材料科学
共晶
光致发光
激子
近红外光谱
分子间力
光电子学
红外线的
有机发光二极管
量子产额
堆积
分子
纳米技术
光学
核磁共振
氢键
有机化学
凝聚态物理
物理
化学
荧光
图层(电子)
作者
Ming‐Peng Zhuo,Yi Yuan,Yang Su,Song Chen,Ye‐Tao Chen,Ziqi Feng,Yang‐Kun Qu,Ming‐De Li,Yang Li,Bingwen Hu,Xuedong Wang,Liang‐Sheng Liao
标识
DOI:10.1002/adma.202107169
摘要
Harvesting the narrow bandgap excitons of charge-transfer (CT) complexes for the achievement of near-infrared (NIR) emission has attracted intensive attention for its fundamental importance and practical application. Herein, the triphenylene (TP)-2,3,5,6-tetrafluoro-7,7,8,8-tetracyanoquinodimethane (F4 TCNQ) CT organic complex is designed and fabricated via the supramolecular self-assembly process, which demonstrates the NIR emission with a maximum peak of 770 nm and a photoluminescence quantum yield (PLQY) of 5.4%. The segregated stacking mode of TP-F4 TCNQ CT complex based on the multiple types of intermolecular interaction has a low CT degree of 0.00103 and a small counter pitch angle of 40° between F4 TCNQ and TP molecules, which breaks the forbidden electronic transitions of CT state, resulting in the effective NIR emission. Acting as the promising candidates for the active optical waveguide in the NIR region beyond 760 nm, the self-assembled TP-F4 TCNQ single-crystalline organic microwires display an ultralow optical-loss coefficient of 0.060 dB µm-1 . This work holds considerable insights for the exploration of novel NIR-emissive organic materials via an universal "cocrystal engineering" strategy.
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