论文标题
2D perovskites中的激子和载体动力学
Exciton and Carrier Dynamics in 2D Perovskites
论文作者
论文摘要
二维Ruddlesden-Popper混合铅卤化物钙钛矿已成为钙钛矿光电子学的主要主题。在这里,我们旨在揭示管理这些材料中电荷载体和激子演变的超快动力学。使用超生殖带时间分辨的THZ(TRTS)和荧光上转换光谱镜的组合,我们发现顺序载体冷却和激子形成最能解释观察到的动态,其中Ickiton-Exciton相互作用在Exciton-Exciton相互作用中起着重要的作用,在螺旋体热和Biexciton形成的形式中起着重要作用。我们表明,长期寿命的载体人口的存在是由于这些过程而不是莫特过渡。因此,激光激发密度仍然占主导地位。我们使用动力学建模来比较脂肪胺有机阳离子,同时研究所得膜的稳定性。此外,我们证明了通过室温下的光谱分析使用Ultrabroadband TRT来研究大型结合能半导体中的激子的能力。
Two-dimensional Ruddlesden-Popper hybrid lead halide perovskites have become a major topic in perovskite optoelectronics. Here, we aim to unravel the ultrafast dynamics governing the evolution of charge carriers and excitons in these materials. Using a combination of ultrabroadband time-resolved THz (TRTS) and fluorescence upconversion spectroscopies, we find that sequential carrier cooling and exciton formation best explain the observed dynamics, where exciton-exciton interactions play an important role in the form of Auger heating and biexciton formation. We show that the presence of a longer-lived population of carriers is due to these processes and not to a Mott transition. Therefore, excitons still dominate at laser excitation densities. We use kinetic modeling to compare the phenethylammonium and butylammonium organic cations while investigating the stability of the resulting films. In addition, we demonstrate the capability of using ultrabroadband TRTS to study excitons in large binding energy semiconductors through spectral analysis at room temperature.