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基于苝二酰亚胺的自组装微盘激光器。

Self-Assembled Microdisk Lasers of Perylenediimides.

机构信息

Beijing National Laboratory for Molecular Sciences (BNLMS), Institute of Chemistry, Chinese Academy of Sciences , Beijing 100190, People's Republic of China.

Graduate University of Chinese Academy of Sciences , Beijing 100049, People's Republic of China.

出版信息

J Am Chem Soc. 2015 Dec 9;137(48):15105-11. doi: 10.1021/jacs.5b10353. Epub 2015 Dec 1.

Abstract

Organic solid-state lasers (OSSLs) have been a topic of intensive investigations. Perylenediimide (PDI) derivatives are widely used in organic thin-film transistors and solar cells. However, OSSLs based on neat PDIs have not been achieved yet, owing to the formation of H-aggregates and excimer trap-states. Here, we demonstrated the first PDI-based OSSL from whispering-gallery mode (WGM) hexagonal microdisk (hMD) microcavity of N,N'-bis(1-ethylpropyl)-2,5,8,11-tetrakis(p-methyl-phenyl)-perylenediimide (mp-PDI) self-assembled from solution. Single-crystal data reveal that mp-PDI molecules stack into a loosely packed twisted brickstone arrangement, resulting in J-type aggregates that exhibit a solid-state photoluminescence (PL) efficiency φ > 15%. Moreover, we found that exciton-vibration coupling in J-aggregates leads to an exceptional ultrafast radiative decay, which reduces the exciton diffusion length, in turn, suppresses bimolecular exciton annihilation (bmEA) process. These spectral features, plus the optical feedback provided by WGM-hMD microcavity, enable the observation of multimode lasing as evidenced by nonlinear output, spectral narrowing, and temporal coherence of laser emission. With consideration of high carrier-mobility associated with PDIs, hMDs of mp-PDI are attractive candidates on the way to achieve electrically driven OSSL.

摘要

有机固态激光器(OSSL)一直是研究的热点。苝二酰亚胺(PDI)衍生物广泛应用于有机薄膜晶体管和太阳能电池。然而,由于 H 聚集和激基复合物陷阱态的形成,基于纯 PDI 的 OSSL 尚未实现。在这里,我们展示了第一个基于聚酰亚胺的 whispering-gallery 模式(WGM)六方微盘(hMD)微腔的 OSSL,该微腔由 N,N'-双(1-乙基丙基)-2,5,8,11-四(对甲基苯基)-苝二酰亚胺(mp-PDI)自组装而成。单晶数据表明,mp-PDI 分子堆积成松散堆积的扭曲砖状排列,形成 J 型聚集体,具有固态光致发光(PL)效率φ>15%。此外,我们发现 J-聚集体中的激子-振动耦合导致异常超快辐射衰减,从而减小激子扩散长度,进而抑制双分子激子湮灭(bmEA)过程。这些光谱特征,加上 WGM-hMD 微腔提供的光学反馈,使得多模激光得以观察到,这表现为非线性输出、光谱窄化和激光发射的时间相干性。考虑到与 PDIs 相关的高载流子迁移率,mp-PDI 的 hMD 是实现电驱动 OSSL 的有吸引力的候选材料。

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