Cho Hwan-Hee, Gorgon Sebastian, Londi Giacomo, Giannini Samuele, Cho Changsoon, Ghosh Pratyush, Tonnelé Claire, Casanova David, Olivier Yoann, Baikie Tomi K, Li Feng, Beljonne David, Greenham Neil C, Friend Richard H, Evans Emrys W
Cavendish Laboratory, University of Cambridge, Cambridge, UK.
Laboratory for Computational Modelling of Functional Materials, Namur Institute of Structured Matter, University of Namur, Namur, Belgium.
Nat Photonics. 2024;18(9):905-912. doi: 10.1038/s41566-024-01458-3. Epub 2024 Jun 19.
The development of luminescent organic radicals has resulted in materials with excellent optical properties for near-infrared emission. Applications of light generation in this range span from bioimaging to surveillance. Although the unpaired electron arrangements of radicals enable efficient radiative transitions within the doublet-spin manifold in organic light-emitting diodes, their performance is limited by non-radiative pathways introduced in electroluminescence. Here we present a host-guest design for organic light-emitting diodes that exploits energy transfer with up to 9.6% external quantum efficiency for 800 nm emission. The tris(2,4,6-trichlorophenyl)methyl-triphenyl-amine radical guest is energy-matched to the triplet state in a charge-transporting anthracene-derivative host. We show from optical spectroscopy and quantum-chemical modelling that reversible host-guest triplet-doublet energy transfer allows efficient harvesting of host triplet excitons.
发光有机自由基的发展带来了具有优异近红外发射光学特性的材料。该波段光产生的应用涵盖从生物成像到监视等领域。尽管自由基的未成对电子排列能够在有机发光二极管的双重自旋流形内实现高效辐射跃迁,但其性能受到电致发光中引入的非辐射途径的限制。在此,我们展示了一种用于有机发光二极管的主客体设计,该设计利用能量转移实现了800纳米发射时高达9.6%的外量子效率。三(2,4,6-三氯苯基)甲基-三苯胺自由基客体与电荷传输蒽衍生物主体中的三重态能量匹配。我们通过光谱学和量子化学建模表明,可逆的主客体三重态-双重态能量转移能够有效收集主体三重态激子。