首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >All-organic fast intersystem crossing assisted exciplexes exhibiting sub-microsecond thermally activated delayed fluorescence
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All-organic fast intersystem crossing assisted exciplexes exhibiting sub-microsecond thermally activated delayed fluorescence

机译:All-Organic Fast Intersystem交叉辅助Excipleces展示亚微秒热激活延迟荧光

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摘要

A novel strategy is presented towards acquisition of exciplex systems exhibiting thermally activated delayed fluorescence (TADF) with a high reverse intersystem crossing (RISC) rate (exceeding 10(7) s(-1)). This approach involves constructing exciplex donor-acceptor molecular pairs, where the acceptor molecule possesses the ability to undergo fast and efficient intersystem crossing (ISC). With the use of 6-cyano-9-phenylpurine (PCP) acceptor and carbazole-based donor molecules, exciplexes were obtained, where the excitation is contained on PCP and undergoes fast ISC to form a local excited triplet state ((LEA)-L-3). The controlled excitation transfer to the (LEA)-L-3 level provides an optimal reverse intersystem crossing pathway, enabling TADF with a sub-microsecond emission lifetime. The side-effect of such an emissive mechanism is an unusual thermal photoluminescence quenching, caused by the limited PCP triplet state stability under room temperature conditions. PCP-carbazole dyads were obtained, which, in neat solid films, form intermolecular TADF-active exciplexes between donor and acceptor fragments of the neighbouring molecules. These compounds show balanced bipolar charge transport ability and were used as emissive layer host materials. The obtained organic light emitting diode (OLED) with an exciplex-forming host and a TADF emitter showed an external quantum efficiency exceeding 10% and low efficiency roll-off.
机译:提出了一种获取具有高反向系统间交叉(RISC)率(超过10(7)s(-1))的热激活延迟荧光(TADF)激基复合物系统的新策略。这种方法涉及构建激基复合物-供体-受体分子对,其中受体分子具有进行快速有效的系统间交叉(ISC)的能力。通过使用6-氰基-9-苯基嘌呤(PCP)受体和咔唑基供体分子,获得了激基复合物,其中激发包含在PCP上,并经历快速ISC以形成局部激发的三重态((LEA)-L-3)。受控激发转移到(LEA)-L-3水平提供了最佳的反向系统间交叉路径,使TADF具有亚微秒的发射寿命。这种发射机制的副作用是不寻常的热光致发光猝灭,这是由室温条件下有限的PCP三重态稳定性引起的。获得了PCP-咔唑二元化合物,它们在整洁的固体膜中,在相邻分子的供体和受体片段之间形成分子间TADF活性激基复合物。这些化合物表现出平衡的双极电荷传输能力,被用作发射层主体材料。获得的有机发光二极管(OLED)具有激基复合物形成主体和TADF发射极,显示出超过10%的外部量子效率和低效率衰减。

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