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Influences of Connecting Unit Architecture on the Performance of Tandem Organic Light-Emitting Devices

机译:连接单元体系结构对串联有机发光器件性能的影响

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The present work investigates the influence of the n-type layer in the connecting unit on the performance of tandem organic light-emitting devices (OLEDs). The n-type layer is typically an organic electron-transporting layer doped with reactive metals. By systematically varying the metal dopants and the electron-transporting hosts, we have identified the important factors affecting the performance of the tandem OLEDs. Contrary to common belief, device characteristics were found to be insensitive to metal work functions, as supported by the ultraviolet photoemission spectroscopy results that the lowest unoccupied molecular orbitals of all metal-doped n-type layers studied here have similar energy levels. It suggests that the electron injection barriers from the connecting units are not sensitive to the metal dopant used. On the other hand, it was found that performance of the n-type layers depends on their electrical conductivities which can be improved by using an electron-transporting host with higher electron mobility. This effect is further modulated by the optical transparency of constituent organic layers. The efficiency of tandem OLEDs would decrease as the optical transmittance decreases.
机译:本工作研究了连接单元中n型层对串联有机发光器件(OLED)性能的影响。 n型层通常是掺杂有反应性金属的有机电子传输层。通过系统地改变金属掺杂剂和电子传输主体,我们已经确定了影响串联OLED性能的重要因素。与通常的看法相反,发现器件特征对金属功函数不敏感,这是由紫外光发射光谱法的结果所证实的,该结果表明,在此研究的所有金属掺杂n型层中,最低的未占据分子轨道具有相似的能级。这表明来自连接单元的电子注入势垒对所使用的金属掺杂剂不敏感。另一方面,发现n型层的性能取决于它们的电导率,这可以通过使用具有更高电子迁移率的电子传输主体来提高。组成有机层的光学透明性进一步调节了这种效果。串联OLED的效率会随着光透射率的降低而降低。

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