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Axially Chiral Biphenyl Compound‐Based Thermally Activated Delayed Fluorescent Materials for High‐Performance Circularly Polarized Organic Light‐Emitting Diodes

机译:用于高性能圆偏振有机发光二极管的轴向手性叶烯基的热活化延迟荧光材料

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摘要

To boost intrinsic circularly polarized luminescence (CPL) properties of chiral emitters, an axially chiral biphenyl unit is inlaid in thermally activated delayed fluorescent (TADF) skeleton, urging the participation of chiral source in frontier molecular orbital distributions. A pair of enantiomers, ( )‐BPPOACZ and ( )‐BPPOACZ, containing the cyano as electron‐withdrawing moieties and carbazole and phenoxazine as electron‐donating units are synthesized and separated. The circularly polarized TADF enantiomers exhibit both high photoluminescence quantum yield of 86.10% and excellent CPL activities with maximum dissymmetry factor | | values of almost 10 in solution and 1.8 × 10 in doped film, which are among the best values of previously reported small chiral organic materials. Moreover, the circularly polarized organic light‐emitting diodes based on the TADF enantiomers achieve the maximum external quantum efficiency of 16.6% with extremely low efficiency roll‐off. Obvious circularly polarized electroluminescence signals with | | values of 4 × 10 are also recorded.
机译:为了提高手性发射器的内在圆偏振化发光(CPL)性质,轴向手性联苯单位在热活化的延迟荧光(TADF)骨架中镶嵌,促请了手性源在前沿分子轨道分布的参与。一对对映体,()-BPPoacz和()-BPoacz,含有氰基作为电子提取部分和咔唑和苯单甲酰胺作为电子提供的单元被合成并分离。圆偏振的TADF对映异构体具有86.10%的高光致发光量子产率和优异的CPL活性,最大不对称因子| |溶液中近10个掺杂膜中的值和1.8×10,这是先前报告的小手性有机材料的最佳值之一。此外,基于TADF对映体的圆偏振有机发光二极管,最大的外量子效率为16.6%,极低效率滚动。明显的圆偏振光电致发光信号与| |还记录了4×10的值。

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