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Impact of Moisture on Mobility in Methylammonium Lead Iodide and Formamidinium Lead Iodide

机译:水分对甲基甲基铅碘化物和甲脒铅碘化素的影响

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摘要

The greatest remaining barrier to the commercialization of perovskite solar cells is their instability to ambient environmental conditions. While most studies of the electronic stability of perovskites employ finished devices, we here exploit the contactless characterization technique time-resolved microwave conductivity to probe electronic properties in the absence of encapsulation and interface effects. By tracking the mobility of charge carriers in two archetypal perovskite compounds, methylammonium lead iodide (MAPbI(3)) and formamidinium lead iodide (FAPbI(3)) under various conditions, we are able to make decisive statements about the role of water in the electronic performance of perovskites. Overall, we observe a strong negative correlation between hydration and mobility in MAPbI(3), but not in FAPbI(3). We anticipate that the data presented herein will serve as a valuable resource in future stability studies in perovskite solar cells and, ultimately, lead to more stable devices.
机译:钙钛矿太阳能电池商业化的最大剩余障碍是它们对环境环境条件的不稳定性。虽然大多数关于佩罗夫斯基特电子稳定性的研究采用成品设备,但我们在这里利用非接触式表征技术将时间分辨微波电导率探测到探针电子性质,在没有封装和界面效应的情况下。通过在两种原型钙钛矿化合物中跟踪电荷载体的迁移率,在各种条件下,甲基铅碘化物(MAPBI(3))和甲脒铅碘化物(FAPBI(3)),我们能够对水的作用作出决定性陈述佩罗夫斯基斯的电子表现。总体而言,我们观察Mapbi(3)中水合和流动性之间的强烈负相关,但不在FAPBI(3)中。我们预期本文所提供的数据将作为未来佩洛夫斯克术太阳能电池的稳定性研究中的宝贵资源,最终导致更稳定的设备。

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