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Efficient HOMO-LUMO separation by multiple resonance effect toward ultrapure blue thermally activated delayed fluorescence

机译:高效同性恋分离多重共振效应对超纯度的蓝色热活化延迟荧光

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Organic light-emitting diodes (OLEDs) play an important role in the new generation of flat-panel displays. Conventional OLEDs employing fluorescent materials together with triplet-triplet annihilation suffer from a relatively low internal quantum efficiency (IQE) of -62.5%. On the other hand, the IQE of OLEDs employing phosphorescent or thermally activated delayed fluorescence (TADF) materials can reach -100%. However, these materials exhibit very broad peaks with a full-width at half-maximum (FWHM) of 70-100 ran and cannot satisfy the color-purity requirements for displays. Therefore, the latest commercial OLED displays employ blue fluorescent materials with a relatively low IQE, and efficient blue emitters with a small FWHM are highly needed. In our manuscript, we present organic molecules that exhibit ultrapure blue fluorescence based on TADF. These molecules consist of three benzene rings connected by one boron and two nitrogen atoms, which establish a rigid polycyclic framework and significant localization of the highest occupied and lowest unoccupied molecular orbitals by a multiple resonance effect. An OLED device based on the new emitter exhibits ultrapure blue emission at 467 nm with an FWHM of 28 nm, Commission Internationale de l'Eclairage (CIE) coordinates of (0.12, 0.13), and an IQE of~100%, which represent record-setting performance for blue OLED devices.
机译:有机发光二极管(OLED)在新一代的平板显示器中发挥着重要作用。使用荧光材料与三重胶囊 - 三联湮灭一起使用的常规OLED患有-62.5%的相对低的内部量子效率(IQE)。另一方面,使用磷光或热活化的延迟荧光(TADF)材料的OLED的IQE可以达到-100%。然而,这些材料表现出极宽的峰值,全宽在70-100的半最大(FWHM),并且不能满足显示器的颜色纯度要求。因此,最新的商业OLED显示器采用具有相对较低的IQE的蓝色荧光材料,并且非常需要具有小FWHM的高效蓝色发射器。在我们的稿件中,我们呈现了基于TADF的超纯蓝色荧光的有机分子。这些分子由三个硼环由一个硼和两个氮原子连接,其通过多个共振效应建立刚性多环骨架和最高占用和最低的未占用分子轨道的显着定位。基于新发射极的OLED器件在467nm的情况下,FWAM为28 nm,Internationale de l'EclaRiges(CIE)坐标(0.12,0.13),〜100%的坐标,代表录制-Setting Blue OLED设备的性能。

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