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Keyword [Efficiency roll-off]
Result: 1 - 20 | Page: 1 of 2
1. Synthesis And Electroluminescent Properties Of Novel Iridium Complexes
2. Synthesis And Luminescent Properties Of Several Novel Iridium Complexes
3. Manipulating The Photoelectric Properties Of Iridium(Ⅲ) Complexes:Material Design And Device Fabrication
4. Synthesis And Properties Of Near-infrared Emitting Iridium Complexes
5. Design, Synthesis And Properties Of Near-infrared Phosphorescent Iridium Complexes
6. Design And Synthesis Of Blue Fluorescent Emitters Based On Imidazole And Their Electroluminescence Properties
7. Synthesis And Properties Of Thermally Activated Delayed Fluorescence Materials Based On The Electron Acceptors Of Xanthone Derivatives
8. Synthesis And Device Properties Of Some Organic Functional Materials
9. The Molcular Design,Synthesis And Optoelectronic Properties Of High-Efficiency Full-Color Electroluminesent Materials Based On Phenanthroimidazole Donor
10. Study Of Fluorescent/Phosphorescent Hybrid White Organic Light-emitting Diodes
11. Molecular Regulation And Photoelectric Properties Of Benzimidazole-based Ir(?)Complexes
12. Study On High Efficient Quasi-two-dimensional Perovskite Light-emitting Diodes
13. Design And Synthesis Of Phosphorescent Ir(?) Complexes For Highly Efficient Doping-free/Heavily Doped OLEDs
14. Oxadiazol Based Small Molecule Electron Transporting Materials For Solution-Processed OLED And Their Properties
15. The Excited State Natures Of 1,2,4-triazole Bipolar Hosts And Performances In Low Roll-off Phosphorescent Devices
16. Synthesis And Electroluminescent Properties Of Novel Nitrogen Heterocyclic-Based Thermally Activated Delayed Fluorescence Materials And Host Materials
17. Study On Improving The Efficiency And Efficiency Roll-off Of Organic Light Emitting Devices
18. Design,Synthesis And Device Performance Of Efficient Phosphorescent Host Materials
19. Design, Synthesis And Optoelectronic Properties Of Donor-Acceptor Type Thermally Activated Delayed Fluorescent Materials
20. Synthesis And Properties Of Thermally Activated Delayed Fluorescence Materials Based On Quinoxaline Derivatives
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