首页> 美国卫生研究院文献>Advanced Science >Triazatruxene: A Rigid Central Donor Unit for a D–A3 Thermally Activated Delayed Fluorescence Material Exhibiting Sub‐Microsecond Reverse Intersystem Crossing and Unity Quantum Yield via Multiple Singlet–Triplet State Pairs
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Triazatruxene: A Rigid Central Donor Unit for a D–A3 Thermally Activated Delayed Fluorescence Material Exhibiting Sub‐Microsecond Reverse Intersystem Crossing and Unity Quantum Yield via Multiple Singlet–Triplet State Pairs

机译:Triazatruxene:D–A3热活化延迟荧光材料的刚性中央供体单元通过多个单重态-三重态对表现出亚微秒级的反向系统间交叉和统一量子产率。

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摘要

By inverting the common structural motif of thermally activated delayed fluorescence materials to a rigid donor core and multiple peripheral acceptors, reverse intersystem crossing (rISC) rates are demonstrated in an organic material that enables utilization of triplet excited states at faster rates than Ir‐based phosphorescent materials. A combination of the inverted structure and multiple donor–acceptor interactions yields up to 30 vibronically coupled singlet and triplet states within 0.2 eV that are involved in rISC. This gives a significant enhancement to the rISC rate, leading to delayed fluorescence decay times as low as 103.9 ns. This new material also has an emission quantum yield ≈1 and a very small singlet–triplet gap. This work shows that it is possible to achieve both high photoluminescence quantum yield and fast rISC in the same molecule. Green organic light‐emitting diode devices with external quantum efficiency >30% are demonstrated at 76 cd m−2.
机译:通过将热激活的延迟荧光材料的常见结构基序转化为刚性供体核和多个外围受体,在有机材料中证明了反向系统间交叉(rISC)速率,该材料能够以比基于Ir的磷光更快的速率利用三重激发态材料。反向结构与多个供体-受体相互作用的结合产生了在rISC中涉及的30个在0.2 eV范围内的纤维耦合的单重态和三重态。这大大提高了rISC速率,导致延迟的荧光衰减时间低至103.9 ns。这种新材料还具有约1的发射量子产率和非常小的单重态-三重态间隙。这项工作表明,在同一分子中既可以实现高光致发光量子产率又可以实现快速rISC。在76 cd m -2 上演示了外部量子效率> 30%的绿色有机发光二极管器件。

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