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Functionalized Zinc Porphyrins with Various Peripheral Groups forInterfacial Electron Injection Barrier Control in Organic Light EmittingDiodes

机译:具有各种外围基团的功能化锌卟啉有机发光中的界面电子注入势垒控制二极体

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摘要

Here, we use a simple and effective method to accomplish energy level alignment and thus electron injection barrier control in organic light emitting diodes (OLEDs) with a conventional architecture based on a green emissive copolymer. In particular, a series of functionalized zinc porphyrin compounds bearing π-delocalized triazine electron withdrawing spacers for efficient intramolecular electron transfer and different terminal groups such as glycine moieties in their peripheral substitutes are employed as thin interlayers at the emissive layer/Al (cathode) interface to realize efficient electron injection/transport. The effects of spatial (i.e., assembly) configuration, molecular dipole moment and type of peripheral group termination on the optical properties and energy level tuning are investigated by steady-state and time-resolved photoluminescence spectroscopy in F8BT/porphyrin films, by photovoltage measurements in OLED devices and by surface work function measurements in Al electrodes modified with the functionalized zinc porphyrins. The performance of OLEDs is significantly improved upon using thefunctionalized porphyrin interlayers with the recorded luminance ofthe devices to reach values 1 order of magnitude higher than thatof the reference diode without any electron injection/transport interlayer.
机译:在这里,我们使用一种简单有效的方法来完成能级对准,从而在具有基于绿色发射共聚物的常规体系结构的有机发光二极管(OLED)中实现电子注入势垒控制。特别地,一系列带有π-离域三嗪吸电子间隔基的官能化锌卟啉化合物,用于有效的分子内电子转移,并且在其外围替代物中使用不同的端基(如甘氨酸部分)作为发光层/ Al(阴极)界面上的薄中间层以实现有效的电子注入/传输。通过F8BT /卟啉薄膜中的稳态和时间分辨光致发光光谱,通过光电压测量,研究了空间(即组装)构型,分子偶极矩和外围基团终止类型对光学性能和能级调谐的影响。 OLED器件以及通过用功能化锌卟啉修饰的Al电极中的表面功函数进行测量。使用OLED时,OLED的性能得到显着改善。功能化的卟啉中间层,记录的亮度为设备达到比其高1个数量级的值无需任何电子注入/传输中间层的参考二极管。

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