首页> 外文会议>Conference on organic light emitting materials and devices >Long-lived and highly efficient green and blue phosphorescent emitters and device architectures for OLED displays
【24h】

Long-lived and highly efficient green and blue phosphorescent emitters and device architectures for OLED displays

机译:OLED显示器的长寿命且高效的绿色和蓝色磷光发射器和设备架构

获取原文

摘要

In this paper, two OLED device concepts are introduced. First, classical phosphorescent green carbene emitters with unsurpassed lifetime, combined with low voltage and high efficiency are presented and the associated optimized OLED stacks are explained. Second, a path towards highly efficient, long-lived deep blue systems is shown. The high efficiencies can be reached by having the charge-recombination on the phosphorescent carbene emitter while at the same time short emissive lifetimes are realized by fast energy transfer to the fluorescent emitter, which eventually allows for higher OLED stability in the deep blue. Device architectures, materials and performance data are presented showing that carbene type emitters have the potential to outperform established phosphorescent green emitters both in terms of lifetime and efficiency. The specific class of green emitters under investigation shows distinctly larger electron affinities (2.1 to 2.5 eV) and ionization potentials (5.6 to 5.8 eV) as compared to the "standard" emitter Ir(ppy)_3 (5.0/1.6 eV). This difference in energy levels requires an adopted OLED design, in particular with respect to emitter hosts and blocking layers. Consequently, in the diode setup presented here, the emitter species is electron transporting or electron trapping. For said green carbene emitters, the typical peak wavelength is 525 ran yielding CIE color coordinates of (x = 0.33, y = 0.62). Device data of green OLEDs are shown with EQEs of 26 %. Driving voltage at 1000 cd/m~2 is below 3 V. In an optimized stack, a device lifetime of LT_(95) > 15,000 h (1000 cd/m~2) has been reached, thus fulfilling AMOLED display requirements.
机译:本文介绍了两种OLED器件概念。首先,介绍了具有无与伦比的使用寿命,低电压和高效率的经典磷光绿色卡宾发射器,并说明了相关的优化OLED堆栈。其次,显示了通往高效,长寿命深蓝色系统的途径。通过在磷光卡宾发射极上进行电荷复合,可以实现高效率,同时通过快速转移至荧光发射极实现短的发射寿命,最终可以实现深蓝色中更高的OLED稳定性。给出的器件架构,材料和性能数据表明,卡宾型发射器在寿命和效率方面均具有优于已确立的磷光绿色发射器的潜力。与“标准”发射器Ir(ppy)_3(5.0 / 1.6 eV)相比,正在研究的特定类别的绿色发射器显示出明显更高的电子亲和力(2.1至2.5 eV)和电离电势(5.6至5.8 eV)。能量水平的这种差异要求采用OLED设计,尤其是在发射器主体和阻挡层方面。因此,在此处介绍的二极管设置中,发射极物质是电子传输或电子陷阱。对于所述绿色卡宾发射器,典型的峰值波长为525nm,产生(x = 0.33,y = 0.62)的CIE色坐标。显示的绿色OLED的设备数据的EQE为26%。 1000 cd / m〜2时的驱动电压低于3V。在优化的堆叠中,器件的使用寿命达到LT_(95)> 15,000 h(1000 cd / m〜2),从而满足AMOLED显示要求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号