首页> 外文会议>Electrical, optical, and magnetic properties of organic solid-state materials IV >IMPROVED ELECTRON INJECTION IN ORGANIC LIGHT EMITTING DEVICES BY APPLYING THIN INSULATING LAYERS
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IMPROVED ELECTRON INJECTION IN ORGANIC LIGHT EMITTING DEVICES BY APPLYING THIN INSULATING LAYERS

机译:通过应用薄的绝缘层改善了有机发光器件中的电子注入

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We present the fabrication and characterization of organic light emitting devices (OLEDs) using thin insulating layers for improved electron injection. The OLEDs are constructed with an ITO anode and an aluminum cathode. For the active layer we use either ladder-type Polyparaphenylene (m-LPPP) or Parahexaphenyl (PHP). A thin film of an insulating material is applied between the active layer and the cathode, in order to achieve a better tunnel injection due to a higher electric field at the interface. We compared different insulating materials with various thickness. The best results are obtained by using a LiF-layer with a thickness between 10 A and 15 A. Thereby the onset voltage decreases and the current density in the device increases significantly.
机译:我们提出了使用薄绝缘层来改善电子注入的有机发光器件(OLED)的制造和表征。 OLED由ITO阳极和铝阴极构成。对于活性层,我们使用梯型聚对亚苯基(m-LPPP)或对六苯基(PHP)。在有源层和阴极之间施加一层绝缘材料的薄膜,以便由于界面处的电场较高而获得更好的隧道注入。我们比较了各种厚度的不同绝缘材料。通过使用厚度介于10 A和15 A之间的LiF层可获得最佳结果。因此,起始电压降低,并且器件中的电流密度显着增加。

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