论文标题

局部能量景观驱动2D卤化物钙钛矿半导体中的长激子扩散

Local energy landscape drives long exciton diffusion in 2D halide perovskite semiconductors

论文作者

Baldwin, Alan, Delport, Géraud, Leng, Kai, Chahbazian, Rosemonde, Galkowski, Krzysztof, Loh, Kian Ping, Stranks, Samuel D.

论文摘要

卤化物钙钛矿已成为用于应用包括光伏和光发射器件在内的破坏性半导体,并具有通过组合和维度调整实现的模块化光电特性。 BA2MAN-1PBNI3N+1的分层ruddlesden-popper perovskites,其中N是铅 - 甲基铵和甲基铵(MA)的数量,由于其独特的二维特征和荷兰载体动力学以强大的界限为主导。但是,在这些材料中通过激子扩散通过激子扩散的远程能量传输尚不清楚或实现。在这里,我们采用局部时间分辨的发光映射技术来可视化BA2MAN-1PBNI3N+1个钙钛矿家族的高质量去角质片中的激子传输。根据研究的温度范围,我们发现了两个不同的运输方式。在高于100 K的温度下,扩散是通过局部状态之间的热活化跳跃过程介导的。在较低的温度下,出现了一个不均匀的能量景观,其中激子的传输以能量漏斗过程为主,即使在缺乏激子 - phonon偶联的情况下,也导致数百多纳米的运输量超过数百纳米,并且在存在局部光电杂种的情况下。在这些2D材料中,有效,远程和可开关的激发弹药漏斗为新设备应用提供了令人兴奋的控制方向远程传输的可能性。

Halide perovskites have emerged as disruptive semiconductors for applications including photovoltaics and light emitting devices, with modular optoelectronic properties realisable through composition and dimensionality tuning. Layered Ruddlesden-Popper perovskites of the form BA2MAn-1PbnI3n+1, where n is the number of lead-halide and methylammonium (MA) sheets spaced by longer butylammonium (BA) cations, are particularly interesting due to their unique two-dimensional character and charge carrier dynamics dominated by strongly bound excitons. However, long-range energy transport through exciton diffusion in these materials is not understood or realised. Here, we employ local time-resolved luminescence mapping techniques to visualise exciton transport in high-quality exfoliated flakes of the BA2MAn-1PbnI3n+1 perovskite family. We uncover two distinct transport regimes, depending on the temperature range studied. At temperatures above 100 K, diffusion is mediated by thermally activated hopping processes between localised states. At lower temperatures, a non-uniform energetic landscape emerges in which exciton transport is dominated by energy funnelling processes to lower energy states, leading to long range transport over hundreds of nanometres even in the absence of exciton-phonon coupling and in the presence of local optoelectronic heterogeneity. Efficient, long-range and switchable excitonic funnelling offers exciting possibilities of controlled directional long-range transport in these 2D materials for new device applications.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源