IP Library Granted Patent US 12,082,475
Granted Patent B2
US 12,082,475 · App. 17/055,659 · Granted Sep 3, 2024

Display panel and method for fabricating same

Inventor: Gaobo Lin (Shenzhen, CN)
Assignee: Shenzhen China Star Optoelectronics Semiconductor Display Technology Co., Ltd.
H10K59/80522H10K59/1201H10K59/122H10K59/80515H10K59/80521H10K59/873H10K59/8792H10K71/00
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Quick Facts
Patent No.
US 12,082,475
App. No.
17/055,659
Granted
Sep 3, 2024
Kind
B2
Abstract

A display panel and a method for fabricating the same are provided. In the display panel, an undercut structure is formed below a second auxiliary electrode, so that a cathode electrode and a first auxiliary electrode have an overlapping region, and the cathode electrode and the first auxiliary electrode are connected.

Claims (84)

1. A display panel, comprising:

an array substrate comprising a source electrode, a drain electrode, a first auxiliary electrode, and a protective layer disposed on the first auxiliary electrode, wherein the first auxiliary electrode, the source electrode, and the drain electrode are formed of a same material on a same layer;

a second auxiliary electrode disposed on the protective layer and connected to the first auxiliary electrode;

an undercut structure formed on the protective layer, extending to directly below the second auxiliary electrode, and exposing the first auxiliary electrode;

a flat layer disposed on the second auxiliary electrode and the protective layer;

an anode electrode disposed on the flat layer;

a pixel defining layer disposed on the anode electrode and the flat layer, and provided with a first opening connected to the undercut structure;

an organic light-emitting layer disposed on the pixel defining layer and not completely covering an exposed part of the first auxiliary electrode; and

a cathode electrode disposed on the organic light-emitting layer, extending into the undercut structure, and connected to the first auxiliary electrode;

wherein the array substrate further comprises:

a base substrate;

a light-shielding metal layer disposed directly on the base substrate,

a first electrode plate disposed directly on the base substrate, wherein the light-shielding metal layer and the first electrode plate are disposed in a same layer;

a buffer layer disposed on the light-shielding metal layer and the first electrode plate;

an amorphous oxide semiconductor layer disposed directly on the buffer layer; and

a second electrode plate disposed directly on the buffer layer, wherein the amorphous oxide semiconductor layer and the second electrode plate are disposed in a same layer;

wherein the first electrode plate and the second electrode plate form a capacitor structure;

wherein the undercut structure has a depth into the second auxiliary electrode of 0.1 μm to 1 μm.

2. The display panel according to claim 1 , wherein the cathode electrode is connected to the second auxiliary electrode through the undercut structure.

3. The display panel according to claim 1 , wherein

the protective layer is provided with a first via hole exposing the first auxiliary electrode, and the second auxiliary electrode extends into the first via hole and is connected to the first auxiliary electrode;

the flat layer is provided with a second via hole exposing the source electrode, and the anode electrode extends into the second via hole and is connected to the source electrode; and

the pixel defining layer is provided with a second opening that exposes the anode electrode, and the organic light-emitting layer extends into the second opening.

4. The display panel according to claim 1 , wherein the second auxiliary electrode has a thickness of 500 angstroms to 20000 angstroms.

5. The display panel according to claim 1 , wherein the anode electrode is a single layer structure or a composite layer structure.

6. A display panel, comprising:

an array substrate comprising a first auxiliary electrode and a protective layer disposed on the first auxiliary electrode;

a second auxiliary electrode disposed on the protective layer and connected to the first auxiliary electrode;

an undercut structure formed on the protective layer, extending to directly below the second auxiliary electrode, and exposing the first auxiliary electrode;

a flat layer disposed on the second auxiliary electrode and the protective layer;

an anode electrode disposed on the flat layer;

a pixel defining layer disposed on the anode electrode and the flat layer, and provided with a first opening connected to the undercut structure;

an organic light-emitting layer disposed on the pixel defining layer and not completely covering an exposed part of the first auxiliary electrode; and

a cathode electrode disposed on the organic light-emitting layer, extending into the undercut structure, and connected to the first auxiliary electrode;

wherein the array substrate further comprises:

a base substrate;

a light-shielding metal layer disposed directly on the base substrate,

a first electrode plate disposed directly on the base substrate, wherein the light-shielding metal layer and the first electrode plate are disposed in a same layer;

a buffer layer disposed on the light-shielding metal layer and the first electrode plate;

an amorphous oxide semiconductor layer disposed directly on the buffer layer; and

a second electrode plate disposed directly on the buffer layer, wherein the amorphous oxide semiconductor layer and the second electrode plate are disposed in a same layer;

wherein the first electrode plate and the second electrode plate form a capacitor structure;

wherein the undercut structure has a depth into the second auxiliary electrode of 0.1 μm to 1 μm.

