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Theoretical investigation of the degradation mechanisms in host and guest molecules used in OLED active layers

机译:OLED活性层中主体分子和客体分子降解机理的理论研究

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A feature of OLEDs that has to date received little attention is the prediction of the stability of the molecules involved in the electrical and optical processes. Here, we present computational results intended to aid in the development of stable systems. We identify degradation pathways and define new strategies to guide the synthesis of stable materials for OLED applications for both phosphorescent emitters and organic host materials. The chemical reactivity of these molecules in the active layers of the devices is further complicated by the fact that, during operation, they can be either oxidized or reduced (as they localize a hole or an electron) in addition to forming both singlet and triplet excitons.
机译:迄今为止很少受到关注的OLED的特征是对电和光学过程中涉及的分子的稳定性的预测。在这里,我们提出旨在帮助开发稳定系统的计算结果。我们确定降解途径并定义新策略,以指导用于磷光发光体和有机主体材料的OLED应用稳定材料的合成。这些分子在器件活性层中的化学反应性由于以下事实而变得更加复杂:在操作过程中,除了形成单重态和三重态激子外,它们还可以被氧化或还原(因为它们位于空穴或电子中)。 。

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