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首页> 外文期刊>Chemical science >Pyrimidine-based twisted donor–acceptor delayed fluorescence molecules a new universal platform for highly efficient blue electroluminescence
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Pyrimidine-based twisted donor–acceptor delayed fluorescence molecules a new universal platform for highly efficient blue electroluminescence

机译:基于嘧啶的扭转供体 - 受体延迟荧光分子是一种高效的蓝色电致发光的新的通用平台

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Deep-blue emitters that can harvest both singlet and triplet excited states to give high electron-to-photon conversion efficiencies are highly desired for applications in full-color displays and white lighting devices based on organic light-emitting diodes (OLEDs). Thermally activated delayed fluorescence (TADF) molecules based on highly twisted donor–acceptor (D–A) configurations are promising emitting dopants for the construction of efficient deep-blue OLEDs. In this study, a simple and versatile D–A system combining acridan-based donors and pyrimidine-based acceptors has been developed as a new platform for high-efficiency deep-blue TADF emitters. The designed pre-twisted acridan–pyrimidine D–A molecules exhibit small singlet–triplet energy splitting and high photoluminescence quantum yields, functioning as efficient deep-blue TADF emitters. The OLEDs utilizing these TADF emitters display bright blue electroluminescence with external quantum efficiencies of up to 20.4%, maximum current efficiencies of 41.7 cd A ~(?1) , maximum power efficiencies of 37.2 lm W ~(?1) , and color coordinates of (0.16, 0.23). The design strategy featuring such acridan–pyrimidine D–A motifs can offer great prospects for further developing high-performance deep-blue TADF emitters and TADF-OLEDs.
机译:能够收获单态和三联兴奋状态的深蓝色发射器非常希望基于有机发光二极管(OLED)的全彩色显示器和白色照明装置的应用,非常需要高效地获得高电子对光透过效率。基于高度扭曲的供体 - 受体(D-A)构造的热活化延迟荧光(TADF)分子是有前途的掺杂剂,用于施工有效的深蓝色OLED。在这项研究中,已经开发了一种与基于亚啶丹的供体和嘧啶的受体相结合的简单和通用的D-A系统作为高效的深蓝色TADF发射器的新平台。设计的预扭曲吖啶-嘧啶D-A分子表现出小单态三重态能量分裂和高光致发光量子产率,其具有高效的深蓝色TADF发射器。利用这些TADF发射器的OLED显示出明亮的蓝色电致发光,外部量子效率高达20.4%,最大电流效率为41.7℃A〜(?1),最大功率效率为37.2 LM W〜(?1),以及颜色坐标(0.16,0.23)。具有这种亚吖啶嘧啶D-A主题的设计策略可以为进一步开发高性能深蓝色TADF发射器和TADF-OLED提供良好的前景。

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