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首页> 外文期刊>ACS applied materials & interfaces >Correlation of Device Performance and Fermi Level Shift in the Emitting Layer of Organic Light-Emitting Diodes with Amine-Based Electron Injection Layers
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Correlation of Device Performance and Fermi Level Shift in the Emitting Layer of Organic Light-Emitting Diodes with Amine-Based Electron Injection Layers

机译:基于胺基电子注入层的有机发光二极管发光层中的装置性能和FERMI水平换档的相关性

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摘要

We investigate three amine-based polymers, polyethylenimine and two amino-functionalized polyfluorenes, as electron injection layers (EILs) in organic light-emitting diodes (OLEDs) and find correlations between the molecular structure of the polymers, the electronic alignment at the emitter/EIL interface, and the resulting device performance. X-ray photoelectron spectroscopy measurements of the emitter/EIL interface indicate that all three EIL polymers induce an upward shift of the Fermi level in the emitting layer close to the interface similar to n-type doping. The absolute value of this Fermi level shift, which can be explained by an electron transfer from the EIL polymers into the emitting layer, correlates with the number of nitrogen containing groups in the side chains of the polymers. Whereas polyethylenimine (PEI) and one of the investigated polyfluorenes (PFCON-C) have six such groups per monomer unit, the second investigated polyfluorene (PFN) only possesses two. Consequently, we measure Fermi level shifts of 0.5-0.7 eV for PEI and PFCON-C and only 0.2 eV for PFN. As a result of these Fermi level shifts, the energetic barrier for electron injection is significantly lowered and OLEDs which comprise PEI or PFCON-C as an EIL exhibit a more than twofold higher luminous efficacy than OLEDs with PFN.
机译:我们研究了三种基于胺基聚合物,聚乙烯亚胺和两个氨基官能化的多氟硼,作为有机发光二极管(OLED)中的电子注入层(EIL),并在聚合物的分子结构之间找到相关性,在发射器处的电子对准/ EIL界面,以及所产生的设备性能。发射器/ EIL界面的X射线光电子能谱测量表明,所有三个EIL聚合物都会诱导靠近类似于n型掺杂的界面的发光层中的费米水平的向上偏移。该费米水平偏移的绝对值,可以通过从EIL聚合物中的电子转移到发光层中来解释,与聚合物侧链中的含氮基团的数量相关联。虽然聚乙烯菊氨酸(PEI)和其中一种研究的多氟醚(PFCON-C)具有六个这样的单体单元这些基团,则第二研究的多氟烯(PFN)仅具有两个。因此,我们测量PEI和PFCON-C为0.5-0.7 eV的费米水平移位,仅为PFN的0.2 eV。由于这些费米水平换档,电子注射的能量屏障显着降低,并且包含PEI或PFCON-C作为EIL的OLED表现出比用PFN的OLED具有比OLED更高的发光效率。

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