A detailed investigation of the device operation of a blue-emitting multilayer organic light-emitting device (OLED) using an electronic device model is presented. In particular, a transient electroluminescence overshoot at turn-on is found to originate from charge and recombination confinement effects at internal interfaces. The location of the emission zone is obtained from the electronic model and its experimental determination exemplified by a sensing layer method. Moreover, the optimization of emission intensity and color is discussed for a red-emitting OLED. The thin-film interference effects are analyzed with help of an optical device model
Organic light-emitting devices (OLEDs) consist of a stack of multiple thin film layers whose thickne...
A numerical study of space charge effects in multilayer organic light-emitting diodes (OLEDs) is pre...
A numerical study of space charge effects in multilayer organic light-emitting diodes (OLEDs) is pre...
A detailed investigation of the device operation of a blue-emitting multilayer organic light-emittin...
A detailed investigation of the device operation of a blue-emitting multilayer organic light-emittin...
Abstract—In this paper, we propose a technique to enable ef-ficient and rigorous modeling of light e...
In this paper, we propose a technique to enable efficient and rigorous modeling of light emission in...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
Organic light emitting devices (OLEDs) are among the most promising for flat panel display technolog...
Color stability in multi-emissive layer organic light emitting devices (Me-OLEDs) has been investiga...
Organic light-emitting devices (OLEDs) consist of a stack of multiple thin film layers whose thickne...
A numerical study of space charge effects in multilayer organic light-emitting diodes (OLEDs) is pre...
A numerical study of space charge effects in multilayer organic light-emitting diodes (OLEDs) is pre...
A detailed investigation of the device operation of a blue-emitting multilayer organic light-emittin...
A detailed investigation of the device operation of a blue-emitting multilayer organic light-emittin...
Abstract—In this paper, we propose a technique to enable ef-ficient and rigorous modeling of light e...
In this paper, we propose a technique to enable efficient and rigorous modeling of light emission in...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
In multilayer white organic light-emitting diodes the electronic processes in the various layers—inj...
Organic light emitting devices (OLEDs) are among the most promising for flat panel display technolog...
Color stability in multi-emissive layer organic light emitting devices (Me-OLEDs) has been investiga...
Organic light-emitting devices (OLEDs) consist of a stack of multiple thin film layers whose thickne...
A numerical study of space charge effects in multilayer organic light-emitting diodes (OLEDs) is pre...
A numerical study of space charge effects in multilayer organic light-emitting diodes (OLEDs) is pre...