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The Effect of Decomposed PbI2 on Microscopic Mechanisms of Scattering in CH3NH3PbI3 Films

机译:分解的PbI2对CH3NH3PbI3薄膜散射的微观机理的影响

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摘要

Hybrid organic-inorganic perovskites (HOIPs) exhibit long electronic carrier diffusion length, high optical absorption coefficient, and impressive photovoltaic device performance. At the core of any optoelectronic device lie the charge transport properties, especially the microscopic mechanism of scattering, which must efficiently affect the device function. In this work, CH3NH3PbI3 (MAPbI3) films were fabricated by a vapor solution reaction method. Temperature-dependent Hall measurements were introduced to investigate the scattering mechanism in MAPbI3 films. Two kinds of temperature-mobility behaviors were identified in different thermal treatment MAPbI3 films, indicating different scattering mechanisms during the charge transport process in films. We found that the scattering mechanisms in MAPbI3 films were mainly influenced by the decomposed PbI2 components, which could be easily generated at the perovskite grain boundaries (GBs) by releasing the organic species after annealing at a proper temperature. The passivation effects of PbI2 in MAPbI3 films were investigated and further discussed with emphasis on the scattering mechanism in the charge transport process.
机译:杂化有机-无机钙钛矿(HOIP)表现出长的电子载流子扩散长度,高的光吸收系数和令人印象深刻的光伏器件性能。任何光电设备的核心都在于电荷传输特性,尤其是散射的微观机制,必须有效影响器件的功能。在这项工作中,通过气相反应法制备了CH3NH3PbI3(MAPbI3)膜。引入了与温度有关的霍尔测量,以研究MAPbI3薄膜中的散射机理。在不同的热处理MAPbI3薄膜中发现了两种温度迁移行为,表明薄膜电荷传输过程中的不同散射机制。我们发现,MAPbI3薄膜中的散射机制主要受分解的PbI2成分的影响,在适当的温度下退火后释放有机物很容易在钙钛矿晶界(GBs)上生成。研究了PbI2在MAPbI3薄膜中的钝化效果,并着重讨论了电荷传输过程中的散射机理。

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