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Rational design of carbazolyl and aryl phosphine oxide (APO) based ambipolar host materials for blue electrophosphorescence: a density functional theory study

机译:基于咔唑基和芳基氧化膦(APO)的蓝色电磷晶体的合理设计:密度函数理论研究

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We have designed 10 host molecules for blue/green electrophosphorescence by combining the electron donor carbazolyl unit and the electron acceptor aryl phosphine oxide unit into a single molecular unit by density functional theory. In addition, we have systematically investigated the influence of the phenyl spacers, phenyl substitution and the type of bridge (diphenylether-bridge or diphenylamine-bridge) on an array of electronic properties of the designed ambipolar hosts. For all designed host molecules, host molecule 5 in which the phenyl ring with carbazolyl and phenyl substituted at the o -position was directly combined with phosphine oxide through a diphenylether-bridge linkage could retain a high triplet energy and showed great potential for blue phosphorescent organic light-emitting diodes. Furthermore, the F?rster and Dexter energy transfer mechanisms between all designed host molecules and guests are thermodynamically feasible. In addition, we built a host–guest model to investigate the charge transfer mechanism, and the results indicate that a good intermolecular charge transfer can be attained between host and guest materials.
机译:我们通过密度函数理论将电子给体咔唑基单元和电子受体芳基氧化膦氧化物单元组合成单个分子单元,设计了10个用于蓝色/绿色电磷光的宿主分子。此外,我们系统地研究了苯间隔物,苯基取代和桥(二苯基醚桥或二苯胺 - 桥)的影响,在设计的amipolar主体的电子特性阵列上。对于所有设计的宿主分子,宿主分子5其中苯唑基的苯环和在O-opion被取代的苯基通过二苯基醚桥接键直接与氧化膦可以保留高三重能量并显示出蓝色磷光有机的巨大潜力发光二极管。此外,F?罗斯特和德斯特能量转移机制在所有设计的主体分子和客人之间是热力学上可行的。此外,我们建立了一个主机橱柜模型,以研究电荷转移机制,结果表明宿主和客销材料之间可以获得良好的分子间电荷转移。

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