首页> 外文期刊>Chemistry: A European journal >Optimizing Optoelectronic Properties of Pyrimidine-Based TADF Emitters by Changing the Substituent for Organic Light-Emitting Diodes with External Quantum Efficiency Close to 25% and Slow Efficiency Roll-Off
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Optimizing Optoelectronic Properties of Pyrimidine-Based TADF Emitters by Changing the Substituent for Organic Light-Emitting Diodes with External Quantum Efficiency Close to 25% and Slow Efficiency Roll-Off

机译:通过更改外部量子效率接近25%且效率下降缓慢的有机发光二极管的取代基来优化基于嘧啶的TADF发射体的光电性能

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摘要

A series of green butterfly-shaped thermally activated delayed fluorescence (TADF) emitters, namely PXZPM, PXZMePM, and PXZPhPM, are developed by integrating an electron-donor (D) phenoxazine unit and electron-acceptor (A) 2-substituted pyrimidine moiety into one molecule via a phenyl-bridge pi linkage to form a D-pi-A-pi-D configuration. Changing the substituent at pyrimidine unit in these emitters can finely tune their emissive characteristics, thermal properties, and energy gaps between the singlet and triplet states while maintaining frontier molecular orbital levels, and thereby optimizing their optoelectronic properties. Employing these TADF emitters results in a green fluorescent organic light-emitting diode (OLED) that exhibits a peak forward-viewing external quantum efficiency (EQE) close to 25% and a slow efficiency roll-off characteristic at high luminance.
机译:通过将电子给体(D)苯恶嗪单元和电子受体(A)2-取代的嘧啶部分整合到其中,开发了一系列绿色蝴蝶状热激活延迟荧光(TADF)发射器,即PXZPM,PXZMePM和PXZPhPM。一个分子通过苯基桥pi键形成D-pi-A-pi-D构型。在这些发射体中改变嘧啶单元的取代基可以精细地调整其发射特性,热性质以及单线态和三线态之间的能隙,同时保持前沿的分子轨道能级,从而优化其光电性能。使用这些TADF发射器会导致绿色荧光有机发光二极管(OLED)呈现出接近25%的峰值前视外部量子效率(EQE)和高亮度下的慢速滚降特性。

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