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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Optimization of the carbazole-pyrimidine linking pattern for achieving efficient TADF
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Optimization of the carbazole-pyrimidine linking pattern for achieving efficient TADF

机译:优化咔唑 - 嘧啶连接图案实现高效TADF

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摘要

A high fluorescence quantum yield is essential for achieving a high OLED efficiency. Due to their typically strong charge-transfer (CT) character, thermally activated delayed fluorescence (TADF) compounds usually have a lower prompt fluorescence efficiency, and therefore the boosting of the total emission yield (phi(PL)) mostly relies on the enhancement of the delayed fluorescence efficiency. In this paper, we present a less frequently used approach for achieving a high phi(PL)by maximising both prompt and delayed emission yields of carbazole-pyrimidine compounds. Strong decoupling of HOMO and LUMO and the subsequent emergence of TADF were achieved by introducing four carbazole units at bothmetapositions of the phenyl unit, though phi(PL)was low due to the prominent nonradiative triplet decay rate. Crowding the relatively loose carbazole units together at theparaposition and bothmetapositions, conversely, was shown to diminish the nonradiative decay, enhance the radiative decay rate and subsequently boost the fluorescence yield. Efficient blue electroluminescence with a nearly 20% yield was demonstrated for the optimized compound.
机译:高荧光量子产率对于实现高OLED效率至关重要。由于它们典型强电荷转移(CT)特征,热活化的延迟荧光(TADF)化合物通常具有较低的荧光效率,因此促进总排放产率(PHI(PL))主要依赖于增强延迟荧光效率。在本文中,我们通过最大化咔唑 - 嘧啶化合物的促进和延迟排放产率来提高较少使用的方法,用于实现高pHI(PL)。通过在苯基单元的两种咔唑单位在苯基单元的两种咔唑单元中引入诸如突出的非接种性三联衰减率,通过引入四个咔唑单元来实现HOMO和LUMO的强烈去耦和随后的TADF出现。相反,将相对松散的咔唑单位挤在一起,相反,显示了减少了非辐射衰减,增强了辐射衰减率,随后提高了荧光产量。优化化合物对具有近20%产率的高效蓝电致发光。

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