Dept. of Information Display, Kyung Hee University, Seoul 02447, Republic of Korea.
Nanoscale. 2016 Apr 28;8(16):8575-82. doi: 10.1039/c6nr00868b. Epub 2016 Apr 6.
To improve the viewing angle characteristic as well as the light extraction effect of strong microcavity devices, we fabricated a nanoporous polymer film (NPF) as a scattering medium as well as a light extraction component. We designed two types of organic light emitting diodes (OLEDs) with a strong microcavity effect by changing the thickness of the hole transport layer (HTL; e.g., 30 nm and 60 nm) to investigate two different scattering effects of the NPF. Very interestingly, we could observe a significant enhancement of the external quantum efficiency (EQE) for each device (30 nm thick HTL: 18.0%, 60 nm thick HTL: 31.6%) when we attached a NPF formed on a 125 μm thick PET film coated with the NPF. Furthermore, the NPF successfully suppressed the viewing angle dependence to realize ideal angular emission even in the two extreme microcavity conditions although they are still different from that of a Lambertian distribution.
为了改善强微腔器件的视角特性和光提取效果,我们制备了一种纳米多孔聚合物膜(NPF)作为散射介质和光提取组件。我们通过改变空穴传输层(HTL;例如,30nm 和 60nm)的厚度设计了两种具有强微腔效应的有机发光二极管(OLED),以研究 NPF 的两种不同散射效应。有趣的是,当我们在涂覆有 NPF 的 125μm 厚 PET 薄膜上形成 NPF 时,我们可以观察到每个器件的外量子效率(EQE)显著提高(30nm 厚 HTL:18.0%,60nm 厚 HTL:31.6%)。此外,NPF 成功地抑制了视角依赖性,即使在两种极端微腔条件下也实现了理想的角度发射,尽管它们仍然与朗伯分布不同。