外线和电子束也被探索为照射源,并且在每种情况下观察到相同的光致钙钛矿形成。 XRD结果证明,光前保护确实是四方钙钛矿Mapbi _(3)。通过将降解的样品存储在25%±5%湿度下,可以实现较慢的转换过程。还观察到,在高达35℃的温度下,可以通过热退火在高湿度下降解的样品。在这项工作中,将来自分解相的老化钙钛矿薄膜(中间相和PBI _(2))恢复是可行的,其为基于可持续的Perovskite的太阳能电池铺平了一种新的方式。

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