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Triazine-Acceptor-Based Green Thermally Activated Delayed Fluorescence Materials for Organic Light-Emitting Diodes

机译:用于有机发光二极管的基于三嗪受体的绿色热活化延迟荧光材料

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摘要

High-efficiency thermally activated delayed fluorescence (TADF) is leading the third-generation technology of organic light-emitting diodes (OLEDs). TADF emitters are designed and synthesized using inexpensive organic donor and acceptor derivatives. TADF emitters are a potential candidate for next-generation display technology when compared with metal-complex-based phosphorescent dopants. Many studies are being conducted to enhance the external quantum efficiencies (EQEs) and photoluminescent quantum yield of green TADF devices. Blue TADF reached an EQE of over 35% with the support of suitable donor and acceptor moieties based on a suitable molecular design. The efficiencies of green TADF emitters can be improved when an appropriate molecular design is applied with an efficient device structure. The triazine acceptor has been identified as a worthy building block for green TADF emitters. Hence, we present here a review of triazine with various donor molecules and their device performances. This will help to design more suitable and efficient green TADF emitters for OLEDs.
机译:高效的热激活延迟荧光(TADF)引领了有机发光二极管(OLED)的第三代技术。使用廉价的有机供体和受体衍生物设计和合成TADF发射体。与基于金属配合物的磷光掺杂剂相比,TADF发射器是下一代显示技术的潜在候选者。为了提高绿色TADF器件的外部量子效率(EQE)和光致发光量子产率,正在进行许多研究。在合适的分子设计的基础上,在合适的供体和受体部分的支持下,蓝色TADF的EQE超过35%。当采用有效的器件结构进行适当的分子设计时,可以提高绿色TADF发射器的效率。三嗪受体被认为是绿色TADF发射体的重要构建基块。因此,我们在这里介绍三嗪与各种供体分子及其装置性能的综述。这将有助于为OLED设计更合适,更高效的绿色TADF发射器。

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