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Isomeric Bright Sky-Blue TADF Emitters Based on Bisacridine Decorated DBNA: Impact of Donor Locations on Luminescent and Electroluminescent Properties

机译:基于Bisacridine装饰DBNA的异构明亮的天蓝色TADF发射器:供体位置对发光和电致发光性能的影响

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摘要

Three isomeric boron-containing thermally activated delayed fluorescent (TADF) emitters, namely m-AC-DBNA, p-AC-DBNA, and m '-AC-DBNA, are constructed by incorporating an electron-donor acridine (AC) moiety into meta-, para-, or meta '-positions of an electron-accepting boron-embedded rigid framework. The substitutional positions are found to dramatically affect thermal, photophysical, and electroluminescent (EL) properties. The experimental results show that the para-substituted compound (p-AC-DBNA) exhibits higher decomposition temperature, higher photoluminescence (PL) quantum efficiencies, smaller singlet-triplet energy splitting, shorter delayed fluorescence lifetimes as well as a fast reverse intersystem crossing rate of over 10(6) s(-1), compared to the meta-isomers (m-AC-DBNA and m '-AC-DBNA). Bright and highly efficient organic light-emitting diodes (OLEDs) with external quantum efficiencies (EQEs) up to 20.5% and 14.1% are achieved by employing p-AC-DBNA as doped and nondoped emitters in sky-blue OLEDs, respectively. Moreover, excellent doping-concentration independent EL properties and very low efficiency roll-off at a high luminance are achieved. This isomeric strategy provides a simple method to extend structural diversity of highly efficient TADF emitters, optimize optoelectronic properties, and demonstrate the relationship of delayed fluorescence lifetime and efficiency roll-off of the TADF devices. The three isomers also display distinct temperature-dependent emission and mechanochromism.
机译:通过将电子供体吖啶(AC)部分纳入Meta,构建了三种异构硼热活化的延迟荧光(TADF)发射器,即M-AC-DBNA,P-AC-DBNA和M'-CAC-DBNA。 - 接受硼嵌入刚性框架的电子接受硼嵌入式刚性框架的 - ,或荟萃'。发现替代位置显着影响热,光药和电致发光(EL)性质。实验结果表明,取代的化合物(P-AC-DBNA)表现出更高的分解温度,更高的光致发光(PL)量子效率,较小的单次三态能量分裂,较短的延迟荧光寿命以及快速反向的流动速度与元异构体(M-AC-DBNA和M'-AC-DBNA)相比,超过10(-1)(-1)。通过在天蓝色OLED中使用P-AC-DBNA,可以实现明亮和高效的有机发光二极管(OLED),其外部量子效率(EQES)高达20.5%和14.1%,分别是天蓝色OLED中的掺杂和掺杂发射器。此外,实现了优异的掺杂浓度独立的EL性能和在高亮度下的非常低的效率滚动。这种异构策略提供了一种简单的方法,可以延长高效的TADF发射器的结构多样性,优化光电性能,并证明延迟荧光寿命和效率滚动TADF器件的关系。三个异构体还显示出不同的温度依赖性排放和机械变性。

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