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Energy Barriers Restrict Charge Carrier Motion in MAPI Perovskite Films

机译:能量障碍限制MAPI Perovskite薄膜中的电荷载体运动

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Understanding of charge trapping processes in halide perovskites is vital to further improve performance of perovskite optoelectronic devices such as solar cells, photodetectors, and LEDs. In this work, transient photocurrent, time-delayed collection field and transient fluorescence techniques along with numerical simulations are combined to address charge carrier trapping processes during their lateral motion in prototypical methylammonium lead iodide perovskite films formed on interdigitated electrodes. Carrier mobility decreases on hundreds of ns timescale, and its rate depends on the motion character-it is faster when charge carriers drift in the electric field and slower when the motion is caused by diffusion only. This difference becomes particularly evident at low temperatures. Based on the time-delayed collection field data and carrier motion modelling results, it is demonstrated that the rapid mobility decay at low temperatures is mainly caused by the energy barriers, most likely formed at crystallite boundaries. Even though these barriers are surmountable at room temperature, they still play a major role in determining carrier mobility and diffusion rates. Suggested concept of the potential barriers moves beyond the conventional understanding of carrier mobility, diffusion, and recombination processes in hybrid perovskites.
机译:理解卤化物培训过程中的电荷捕获过程对于进一步提高钙钛矿光电器件(例如太阳能电池,光电探测器和LED)的性能至关重要。在该作品中,瞬态光电流,时间延迟收集场和瞬时荧光技术以及数值模拟组合以在其在叉尖电极上形成的原型甲基铅碘化碘化物膜中的横向运动期间寻址电荷载体捕获过程。载流子迁移率降低了数百个时间尺度,其速率取决于运动字符 - 当电磁场在电场中漂移时,当运动引起的速度较慢时,它更快。在低温下,这种差异变得特别明显。基于时间延迟收集现场数据和载波运动建模结果,证明了低温下的快速迁移率衰减主要由能量屏障引起,最有可能在晶体边界形成。尽管这些障碍在室温下被克服,但它们仍然在确定载波移动性和扩散速率方面发挥重要作用。建议潜在障碍的概念超出了杂交钙钛矿中载流动性,扩散和重组过程的常规理解。

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