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面向降低钙钛矿激光器阈值的传输层工程

Transport Layer Engineering Toward Lower Threshold for Perovskite Lasers.

作者信息

Zhang Jia, Qin Jiajun, Cai Weidong, Tang Yipeng, Zhang Huotian, Wang Tong, Bakulin Artem, Hu Bin, Liu Xiao-Ke, Gao Feng

机构信息

Department of Physics, Chemistry and Biology, Linköping University, Linköping, 58183, Sweden.

Department of Materials Science and Engineering, University of Tennessee, Knoxville, Tennessee, 37996, USA.

出版信息

Adv Mater. 2023 Jul;35(30):e2300922. doi: 10.1002/adma.202300922. Epub 2023 Jun 11.

Abstract

Charge-transport layers are essential for achieving electrically pumped perovskite lasers. However, their role in perovskite lasing is not fully understood. Here, the role of charge-transport layers on the lasing actions of perovskite films is explored by investigating the amplified spontaneous emission (ASE) thresholds. A largely reduced ASE threshold and enhanced ASE intensity is demonstrated by introducing an additional hole transport layer poly(triaryl amine) (PTAA). It is shown that the key role of the PTAA layer is to accelerate the hot-carrier cooling process by extracting holes in perovskites. With reduced hot holes, the Auger recombination loss is largely suppressed, resulting in decreased ASE threshold. This argument is further supported by the fact that the ASE threshold can be further reduced from 25.7 to 7.2 µJ cm upon switching the pumping wavelength from 400 to 500 nm to directly avoid excess hot-hole generation. This work exemplifies how to further reduce the ASE threshold with transport layer engineering through hot-hole manipulation. This is critical to maintaining the excellent gain properties of perovskites when integrating them into electrical devices, paving the way for electrically pumped perovskite lasers.

摘要

电荷传输层对于实现电泵浦钙钛矿激光器至关重要。然而,它们在钙钛矿激光发射中的作用尚未完全明晰。在此,通过研究放大自发辐射(ASE)阈值,探索了电荷传输层对钙钛矿薄膜激光发射行为的作用。通过引入额外的空穴传输层聚(三芳基胺)(PTAA),实现了ASE阈值的大幅降低和ASE强度的增强。结果表明,PTAA层的关键作用是通过提取钙钛矿中的空穴来加速热载流子冷却过程。随着热空穴的减少,俄歇复合损失得到大幅抑制,从而降低了ASE阈值。当将泵浦波长从400nm切换到500nm以直接避免过多热空穴的产生时,ASE阈值可从25.7进一步降低至7.2µJ/cm²,这一事实进一步支持了上述观点。这项工作例证了如何通过热空穴操控,利用传输层工程进一步降低ASE阈值。这对于将钙钛矿集成到电子器件中时保持其优异的增益特性至关重要,为电泵浦钙钛矿激光器铺平了道路。

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