Organic light emitting diode display
An organic light emitting device includes a pixel electrode, a hole auxiliary layer formed on the pixel electrode, an organic emission layer formed on the hole auxiliary layer, an electron auxiliary layer formed on the organic emission layer, and a common electrode layer formed on the electron auxiliary layer. An electric field dependency of electron mobility is increased by increasing an energetic disorder or decreasing a positional disorder for the organic emission layer.
1. An organic light emitting device, comprising:
a pixel electrode;
a hole auxiliary layer disposed on the pixel electrode;
an organic emission layer disposed on the hole auxiliary layer;
an electron auxiliary layer disposed on the organic emission layer; and
a common electrode layer disposed on the electron auxiliary layer;
wherein the organic emission layer has an increased energetic disorder so as to increase an electric field dependency of electron mobility for the organic emission layer.
2. The organic light emitting device of claim 1 , wherein the organic emission layer includes a dopant which is added to the organic emission layer so as to increase the energetic disorder.
3. The organic light emitting device of claim 2 , wherein an amount of the dopant in the organic emission layer is increased by 3% to 15% compared with an optimized dopant amount.
4. The organic light emitting device of claim 1 , wherein the organic emission layer ha a thickness which is increased so as to increase the energetic disorder for the organic emission layer.
5. The organic light emitting device of claim 4 , wherein the thickness of the organic emission layer is in a range from 10 nanometers (nm) to 60 nanometers (nm).
6. The organic light emitting device of claim 1 , wherein the energetic disorder is increased by forming a trap in a band to the organic emission layer.
7. An organic light emitting device comprising:
a pixel electrode;
a hole auxiliary layer disposed on the pixel electrode;
an organic emission layer disposed on the hole auxiliary layer;
an electron auxiliary layer disposed on the organic emission layer; and
a common electrode layer disposed on the electron auxiliary layer;
wherein the organic emission layer has a thin film deposition ratio which is decreased so as to regularly or densely form a molecular structure in the organic emission layer, thereby decreasing a positional disorder of the organic emission layer.