材料科学
电致发光
有机发光二极管
共发射极
光致发光
量子效率
光电子学
发光
荧光
分子间力
光化学
纳米技术
光学
分子
化学
有机化学
物理
图层(电子)
作者
Wei Li,Wenqi Li,Lin Gan,Mengke Li,Nan Zheng,Chengyun Ning,Dongcheng Chen,Yuan‐Chun Wu,Shi‐Jian Su
标识
DOI:10.1021/acsami.9b17585
摘要
A pivotal thermally activated delayed-fluorescence (TADF) emitter, DspiroAc-TRZ, was developed, and it exhibits greatly enhanced electroluminescence performance in nondoped organic light-emitting diodes (OLEDs) owing to the concurrent manipulation of aggregation behavior and monomolecular structure. The delicate non-planar packing pattern in the DspiroAc-TRZ crystal can not only lead to highly efficient solid-state luminescence but also form a loose intermolecular packing pattern, greatly decreasing the HOMO or LUMO overlaps in dimers and shortening the triplet exciton diffusion length. In addition, the rigid donor and acceptor moieties in DspiroAc-TRZ can rigidify the molecular backbone, resulting in a tiny geometric vibrational relaxation in the excited state. Impressively, high photoluminescent quantum yields of 78.5 and 83.7% were achieved for the DspiroAc-TRZ single crystal and nondoped film. A high external quantum efficiency (EQE) of 25.7% was achieved in a nondoped sky-blue TADF OLED, which is higher than any reported EQE value of nondoped sky-blue TADF OLEDs so far.
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