论文标题

了解碘化铅过量对甲基铵铅碘化物钙钛矿太阳能电池的作用

Understanding the Effect of Lead Iodide Excess on the Performance of Methylammonium Lead Iodide Perovskite Solar Cells

论文作者

Ahmad, Zeeshan, Scheidt, Rebecca A., Hautzinger, Matthew P., Zhu, Kai, Beard, Matthew C., Galli, Giulia

论文摘要

有机无机铅卤化物钙钛矿太阳能电池中未反应的铅碘化物的存在与功率转化效率的提高广泛相关。我们通过确定碘化甲基二叶钙钛矿膜和碘化铅过多的表面和界面的作用来研究这种增加的机制。我们展示了在不同条件下产生的I型和II型带对齐方式如何导致表面缺陷或孔注射的钝化。通过对固体界面的第一原理模拟,我们发现碘化铅可捕获碘化甲基铵铅中的孔,并调节钙钛矿中缺陷的形成,影响重组。使用表面敏感的光谱技术,例如瞬时反射率和时间分辨的光致发光,我们显示了多余的碘化铅如何影响甲基胺铅碘化物膜中电荷载体的扩散和表面重组速度。我们的耦合实验和理论结果阐明了碘化铅在钙钛矿太阳能电池中的作用。

The presence of unreacted lead iodide in organic-inorganic lead halide perovskite solar cells is widely correlated with an increase in power conversion efficiency. We investigate the mechanism for this increase by identifying the role of surfaces and interfaces present between methylammonium lead iodide perovskite films and excess lead iodide. We show how type I and II band alignments arising under different conditions result in either passivation of surface defects or hole injection. Through first-principles simulations of solid-solid interfaces, we find that lead iodide captures holes from methylammonium lead iodide and modulates the formation of defects in the perovskite, affecting recombination. Using surface-sensitive optical spectroscopy techniques, such as transient reflectance and time-resolved photoluminescence, we show how excess lead iodide affects the diffusion and surface recombination velocity of charge carriers in methylammonium lead iodide films. Our coupled experimental and theoretical results elucidate the role of excess lead iodide in perovskite solar cells.

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