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二维超分子组装体中离域弗伦克尔激子的近完美超辐射发射

Near-Unity Superradiant Emission from Delocalized Frenkel Excitons in a Two-Dimensional Supramolecular Assembly.

作者信息

Barotov Ulugbek, Arachchi Dimuthu H Thanippuli, Klein Megan D, Zhang Juanye, Šverko Tara, Bawendi Moungi G

机构信息

Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.

出版信息

Adv Opt Mater. 2023 Jan 18;11(2). doi: 10.1002/adom.202201471. Epub 2022 Nov 27.

Abstract

We demonstrate three general effective strategies to mitigate non-radiative losses in the superradiant emission from supramolecular assemblies. We focus on J-aggregates of 5,5',6,6'-tetrachloro-1,1'-diethyl-3,3'-di(4-sulfobutyl)-benzimidazolocarbocyanine (TDBC) and elucidate the nature of their nonradiative processes. We show that self-annealing at room temperature, photo-brightening, and the purification of the dye monomers all lead to substantial increases in emission quantum yields (QYs) and a concomitant lengthening of the emission lifetime, with purification of the monomers having the largest effect. We use structural and optical measurements to support a microscopic model that emphasizes the deleterious effects of a small number of impurity and defect sites that serve as non-radiative recombination centers. This understanding has yielded a room temperature molecular fluorophore in solution with an unprecedented combination of fast emissive lifetime and high QY. We obtain superradiant emission from J-aggregates of TDBC in solution at room temperature with a QY of 82% coupled with an emissive lifetime of 174 ps. This combination of high QY and fast lifetime at room temperature makes supramolecular assemblies of purified TDBC a model system for the study of fundamental superradiance phenomena. High QY J-aggregates are uniquely suited for the development of applications that require high speed and high brightness fluorophores such as devices for high speed optical communication.

摘要

我们展示了三种通用的有效策略,以减轻超分子组装体超辐射发射中的非辐射损失。我们聚焦于5,5',6,6'-四氯-1,1'-二乙基-3,3'-二(4-磺丁基)-苯并咪唑并花青(TDBC)的J-聚集体,并阐明其非辐射过程的本质。我们表明,室温下的自退火、光增亮以及染料单体的纯化均导致发射量子产率(QYs)大幅提高,同时发射寿命延长,其中单体的纯化效果最为显著。我们使用结构和光学测量来支持一个微观模型,该模型强调了少量作为非辐射复合中心的杂质和缺陷位点的有害影响。这种认识产生了一种室温下溶液中的分子荧光团,具有前所未有的快速发射寿命和高QY的组合。我们在室温下从溶液中的TDBC的J-聚集体获得了超辐射发射,QY为82%,发射寿命为174 ps。室温下高QY和快速寿命的这种组合使纯化的TDBC超分子组装体成为研究基本超辐射现象的模型系统。高QY的J-聚集体特别适合于开发需要高速和高亮度荧光团的应用,如高速光通信器件。

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