Applied Physics Letters · 2005 · 81 citations · 12 references
White OledElectrical EngineeringChemical EngineeringEngineeringSolid-state LightingPhotochemistryOrganic ElectronicsApplied PhysicsOrganic SemiconductorLuminescence PropertyNew Lighting TechnologyMgo Interfacial LayerAl CathodeMagnesium OxideMicroelectronicsOptoelectronicsElectron Injection
We report the enhancement of the electron injection by inserting a 1-nm-thick magnesium oxide (MgO) buffer layer between Al cathode and tris (8-hydroxyquinoline) aluminum in an inverted top-emitting organic light-emitting diode (OLED). The turn-on voltage of OLEDs decreased from 10 to 6 V and the luminance increased about 61% as the MgO interfacial layer was employed. The MgO interfacial layer played a role in reducing the energy barrier of electron injection, leading to the reduction of the turn-on voltage and the enhancement of luminance.
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