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首页> 外文期刊>ACS applied materials & interfaces >Control of Dual Conformations: Developing Thermally Activated Delayed Fluorescence Emitters for Highly Efficient Single-Emitter White Organic Light-Emitting Diodes
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Control of Dual Conformations: Developing Thermally Activated Delayed Fluorescence Emitters for Highly Efficient Single-Emitter White Organic Light-Emitting Diodes

机译:双构象的控制:用于高效的单发射器白色有机发光二极管的热活化延迟荧光发射器

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In this work, we propose a novel concept to develop two fluorophores 2-(10H-phenothiazin-10-yl)thianthrene 5,5,10,10-tetraoxide (PTZ-TTR) and 2-(4-(10H-phenothiazin-10-yl)phenyl)thianthrene 5,5,10,10-tetraoxide (PTZ-Ph-TTR) showing dual conformations for highly efficient single-emitter white organic light-emitting diodes (WOLEDs). Both molecules exist in two stable conformations. Their nearly orthogonal forms own lower energy levels and show thermally activated delayed fluorescence (TADF) characteristics, whereas their nearly planar conformers possess higher energy levels and show only prompt fluorescence. These dual conformers were exploited for fabricating WOLEDs with complementary emission colors contributed by the two conformations. Moreover, the originally wasted triplet energy on the nearly planar conformation can be transferred to the nearly orthogonal one and then harvested via the TADF channel, realizing full exciton utilization. A PTZ-TTR-based single-emitter device exhibits standard white emission with a CIE coordinate of (0.33, 0.33) and a high color rendering index value of 92. On the other hand, the PTZ-Ph-TTR-based single-emitter device realizes an emission approaching warm white light and a high maximum external quantum efficiency of 16.34%. These results demonstrate an alternative approach for designing high-performance WOLEDs based on single TADF emitters.
机译:在这项工作中,我们提出了一种新颖的概念来开发两种荧光团2-(10H-吩噻嗪-10-y1)天肾5,5,10,10-四氧化物(PTZ-TTR)和2-(4-(10H-吩噻嗪 - 10-yl)苯基)苯基5,5,10,10-四氧化物(PTZ-pH-TTR),其显示高效单发射体白色有机发光二极管(Woled)的双构象。两个分子存在于两个稳定的构象中。它们几乎正交的形式具有较低的能量水平,并且显示出热活化的延迟荧光(TADF)特性,而它们几乎平坦的塑壳具有较高的能量水平并仅显示促进荧光。利用这些双塑壳用于制造具有互补发射颜色的涡旋,其贡献的两个构象。此外,在几乎平面构象上最初浪费的三态能量可以转移到几乎正交的α然后通过TADF通道收获,实现全方位的激子利用。基于PTZ-TTR的单极发射器器件具有标准的白色发射,CIE坐标(0.33,0.33)和高色渲染指数值为92.另一方面,基于PTZ-PH-TTR的单发射器器件实现了暖白光的发射,最大的外部量子效率为16.34%。这些结果表明了一种基于单个TADF发射器设计高性能Woled的替代方法。

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