IP Library › Granted Patent US 12,150,327
Granted Patent B2
US 12,150,327 · App. 17/262,755 · Granted Nov 19, 2024

Organic light-emitting display device, manufacturing method thereof, and display panel

Inventor: Weiwei Li (Wuhan, CN)
Assignee: Wuhan China Star Optoelectronics Semiconductor Display Technology Co., Ltd.
H10K50/13H10K50/11H10K71/00H10K59/12H10K59/1201H10K2101/40
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Quick Facts
Patent No.
US 12,150,327
App. No.
17/262,755
Granted
Nov 19, 2024
Kind
B2
Abstract

An organic light-emitting diode display device is provided by the present application, including an anode layer, a cathode layer, and a light-emitting layer disposed between the anode layer and the cathode layer, wherein the light-emitting layer includes a first light-emitting layer and a second light-emitting layer stacked. The first light-emitting layer includes a first color light-emitting part, a second color light-emitting part, and a third color light-emitting part arranged in a same layer. The second light-emitting layer is configured to emit light of a first color, and the second light-emitting layer is disposed at a side of the first light-emitting layer and covers the first light-emitting layer.

Claims (23)

1. An organic light-emitting diode display device, comprising an anode layer, a cathode layer, and a light-emitting layer disposed between the anode layer and the cathode layer, wherein the light-emitting layer comprises a first light-emitting layer and a second light-emitting layer stacked; the first light-emitting layer comprises a first color light-emitting part, a second color light-emitting part, and a third color light-emitting part arranged in a same layer; the second light-emitting layer is configured to emit light of a first color; and the second light-emitting layer is disposed at a side of the first light-emitting layer and covers the first light-emitting layer;

wherein the first color light-emitting part comprises a first host material, and the second light-emitting layer comprises a fourth host material; and the second light-emitting layer is disposed between the cathode and the first light-emitting layer, and a highest occupied molecular orbital energy level of the fourth host material is lower than a highest occupied molecular orbital energy level of the first host material; and

both of the first color light-emitting part and the second light-emitting layer are blue light-emitting layers.

2. The organic light-emitting diode display device in claim 1 , wherein the first color light-emitting part comprises a first guest material, the second color light-emitting part comprises a second host material, the third color light-emitting part comprises a third host material, and the second light-emitting layer comprises a fourth guest material.

3. The organic light-emitting diode display device in claim 2 , wherein a first triplet excited state energy level of the fourth host material is higher than a first triplet excited state energy level of the second host material and a first triplet excited state energy level of the third host material.

4. The organic light-emitting diode display device in claim 2 , wherein the fourth host material comprises an electron-transmission type light-emitting material, and the first host material comprises a hole-transmission type light-emitting material.

5. The organic light-emitting diode display device in claim 4 , wherein a doping concentration of the first guest material in the first color light-emitting part is higher than a doping concentration of the fourth guest material in the second light-emitting layer.

6. The organic light-emitting diode display device as claimed in claim 2 , wherein a doping concentration of the first guest material in the first color light-emitting part is higher than a doping concentration of the fourth guest material in the second light-emitting layer.

7. The organic light-emitting diode display device in claim 1 , wherein the first color light-emitting part comprises a first guest material, and a doping concentration of the first guest material in the first color light-emitting part 311 is 3% to 5%; and the second light-emitting layer comprises a fourth guest material, and a doping concentration of the fourth guest material in the second light-emitting layer is less than 3%.

8. A manufacturing method of an organic light-emitting diode display device, comprising steps of:

forming an anode layer;

forming a light-emitting layer on the anode layer, wherein the light-emitting layer comprises a first light-emitting layer and a second light-emitting layer stacked;

the first light-emitting layer comprises a first color light-emitting part, a second color light-emitting part, and a third color light-emitting part arranged in a same layer; the second light-emitting layer is configured to emit light of a first color; the second light-emitting layer is disposed at a side of the first light-emitting layer and covers the first light-emitting layer; the first light-emitting layer is formed through an evaporation process with a fine mask; and the second light-emitting layer is formed through an evaporation process with a non-fine mask; and

forming a cathode layer on the light-emitting layer to obtain the organic light-emitting diode display device;

wherein the first color light-emitting part comprises a first host material, and the second light-emitting layer comprises a fourth host material; and the second light-emitting layer is disposed between the cathode and the first light-emitting layer, and a highest occupied molecular orbital energy level of the fourth host material is lower than a highest occupied molecular orbital energy level of the first host material; and

both of the first color light-emitting part and the second light-emitting layer are blue light-emitting layers.

9. A display panel, comprising an organic light-emitting diode display device, wherein the organic light-emitting diode display device comprises an anode layer, a cathode layer, and a light-emitting layer disposed between the anode layer and the cathode layer, wherein the light-emitting layer comprises a first light-emitting layer and a second light-emitting layer stacked; the first light-emitting layer comprises a first color light-emitting part, a second color light-emitting part, and a third color light-emitting part arranged in a same layer; the second light-emitting layer is configured to emit light of a first color; and the second light-emitting layer is disposed at a side of the first light-emitting layer and covers the first light-emitting layer;

wherein the first color light-emitting part comprises a first host material, and the second light-emitting layer comprises a fourth host material; and the second light-emitting layer is disposed between the cathode and the first light-emitting layer, and a highest occupied molecular orbital energy level of the fourth host material is lower than a highest occupied molecular orbital energy level of the first host material; and

both of the first color light-emitting part and the second light-emitting layer are blue light-emitting layers.

10. The display panel in claim 9 , wherein the first color light-emitting part comprises a first guest material, the second color light-emitting part comprises a second host material, the third color light-emitting part comprises a third host material, and the second light-emitting layer comprises a fourth guest material.

11. The display panel in claim 10 , wherein a first triplet excited state energy level of the fourth host material is higher than a first triplet excited state energy level of the second host material and a first triplet excited state energy level of the third host material.

12. The display panel in claim 10 , wherein the fourth host material comprises an electron-transmission type light-emitting material, and the first host material comprises a hole-transmission type light-emitting material.

13. The display panel in claim 9 , wherein the first color light-emitting part comprises a first guest material, and a doping concentration of the first guest material in the first color light-emitting part 311 is 3% to 5%; and the second light-emitting layer comprises a fourth guest material, and a doping concentration of the fourth guest material in the second light-emitting layer is less than 3%.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2021
From: LI, WEIWEI
To: WUHAN CHINA STAR OPTOELECTRONICS SEMICONDUCTOR DISPLAY TECHNOLOGY CO., LTD.
Reel/Frame 055012/0393 →
Priority Claims (1)
CN 202010639512.8 · Jul 6, 2020 · national
Continuity (1)
Related Publication 20220393127A1 · Dec 8, 2022
Cited By (2)
US 12,408,529 US 12,615,900