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White Organic Light Emitting Diodes for Solid State Lighting -- A Path Towards High Efficiency and Device Stability.

机译:固态照明用白色有机发光二极管-通往高效和器件稳定性的道路。

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摘要

White organic light emitting diodes (WOLEDs) are currently being developed as the next generation of solid state lighting sources. Although, there has been considerable improvements in device efficiency from the early days up until now, there are still major drawbacks for the implementation of WOLEDs to commercial markets. These drawbacks include short lifetimes associated with highly efficient and easier to fabricate device structures. Platinum (II) complexes are been explored as emitters for single emissive layer WOLEDs, due to their higher efficiencies and stability in device configurations. These properties have been attributed to their square planar nature. Tetradentate platinum (II) complexes in particular have been shown to be more rigid and thus more stable than their other multidentate counterparts. This thesis aims to explore the different pathways via molecular design of tetradentate platinum II complexes and in particular the percipient engineering of a highly efficient and stable device structure. Previous works have been able to obtain either highly efficient devices or stable devices in different device configurations. In this work, we demonstrate a device structure employing Pt2O2 as the emitter using mCBP as a host with EQE of above 20% and lifetime values (LT80) exceeding 6000hours at practical luminance of 100cd/m2. These results open up the pathway towards the commercialization of white organic light emitting diodes as a solid state lighting source.
机译:白色有机发光二极管(WOLED)目前正在被开发为下一代固态照明光源。尽管从早期到现在,设备效率已有了相当大的提高,但是将WOLED应用于商业市场仍然存在主要缺陷。这些缺点包括与高效且易于制造器件结构相关的寿命短。由于铂(II)配合物在器件配置中具有更高的效率和稳定性,因此已被用作单发光层WOLED的发射体。这些性质归因于它们的正方形平面性质。特别是四齿铂(II)配合物比其他多齿对应物更坚硬,因此更稳定。本文旨在通过四齿铂II配合物的分子设计探索不同的途径,尤其是高效和稳定的器件结构的初步设计。先前的工作已经能够获得高效的设备或采用不同设备配置的稳定设备。在这项工作中,我们演示了一种器件结构,该器件结构使用Pt2O2作为发射器,使用mCBP作为主体,在100cd / m2的实际亮度下,EQE超过20%,寿命值(LT80)超过6000小时。这些结果为白色有机发光二极管作为固态光源的商业化开辟了道路。

著录项

  • 作者

    Oloye, Temidayo Abiola.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Materials science.
  • 学位 M.S.
  • 年度 2016
  • 页码 66 p.
  • 总页数 66
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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