Organic EL device and manufacturing method thereof
View Patent ↗According to one embodiment, an organic EL device includes a pixel electrode, an organic layer disposed above the pixel electrode, a counter-electrode disposed above the organic layer, and an oxide layer disposed between the pixel electrode and the organic layer, the oxide layer including a first region formed with a first film thickness over a first area and a second region formed with a second film thickness which is less than the first film thickness, over a second area which is less than the first area.
1. An organic EL device comprising:
a pixel electrode;
an organic layer disposed above the pixel electrode;
a counter-electrode disposed above the organic layer; and
an oxide layer disposed between the pixel electrode and the organic layer, the oxide layer including a first region formed with a first film thickness over a first area and a second region formed with a second film thickness which is less than the first film thickness, over a second area which is less than the first area,
wherein the oxide layer includes a first oxide layer disposed above the pixel electrode, and a second oxide layer disposed on the first oxide layer.
2. The organic EL device according to claim 1 , wherein the second region includes a first thin film region in which the first oxide layer is not formed between the pixel electrode and the organic layer and the second oxide layer is disposed between the pixel electrode and the organic layer, and a second thin film region in which the second oxide layer is not formed between the pixel electrode and the organic layer and the first oxide layer is disposed between the pixel electrode and the organic layer.
3. The organic EL device according to claim 1 , wherein the first oxide layer and the second oxide layer are formed of an inorganic compound.
4. An organic EL device comprising:
a pixel electrode;
an organic layer disposed above the pixel electrode;
a counter-electrode disposed above the organic layer; and
an oxide layer disposed between the pixel electrode and the organic layer, the oxide layer including a first region formed with a first film thickness over a first area and a second region formed with a second film thickness which is less than the first film thickness, over a second area which is less than the first area,
wherein the oxide layer is a hole transport layer or a hole injection layer.
5. The organic EL device according to claim 1 , wherein the organic layer includes a light emission layer, and a hole transport layer which is disposed between the light emission layer and the oxide layer.
6. The organic EL device according to claim 5 , wherein the organic layer further includes an electron transport layer disposed between the light emission layer and the counter-electrode.
7. An organic EL device comprising:
a pixel electrode;
a first hole transport layer or a hole injection layer which is disposed above the pixel electrode and includes a first region formed with a first film thickness over a first area and a second region formed with a second film thickness which is less than the first film thickness, over a second area which is less than the first area;
an organic layer including a second hole transport layer disposed above the first hole transport layer or the hole injection layer and formed of an organic compound, a light emission layer disposed above the second hole transport layer, and an electron transport layer disposed above the light emission layer; and
a counter-electrode disposed above the organic layer.
8. The organic EL device according to claim 7 , wherein the first hole transport layer or the hole injection layer is formed of an inorganic compound.
9. The organic EL device according to claim 7 , wherein the first hole transport layer or the hole injection layer includes a first oxide layer disposed above the pixel electrode, and a second oxide layer disposed on the first oxide layer.
10. The organic EL device according to claim 9 , wherein the second region includes a first thin film region in which the first oxide layer is not formed between the pixel electrode and the second hole transport layer and the second oxide layer is disposed between the pixel electrode and the second hole transport layer, and a second thin film region in which the second oxide layer is not formed between the pixel electrode and the second hole transport layer and the first oxide layer is disposed between the pixel electrode and the second hole transport layer.