Organic EL device and method of manufacturing the same
View Patent ↗An organic electroluminescent device is disclosed that includes an emission layer between a first electrode and a second electrode, and a buffer layer between the emission layer and the first electrode. The buffer layer includes a carbon-based compound and may be about 0.1 nm to about 100 nm thick. The organic electroluminescent device has greater driving voltage, better efficiency, and a longer life expectancy.
1. An organic electroluminescent device, comprising:
a first electrode;
a buffer layer comprised of a carbon-based compound on the first electrode;
an emission layer on the buffer layer;
a hole injection layer between the first electrode and the emission layer; and
a second electrode on the emission layer,
wherein the buffer layer is 0.1 nm to 100 nm thick,
wherein the carbon-based compound includes fullerene,
wherein the buffer layer is between the first electrode and the hole injection layer or between the hole injection layer and the emission layer, and
wherein the hole injection layer includes the carbon-based compound in the range of about 0.005 to about 99.95 parts by weight based on 100 parts by weight of the hole injection layer.
2. The organic electroluminescent device of claim 1 ,
wherein the buffer layer is between the first electrode and the hole injection layer.
3. The organic electroluminescent device of claim 1 , further comprising:
a hole transport layer between the first electrode and the emission layer,
wherein the buffer layer is between the first electrode and the hole transport layer or between the hole transport layer and the emission layer.
4. The organic electroluminescent device of claim 3 ,
wherein the buffer layer is between the first electrode and the hole transport layer.
5. The organic electroluminescent device of claim 4 ,
wherein the hole transport layer includes the carbon-based compound in the range of about 0.005 to about 99.95 parts by weight based on 100 parts by weight of the hole transport layer.
6. The organic electroluminescent device of claim 1 , further comprising:
a hole transport layer between the hole injection layer and the emission layer,
wherein the buffer layer is between one or more of the first electrode and the hole injection layer, the hole injection layer and the hole transport layer, and the hole transport layer and the emission layer.
7. The organic electroluminescent device of claim 6 ,
wherein the buffer layer is between the first electrode and the hole injection layer.
8. The organic electroluminescent device of claim 7 ,
wherein the buffer layer is between the first electrode and the hole injection layer and another buffer layer is between the hole injection layer and the hole transport layer.
9. The organic electroluminescent device of claim 6 ,
wherein the buffer layer is between the hole injection layer and the hole transport layer.
10. The organic electroluminescent device of claim 9 ,
wherein the hole transport layer includes the carbon-based compound in the range of about 0.005 to about 99.95 parts by weight based on 100 parts by weight of the hole transport layer.
11. The organic electroluminescent device of claim 1 , further comprising:
a layer selected form the group of a hole blocking layer, an electron transport layer, and an electron injection layer,
wherein the layer is between the emission layer and the second electrode.
12. An organic electroluminescent device, comprising:
a first electrode;
a buffer layer comprised of a carbon-based compound on the first electrode;
an emission layer formed on the buffer layer;
a hole injection layer between the first electrode and the emission layer;
a hole transport layer between the hole injection layer and the emission layer;
an electron transport layer formed on the emission layer; and
a second electrode formed on the electron transport layer, wherein the electron transport layer includes an electron transporting material and a carbon-based compound,
wherein the buffer layer is 0.1 nm to 100 nm thick, and
wherein the carbon-based compound includes fullerene, and
wherein the buffer layer is between the first electrode and the hole injection layer.
13. The organic electroluminescent device of claim 12 ,
wherein the amount of the carbon-based compound in the electron transport layer is in the range of about 0.005 to about 99.95 parts by weight based on 100 parts by weight of the electron transport layer.
14. The organic electroluminescent device of claim 12 , further comprising:
a second buffer layer comprising the carbon-based compound between one or more of the first electrode and the hole transport layer, and the hole injection layer and the hole transport layer.
15. An organic electroluminescent device, comprising:
a first electrode;
a buffer layer comprised of a carbon-based compound on the first electrode;
an emission layer formed on the buffer layer;
a hole injection layer between the first electrode and the emission layer;
a hole transport layer between the hole injection layer and the emission layer;
an electron transport layer formed on the emission layer; and
a second electrode formed on the electron transport layer, wherein the electron transport layer includes an electron transporting material and a carbon-based compound,
wherein the buffer layer is 0.1 nm to 100 nm thick, and
wherein the carbon-based compound includes fullerene, and
wherein the buffer layer is between the hole injection layer and the hole transport layer.
16. The organic electroluminescent device of claim 15 , further comprising:
a second buffer layer comprising the carbon-based compound between one or more of the first electrode and the hole transport layer, the first electrode and the hole injection layer.
17. The organic electroluminescent device of claim 12 , further comprising:
an electron injection layer, a hole blocking layer, or both an electron injection layer and a hole blocking layer between the electron transport layer and the second electrode.