7. The display panel according to claim 6 , wherein the cathode electrode is connected to the second auxiliary electrode through the undercut structure.

8. The display panel according to claim 6 , wherein the array substrate further comprises a source electrode and a drain electrode disposed on a same layer as the first auxiliary electrode.

9. The display panel according to claim 8 , wherein

the protective layer is provided with a first via hole exposing the first auxiliary electrode, and the second auxiliary electrode extends into the first via hole and is connected to the first auxiliary electrode;

the flat layer is provided with a second via hole exposing the source electrode, and the anode electrode extends into the second via hole and is connected to the source electrode; and

the pixel defining layer is provided with a second opening that exposes the anode electrode, and the organic light-emitting layer extends into the second opening.

10. The display panel according to claim 6 , wherein the anode electrode is a single layer structure or a composite layer structure.

11. The display panel according to claim 6 , wherein the second auxiliary electrode has a thickness of 500 angstroms to 20000 angstroms.

12. A method for fabricating a display panel, comprising:

forming a patterned second auxiliary electrode on an array substrate, wherein the array substrate comprises a first auxiliary electrode and a protective layer disposed on the first auxiliary electrode, the protective layer is provided with a first via hole exposing the first auxiliary electrode, and the second auxiliary electrode extends into the first via hole and is connected to the first auxiliary electrode;

forming an undercut structure in a region of the protective layer corresponding to the first auxiliary electrode, wherein the undercut structure extends to directly below the second auxiliary electrode and exposes the first auxiliary electrode;

forming a flat layer on the protective layer;

forming an anode electrode on the flat layer;

forming a pixel defining layer on the anode electrode, wherein the pixel defining layer is provided with a first opening connected to the undercut structure;

forming an organic light-emitting layer on the pixel defining layer, wherein the organic light-emitting layer does not completely cover an exposed part of the first auxiliary electrode; and

forming a cathode electrode on the organic light-emitting layer, wherein the cathode electrode extends into the undercut structure and is connected to the first auxiliary electrode;

wherein the array substrate further comprises:

a base substrate;

a light-shielding metal layer disposed directly on the base substrate,

a first electrode plate disposed directly on the base substrate, wherein the light-shielding metal layer and the first electrode plate are disposed in a same layer;

a buffer layer disposed on the light-shielding metal layer and the first electrode plate;

an amorphous oxide semiconductor layer disposed directly on the buffer layer; and

a second electrode plate disposed directly on the buffer layer, wherein the amorphous oxide semiconductor layer and the second electrode plate are disposed in a same layer;

wherein the first electrode plate and the second electrode plate form a capacitor structure;

wherein the undercut structure has a depth into the second auxiliary electrode of 0.1 μm to 1 μm.

13. The method for fabricating the display panel according to claim 12 , wherein the step of forming the undercut structure in the region of the protective layer corresponding to the first auxiliary electrode comprises:

forming a photoresist layer on the protective layer, wherein the photoresist layer is provided with a notch corresponding to an area where the undercut structure is to be formed, and the notch exposes the protective layer;

etching the protective layer to form the undercut structure; and

removing the photoresist layer.

14. The method for fabricating the display panel according to claim 13 , wherein the step of forming the organic light-emitting layer on the pixel defining layer comprises:

shielding a part of the undercut structure directly below the second auxiliary electrode with the second auxiliary electrode in a direction of a first set angle; and

forming the organic light-emitting layer on the pixel defining layer, wherein the organic light-emitting layer extends into a part of the undercut structure that is not shielded by the second auxiliary electrode.

15. The method for fabricating the display panel according to claim 14 , wherein in the step of forming the cathode electrode on the organic light-emitting layer, the cathode electrode extends into the undercut structure and is connected to the exposed part of the first auxiliary electrode.

16. The method for fabricating the display panel according to claim 14 , wherein the step of forming the cathode electrode on the organic light-emitting layer comprises:

forming a continuous cathode electrode on the organic light-emitting layer, wherein the cathode electrode extends into the undercut structure and is connected to the exposed part of the first auxiliary electrode and an exposed part of the second auxiliary electrode.

17. The method for fabricating the display panel according to claim 12 , wherein

the array substrate further comprises a source electrode and a drain electrode disposed on a same layer as the first auxiliary electrode;

the flat layer is provided with a second via hole exposing the source electrode;

the anode electrode extends into the second via hole and is connected to the source electrode;

the pixel defining layer is provided with a second opening that exposes the anode electrode; and

the organic light-emitting layer extends into the second opening.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2020
From: LIN, GAOBO
To: SHENZHEN CHINA STAR OPTOELECTRONICS SEMICONDUCTOR DISPLAY TECHNOLOGY CO., LTD.
Reel/Frame 054374/0199 →
Priority Claims (1)
CN 202010913140.3 · Sep 3, 2020 · national
Continuity (1)
Related Publication 20230189570A1 · Jun 15, 2023