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How photon pump fluence changes the charge carrier relaxation mechanism in an organic-inorganic hybrid lead triiodide perovskite

机译:光子泵注量如何改变有机-无机杂化三碘化钙钛矿中载流子的弛豫机理

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This study explores the excitation wavelength and fluence dependence of processes occurring in formamidinium lead triiodide (FAPbI(3)) film using time-resolved transient absorption and terahertz spectroscopies. The results indicate that second-order processes are responsible for charge carrier recombination at low fluences of the absorbed photons (below 8.4 x 10(12) ph per cm(2)). An increase in fluence leads to the appearance and successive reduction of the time component assigned to the Auger recombination of free charge carriers (240-120 ps). Simultaneously, the bimolecular recombination time decreases from similar to 1400 to B similar to 700 ps. Further increasing the pump fluence produces an exciton population that recombines in 6 ps. The comparison of two characteristic bleaching bands located at 480 and 775 nm provides evidence for the validity of the two valence bands model. Excitation with higher fluences results in a marked difference in the probed dynamics at these bands, reflecting the action of two excited states at the conduction band. Our results demonstrate that a single model cannot be applied in characterizing the perovskite absorber transitions at all pump fluences. These findings are relevant in understanding their operating mechanism under specific experimental conditions, which should differ for perovskite based solar cells, lasing media or photon detectors.
机译:这项研究使用时间分辨的瞬态吸收和太赫兹光谱学探索了三碘甲lead(FAPbI(3))薄膜中发生的过程的激发波长和注量依赖性。结果表明,二阶过程负责在低通量吸收光子(低于8.4 x 10(12)ph / cm(2)时)的载流子复合。通量的增加导致出现并相继减少了分配给自由电荷载子的俄歇重组的时间成分(240-120 ps)。同时,双分子重组时间从相似的1400减少到相似的700 ps的B。进一步提高泵浦注量会产生激子,其激子在6 ps时重新组合。位于480和775 nm处的两个特征性漂白带的比较为两个价带模型的有效性提供了证据。具有较高通量的激发导致在这些频带上探测到的动力学有显着差异,反映出在导带处两个激发态的作用。我们的结果表明,无法在所有泵注量下,都无法使用单个模型来表征钙钛矿吸收体的过渡。这些发现与了解它们在特定实验条件下的运行机制有关,这对于基于钙钛矿的太阳能电池,激光介质或光子探测器而言应该有所不同。

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