Applied Physics Letters · 2002 · 30 citations · 9 references
Thin Lif LayerEngineeringOrganic ElectronicsOptoelectronic DevicesLuminescence PropertyElectronic DevicesPhotodetectorsOptical PropertiesLight-emitting DiodesPhotonicsElectrical EngineeringOptoelectronic MaterialsNew Lighting TechnologyIto Refractive IndexTransfer-matrix MethodWhite OledSolid-state LightingApplied PhysicsOptoelectronicsOptical Devices
We study resonant-cavity organic light-emitting diodes made on silicon substrates. The device structure is Al/indium–tin–oxide (ITO)/copper phthalocyanine (CuPc)/a triphenylamine derivative (TPD)/tris-(8-hydroxyquinoline) aluminum (Alq3)/cathode, where the cathode is a semitransparent Al layer or a LiF/Al stack. We use a model based on the transfer-matrix method to deduce the wavelength dependence of the ITO refractive index, and to calculate the spectra and the angular emission diagrams of the diodes. Microcavities limit the spectral and spatial distributions of the emitted light in accordance with the model. Current–voltage characteristics of various devices prove that a thin LiF layer improves the injection of electrons in Alq3 from semitransparent aluminum cathodes.
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Organic electroluminescent diodes
Chak Wah Tang, S. A. VanSlyke · Applied Physics Letters · 1987 · 14.1K citations
Light-emitting diodes based on conjugated polymers
J. H. Burroughes, Donal D. C. Bradley, Adam R. Brown et al. · Nature · 1990 · 11.3K citations
Resonance Absorption by Nuclear Magnetic Moments in a Solid
Edward M. Purcell, H. C. Torrey, R. V. Pound · Physical Review · 1946 · 5.8K citations · Full text
Conjugated polymer light-emitting diodes on silicon substrates
D.R. Baigent, R. N. Marks, Neil C. Greenham et al. · Applied Physics Letters · 1994 · 79 citations
White Oled, Electrical Engineering, Chemical Engineering +14