Binuclear Platinum Complexes as Emissive Dopants for Solution-Processed Red and Near-Infrared PLEDs

来源 :第六届全国暨华人有机分子和聚合物发光与激光学术会议 | 被引量 : 0次 | 上传用户:xtepnui2020
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  A novel kind of binuclear platinum (Ⅱ) complexes,FPt-C8-OXT and PPt-C8-OXT were synthesized,their molecular structures were showed in Figure 1.Using these Pt(Ⅱ) complexes as dopants with 1 wt%-8 wt% doping concentrations and a blend of poly(9,9-dioctyl fluorence) (PFO) and 30 wt% 2-tert-butylphenyl-5-biphenyl-1,3,4-oxadiazole (PBD) as host matrix,the double-layer-ed polymer light-emitting devices (PLEDs) were fabricated with a configuration of ITO/PEDOT:PASS,50nm / PVK,40 nm / Pt-complexes + PFO-PBD(30%),80 nm / Ba,4 nm / Al,150 nm.The photoluminescence (PL) and electroluminescence (EL) properties of these complexes in the devices were studied.By optimizing the dopant concentration,the device with 8 wt% FPt-C8-OXT displayed red emission at 620 nm with a CIE coordinates of (0.59,0.40) and a maximum external quantum efficiency of 8.5% at 241 cd m-2; the device with 8 wt% PPt-C8-OXT exhibited near-infrared emission at 706 nm with a CIE coordinates of (0.68,0.31) and a maximum external quantum efficiency of 6.4% at 275 cd m-2.To the best of our knowledge,these are the highest efficiencies for the reported binuclear platinum (Ⅱ) complexes-doped PLEDs with red and near-infrared emissions.
其他文献
  随着我国科学事业单位改革的深入,财务管理在促进科学事业单位发展中的作用越来越重要。本文旨在通过对企业财务管理与科学事业单位财务管理的比较,揭示科学事业单位财务管
  Previous studies have shown that,similar feedback gains are required to minimize thekinetic energy of a plate and to maximize the absorbed energy by each fo
  基于白光有机发光二极管(OLED)的新型固体光源以其高效能、低能耗、安全性高、绿色环保、色彩丰富等诸多优异特性,被业界公认为是21世纪最具潜质和最具发展前景的高技术
会议
会议
  Blue light-emitting anthracene derivatives end-capped with triphenylamine for efficient hole transportation have been designed and synthesized using two-ste
会议
会议
  System identification has wide applications in adaptive echo/feedback cancellation,active noise control,adaptive channel equalization,etc.When the system is
会议
  本文对造成磷光敏化荧光聚合物电致发光器件效率降低的两个主要的能量损失机理进行了深入的研究。我们采用磷光染料Ir(ppy)3和荧光染料DCJTB这种典型的磷光敏化荧光体系,
会议