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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Absence of delayed fluorescence and triplet-triplet annihilation in organic light emitting diodes with spatially orthogonal bianthracenes
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Absence of delayed fluorescence and triplet-triplet annihilation in organic light emitting diodes with spatially orthogonal bianthracenes

机译:在具有空间正交性的有机发光二极管中缺乏延迟荧光和三重态 - 三联湮灭

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摘要

Two compounds, 2-methyl-9,10-bis(naphthalen-2-yl) anthracene (MADN), which has a single anthracene unit, and 10,100-diphenyl-9,9'-bianthracene (PPBA), which has two spatially orthogonal anthracene units, were compared and investigated in terms of photoelectric characteristics and the reverse intersystem crossing (RISC) process in organic light emitting diodes (OLEDs). Transient electroluminescence (EL) measurements indicated large contributions of triplet-triplet annihilation (TTA) for MADN but almost no contribution of TTA for PPBA. The magnetic field dependence of EL for the two anthracene compounds was also different. The EL of MADN was sensitive to the magnetic field at high current density, but PPBA showed less dependence, which indicated the absence of the TTA process for PPBA. TD-DFT calculations revealed that PPBA has doubly degenerate lowest triplet states (T-1 and T-2) with a much lower energy than S-1, which is unfavorable for thermally activated delayed fluorescence (TADF). The near-zero Delta E-ST between highly excited states S-m >= 1 and T-n>2 is favorable to RISC at a highly excited state. Oxygen quenching of photoluminescence only for PPBA and decreasing EL intensity with decreasing temperature only for PPBA support the existence of the RISC path from T-n>2 to S-m >= 1. A high external quantum efficiency of 11% in blue OLEDs with PPBA was obtained, indicating that this orthogonal anthracene type of molecular design for RISC at a highly excited state would expand the material development of compounds emitting blue fluorescence for OLEDs.
机译:两种化合物,2-甲基-9,10-双(萘-2-基)蒽(MADN),具有单个蒽单元和10,100-二苯基-9,9'-比天(PPBA),其在空间上有两个在有机发光二极管(OLED)中的光电特性和逆向线性交叉(RISC)过程中进行比较和研究了正交的蒽单元。瞬态电致发光(EL)测量表明,对于MADN的TRILLET-TRILLEL湮灭(TTA)的大贡献,但几乎没有针对PPBA的TTA的贡献。 EL对于两个蒽化合物的磁场依赖性也不同。 MADN的EL在高电流密度下对磁场敏感,但PPBA显示出较少的依赖性,这表明没有PPBA的TTA方法。 TD-DFT计算显示,PPBA具有比S-1更低的能量倍增的最简并的最低三重态(T-1和T-2),这对于热活化的延迟荧光(TADF)是不利的。高兴奋状态的近零δe-St = 1和T-N> 2有利于高兴奋状态的RISC。仅针对PPBA的光致发光的氧猝灭和仅对PPBA的温度降低的EL强度支持来自TN> 2至SM> = 1的RISC路径的存在= 1。获得具有PPBA的蓝色OLED中11%的高外部量子效率,表明,在高兴奋状态下RISC的这种正交的蒽型分子设计将扩大发射OLED的蓝荧光的化合物的材料的材料。

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