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A sterically hindered asymmetric D–A–D′ thermally activated delayed fluorescence emitter for highly efficient non-doped organic light-emitting diodes

机译:位阻非对称D–A–D'热激活延迟荧光发射器,用于高效非掺杂有机发光二极管

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Thermally activated delayed fluorescence (TADF) materials have opened a new chapter for high-efficiency and low-cost organic light-emitting diodes (OLEDs). Herein, we describe a novel and effective design strategy for TADF emitters which includes introducing a carbazole donor unit at the ortho -position, at which the donor and acceptor groups are spatially in close proximity to guarantee the existence of intramolecular electrostatic attraction and through-space charge transfer, leading to reduced structural vibrations, suppressed non-radiative decay and rapid radiative decay to avoid excited state energy loss. As a result, a green TADF emitter ( 2Cz-DPS ) showing high solid-state photoluminescence quantum efficiency (91.9%) and excellent OLED performance was produced. Theoretical simulations reveal that the non-adiabatic coupling accelerates the reverse intersystem crossing of 2Cz-DPS , resulting in a state-of-the-art non-doped OLED with an extremely high external quantum efficiency of 28.7%.
机译:热激活延迟荧光(TADF)材料为高效和低成本有机发光二极管(OLED)开辟了新篇章。在此,我们描述了一种用于TADF发射器的新颖有效的设计策略,其中包括在邻位引入咔唑供体单元,在该位置供体和受体基团在空间上非常接近,以确保分子内静电引力和贯穿空间的存在电荷转移,可减少结构振动,抑制非辐射衰减和快速辐射衰减,从而避免激发态能量损失。结果,产生了显示高的固态光致发光量子效率(91.9%)和优异的OLED性能的绿色TADF发射体(2Cz-DPS)。理论仿真表明,非绝热耦合加速了2Cz-DPS的反向系统间交叉,从而产生了一种最新的非掺杂OLED,其外部量子效率高达28.7%。

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