研究目的
Investigating the mechanism of OLEDs efficiency roll-off with interfacial charge storage and their time-resolved emission spectra.
研究成果
The OLEDs efficiency roll-off is positively correlated with the interfacial charge storage especially at low current density and under unbalanced charge injection. The study highlights the importance of controlling charge accumulation to improve OLED performance and reduce efficiency roll-off.
研究不足
The study focuses on the effect of interfacial charge storage on OLEDs efficiency roll-off, particularly under unbalanced charge injection conditions. The thickness of the PMMA layer was varied to control hole injection and accumulation, but the study does not explore the effects of other materials or device architectures.
1:Experimental Design and Method Selection:
Organic light-emitting devices with Ir(ppy)3 doped CBP as the light-emitting layer were prepared, and PMMA layers of 5 nm, 6 nm, 8 nm and 9 nm were inserted as charge storage layers to control hole injection and hole accumulation. The transient electroluminescence measurement was used to analyze the storage of the interfacial charges.
2:Sample Selection and Data Sources:
The devices were fabricated on patterned indium tin oxide (ITO) with a structure of ITO / PEDOT: PSS / PMMA (5 nm, 6 nm, 8 nm, 9 nm) / CBP: Ir(ppy)3 (35nm) / Bphen (30nm) / LiF (0.6nm) / Al (100nm).
3:6nm) / Al (100nm).
List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: Keithley Source Meter 2410, SRC-600 colorimeter, Electrochemical Workstation for C-V characteristics, and an ellipsometer for thickness measurement.
4:Experimental Procedures and Operational Workflow:
The ITO substrate was cleaned and treated with UV-ozone. Layers were spin-coated or thermally evaporated under controlled conditions. The J-V-L characteristics, transient EL, and C-V characteristics were measured.
5:Data Analysis Methods:
The data was analyzed to understand the relationship between interfacial charge storage and OLEDs efficiency roll-off, using transient electroluminescence and time-resolved emission spectra.
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