| Literature DB >> 25388087 |
Jin Wook Kim1, Seung Il You1, Nam Ho Kim1, Ju-An Yoon1, Kok Wai Cheah2, Fu Rong Zhu2, Woo Young Kim3.
Abstract
In this study, we report our effort to realize high performance single emissive layer three color white phosphorescent organic light emitting diodes (PHOLEDs) through sequential Dexter energy transfer of blue, green and red dopants. The PHOLEDs had a structure of; ITO(1500 Å)/NPB(700 Å)/mCP:Firpic-x%:Ir(ppy)3-0.5%:Ir(piq)3-y%(300 Å)/TPBi(300 Å)/Liq(20 Å)/Al(1200 Å). The dopant concentrations of FIrpic, Ir(ppy)3 and Ir(piq)3 were adjusted and optimized to facilitate the preferred energy transfer processes attaining both the best luminous efficiency and CIE color coordinates. The presence of a deep trapping center for charge carriers in the emissive layer was confirmed by the observed red shift in electroluminescent spectra. White PHOLEDs, with phosphorescent dopant concentrations of FIrpic-8.0%:Ir(ppy)3-0.5%:Ir(piq)3-0.5% in the mCP host of the single emissive layer, had a maximum luminescence of 37,810 cd/m(2) at 11 V and a luminous efficiency of 48.10 cd/A at 5 V with CIE color coordinates of (0.35, 0.41).Entities:
Year: 2014 PMID: 25388087 PMCID: PMC4228348 DOI: 10.1038/srep07009
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic energy band diagrams of white PHOLEDs and molecular structures of host and dopant materials.
Summary of different dopant combinations used in the single EML of white PHOLEDs of the type: ITO(1500 Å)/NPB(700 Å)/EML(300 Å)/TPBi(300 Å)/Liq(20 Å)/Al(1200 Å)
| Device | EML (300 Å) |
|---|---|
| mCP:FIrpic-0% | |
| mCP:FIrpic-4% | |
| mCP:FIrpic-8% | |
| mCP:FIrpic-12% | |
| mCP:FIrpic-8%:Ir(ppy)3-0.5%:Ir(piq)3-0.1% | |
| mCP:FIrpic-8%:Ir(ppy)3-0.5%:Ir(piq)3-0.5% | |
| mCP:FIrpic-8%:Ir(ppy)3-0.5%:Ir(piq)3-1.0% |
Figure 2(a) Current density-voltage (J-V) and luminescence-voltage (L-V) measured for devices A1–A4, and (b) plots of luminous efficiency as a function of luminescence.
Figure 3EL spectra measured for devices A1, A2, A3 and A4.
Figure 4Photoluminescence and phosphorescence spectra measured for mCP, FIrpic and Ir(ppy)3 and the absorption spectra of FIrpic (blue), Ir(ppy)3 (green) and Ir(piq)3 (red) dopants.
Figure 5EL spectra of the devices with different concentrations of red Ir(piq)3 dopant.
Figure 6(a) Current density – voltage and luminescence – voltage characteristics and (b) luminous efficiency as a function of luminescence measured for devices B1 and B3.