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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Imaging Excited State Dynamics in Layered 2D Perovskites with Transient Absorption Microscopy
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Imaging Excited State Dynamics in Layered 2D Perovskites with Transient Absorption Microscopy

机译:具有瞬态吸收显微镜的分层2D Perovskites中的兴奋状态动态

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Two-dimensional (2D) hybrid perovskites are generating broad scientific interest because of their potential for use in photovoltaics and microcavity lasers. It has recently been demonstrated that mixtures of quantum wells with different thicknesses can be assembled in films with heterogeneous quantum well distributions. Large (small) quantum wells are concentrated at the air side (substrate side) of the films, thereby promoting directional energy and/or electron transfer. However, profiles of the quantum well concentrations have not been directly measured throughout the full thicknesses of the films. Similarly, the lateral motions of the excitations in these systems are not well-characterized. In this work, we perform focused ion beam milling tests to establish quantum well concentrations as a function of depth in layered 2D perovskite films. In addition, transient absorption microscopy is used to investigate carrier diffusion and two-body recombination processes. Comparisons of the layered films with phase-pure single crystals reveal that diffusion is suppressed by grain boundaries in the films, which in turn promotes two-body recombination. Similar behaviors were previously observed in bulk perovskite films and single crystals. These studies suggest that the morphology of the film, rather than the identity of the material, is the primary factor that governs the two-body recombination dynamics. Enhancement of the two-body recombination processes is desirable for applications such as microcavity lasers.
机译:二维(2D)杂交钙耐力为广泛的科学兴趣产生广泛的科学兴趣,因为它们在光伏和微腔激光器中使用的可能性。最近已经证明,具有不同厚度的量子阱的混合物可以在具有异质量子孔分布的薄膜中组装。大(小)量子孔浓缩在薄膜的空气侧(基板侧)处,从而促进定向能量和/或电子转移。然而,在薄膜的整个完整厚度上尚未直接测量量子阱浓度的谱。类似地,这些系统中的激发的横向运动不是很好的特征。在这项工作中,我们执行聚焦离子束铣削测试以建立量子阱浓度,作为层状2D钙钛矿膜中的深度的函数。此外,瞬时吸收显微镜用于研究载体扩散和双体重组过程。用相纯单晶的分层膜的比较显示,通过薄膜中的晶界抑制扩散,又促进了两体重组。以前在散装钙钛矿膜和单晶中观察到类似的行为。这些研究表明,薄膜的形态,而不是材料的身份,是治理双体重组动态的主要因素。对双体重组过程的增强是可用于诸如微腔激光器的应用。

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