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Accelerated Carrier Relaxation through Reduced Coulomb Screening in Two-Dimensional Halide Perovskite Nanoplatelets

机译:通过减少二维卤化物钙钛矿纳米孔纳薄纳米纳薄纳米片的加速载体弛豫

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摘要

For high-speed optoelectronic applications relying on fast relaxation or energy-transfer mechanisms, understanding of carrier relaxation and recombination dynamics is critical. Here, we compare the differences in photoexcited carrier dynamics in two-dimensional (2D) and quasi-three-dimensional (quasi-3D) colloidal methylammonium lead iodide perovskite nanoplatelets via differential transmission spectroscopy. We find that the cooling of excited electron hole pairs by phonon emission progresses much faster and is intensity independent in the 2D case. This is due to the low dielectric surrounding of the thin perovskite layers, for which the Frohlich interaction is screened less efficiently leading to higher and less density-dependent carrier-phonon scattering rates. In addition, rapid dissipation of heat into the surrounding occurs due to the high surface-to-volume ratio. Furthermore, we observe a subpicosecond dissociation of resonantly excited is excitons in the quasi-3D case, an effect which is suppressed in the 2D nanoplatelets due to their large exciton binding energies. The results highlight the importance of the surrounding environment of the inorganic nanoplatelets on their relaxation dynamics. Moreover, this 2D material with relaxation times in the subpicosecond regime shows great potential for realizing devices such as photodetectors or all-optical switches operating at THz frequencies.
机译:对于依托快速松弛或能量转移机制的高速光电应用,对载体松弛和重组动力学的理解至关重要。在这里,我们通过差分传输光谱比较二维(2D)和准三维(准三维)胶体甲基铅碘化碘化物钙钛矿型钙钛矿型肝素纳米型甲基铅的差异。我们发现,通过声子排放的激发电子孔对的冷却更快,并且在2D情况下是独立的强度。这是由于薄钙钛矿层的低介电周围,因此筛选FroHlICH相互作用较少有效地引起更高且更小的密度载体 - 声子散射速率。此外,由于高度的表面对体积比,发生快速热量进入周围的周围。此外,我们观察到谐振激发的亚磷二辛二辛二十二秒解离子在准3D情况下的激子,由于其大的激子结合能量,在2D纳米孔中被抑制的效果。结果突出了无机纳米孔的周围环境对其放松动态的重要性。此外,在子类别稳定条件中具有松弛时间的这种2D材料显示出实现在THz频率下操作的光电探测器或所有光学开关等设备的巨大潜力。

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