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Highly efficient near ultraviolet organic light-emitting diode based on a meta-linked donor–acceptor molecule

机译:基于紫外线有机发光二极管高效,基于 Meta - 链接供体 - 受体分子接近紫外线有机发光二极管

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A novel near ultraviolet (NUV) emitter with a meta-linked donor–acceptor (D–A) structure between triphenylamine (TPA) and phenanthroimidazole (PPI), mTPA–PPI, was designed and synthesized. This molecular design is expected to resolve the conflict between the non-red-shifted emission and the introduction of a charge-transfer (CT) state in the D–A system, aiming at NUV organic light-emitting diodes (OLEDs) with high-efficiency and colour-purity. Theoretical calculations and photophysical experiments were implemented to verify the unique excited state properties of mTPA–PPI. The mTPA–PPI device exhibited excellent NUV electroluminescence (EL) performance with an emission peak at 404 nm, a full width at half maximum (FWHM) of only 47 nm corresponding to a CIE coordinate of (0.161, 0.049), and a maximum external quantum efficiency (EQE) of 3.33%, which is among the best results for NUV OLEDs. This work not only demonstrates the promising potential of mTPA–PPI in NUV OLEDs, but also provides a valuable strategy for the rational design of NUV materials by using the meta-linked D–A architecture.
机译:设计和合成了三苯胺(TPA)和菲咪唑(PPI),MTPA-PPI之间的紫外线(Nuv)发射器附近的紫外线(Nuv)发射器的紫外线(Nuv)发射器的紫外(Nuv)发射器。该分子设计预计将解决非红移排放和D-A系统中的电荷转移(CT)状态之间的冲突,旨在具有高的NUV有机发光二极管(OLED)效率和色彩纯度。实施理论计算和光学物理实验以验证MTPA-PPI的独特激发状态性质。 MTPA-PPI器件具有优异的Nuv电致发光(EL)性能,在404nm处具有发射峰值,半最大(fwhm)的全宽度仅为47nm,对应于(0.161,0.049)和最大外部的CIE坐标量子效率(EQE)为3.33%,这是NuV OLED的最佳效果。这项工作不仅展示了Nuv OLED中MTPA-PPI的有希望的潜力,而且还通过使用 Meta -Linked D-A架构提供了NuV材料的合理设计的有价值的策略。

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