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通过飞秒激光直接写入实现钙钛矿多边形微腔中的回音壁模式激光发射。

Whispering Gallery Mode Lasing from Perovskite Polygonal Microcavities via Femtosecond Laser Direct Writing.

作者信息

Tian Xiaoyu, Wang Lin, Li Wei, Lin Qianqian, Cao Qiang

机构信息

The Institute of Technological Sciences, Wuhan University, Wuhan 430072, China.

Key Laboratory of Advanced Display and System Applications of Ministry of Education, Shanghai University, 149 Yanchang Road, Shanghai 200072, China.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 14;13(14):16952-16958. doi: 10.1021/acsami.0c21824. Epub 2021 Apr 1.

Abstract

Organic-inorganic halide perovskites have excellent intrinsic properties, such as long carrier lifetime, high photoluminescence quantum yield, and high gain, in whispering gallery mode (WGM) cavities by facile vapor self-assembly or solution process, which make them competitive for high-performance microlasers. However, the performance of perovskite-based microlasers is severely limited by the fabrication of microcavities, which results in poor reproducibility and uncontrolled morphology. Herein, we explore a reproducible method which combined thermal co-evaporation with femtosecond (fs) laser direct writing for formamidinium lead iodide (FAPbI) perovskite polygon-shaped WGM microcavities. The microlasers pumped with the fs laser had a low threshold of 4.0-12.3 μJ/cm and narrow full width at half-maximum of 0.62-1.05 nm. Moreover, size- and shape-dependent WGM lasing performances are also investigated systematically. The results prove that FAPbI polygonal microcavities can serve as promising WGM lasers and have great potential for practical optoelectronic applications.

摘要

有机-无机卤化物钙钛矿具有优异的本征特性,例如长载流子寿命、高光致发光量子产率和高增益,通过简便的气相自组装或溶液法在回音壁模式(WGM)微腔中制备,这使其在高性能微激光器方面具有竞争力。然而,基于钙钛矿的微激光器的性能受到微腔制造的严重限制,这导致可重复性差和形态无法控制。在此,我们探索了一种可重复的方法,该方法将热共蒸发与飞秒(fs)激光直接写入相结合,用于制备甲脒碘化铅(FAPbI)钙钛矿多边形WGM微腔。用飞秒激光泵浦的微激光器具有4.0 - 12.3 μJ/cm的低阈值和0.62 - 1.05 nm的窄半高宽。此外,还系统地研究了尺寸和形状依赖的WGM激光性能。结果证明,FAPbI多边形微腔可作为有前景的WGM激光器,在实际光电子应用中具有巨大潜力。

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