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Encapsulating cover plate, fabrication method thereof, display panel and fabrication method thereof

專利號
US12225752B2
公開日期
2025-02-11
申請人
BOE TECHNOLOGY GROUP CO., LTD.(CN Beijing)
發(fā)明人
Juanjuan You; Li Sun
IPC分類
H10K50/824; H10K59/12; H10K59/122; H10K71/13; H10K71/60; H10K102/00
技術(shù)領(lǐng)域
oled,electrode,auxiliary,substrate,pixel,panel,sub,display,base,second
地域: Beijing

摘要

An encapsulating cover plate, a method for fabricating the same, a display panel and a method for fabricating the same are provided. The encapsulating cover plate includes a first base substrate; a first auxiliary electrode on the first base substrate; and a second auxiliary electrode on a side of the first auxiliary electrode away from the first base substrate, an orthographic projection of the second auxiliary electrode on the first base substrate being within an orthographic projection of the first auxiliary electrode on the first base substrate. A material of the first auxiliary electrode includes an organic conductive polymer, and a material of the second auxiliary electrode includes a conductive metal.

說明書

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18
CROSS REFERENCE TO RELATED APPLICATIONS

This is a National Phase Application filed under 35 U.S.C. 371 as a national stage of PCT/CN2020/092563, filed on May 27, 2020, an application claiming priority to Chinese patent application No. 201910472237.2, filed on May 31, 2019, the contents of which are incorporated herein by reference.

TECHNICAL FIELD

The present disclosure belongs to the field of display technology, and particularly relates to an encapsulating cover plate, a method for fabricating an encapsulating cover plate, a display panel and a method for fabricating a display panel.

BACKGROUND

Organic Light Emitting Diode (OLED) displays have been recognized as the third generation display technology following liquid crystal displays due to their advantages, such as lightness, thinness, active light emission, fast response speed, wide viewing angle, rich colors, high brightness, low power consumption, and high-temperature resistance and low-temperature resistance. OLED displays are increasingly applied to products such as smart phones, large-size TVs and tablet computers, and have a very broad market prospect.

SUMMARY

權(quán)利要求

1
What is claimed is:1. An encapsulating cover plate for an organic light emitting diode (OLED) display panel, comprising:a first base substrate;a first auxiliary electrode on the first base substrate; anda second auxiliary electrode on a side of the first auxiliary electrode away from the first base substrate, an orthographic projection of the second auxiliary electrode on the first base substrate being within an orthographic projection of the first auxiliary electrode on the first base substrate,wherein a material of the first auxiliary electrode comprises an organic conductive polymer, and a material of the second auxiliary electrode comprises a conductive metal, andthe orthographic of the first auxiliary electrode on the first base substrate does not overlap an orthographic projection of a first electrode of an OLED device on the first base substrate.2. The encapsulating cover plate of claim 1, wherein the organic conductive polymer comprises at least one of polyacetylene, polythiophene, polypyrrole, polyaniline, polyphenylene, or polydiacetylene.3. The encapsulating cover plate of claim 1, wherein the material of the second auxiliary electrode comprises a conductive alloy.4. The encapsulating cover plate of claim 1, wherein the material of the second auxiliary electrode comprises at least one of silver, aluminum, copper, gold, or molybdenum.5. An organic light emitting diode (OLED) display panel, comprising the encapsulating cover plate of claim 1 and an OLED array substrate.6. The OLED display panel of claim 5, whereinthe OLED array substrate comprises:a second base substrate; andthe OLED device on the second base substrate; the OLED device comprising the first electrode, a transparent second electrode, and a light emitting layer between the first electrode and the transparent second electrode, wherein the transparent second electrode is on a light emitting surface of the OLED array substrate,wherein the encapsulating cover plate and the OLED array substrate are arranged oppositely, and the second auxiliary electrode is electrically coupled to the transparent second electrode of the OLED device.7. The OLED display panel of claim 6, wherein the OLED device comprises a top-emission type OLED device.8. The OLED display panel of claim 6, wherein an orthographic projection of the first auxiliary electrode on the second base substrate does not overlap an orthographic projection of the light emitting layer on the second base substrate.9. The OLED display panel of claim 6, wherein the OLED array substrate comprises a plurality of OLED devices, and the plurality of OLED devices share a same transparent second electrode.10. A method for fabricating an encapsulating cover plate, comprising:forming a first auxiliary electrode on a first base substrate; a material of the first auxiliary electrode comprising an organic conductive polymer; andforming a second auxiliary electrode on a side of the first auxiliary electrode away from the first base substrate through an electroplating process, a material of the second auxiliary electrode comprising a conductive metal, and an orthographic projection of the second auxiliary electrode on the first base substrate being within an orthographic projection of the first auxiliary electrode on the first base substrate,wherein the orthographic of the first auxiliary electrode on the first base substrate does not overlap an orthographic projection of a first electrode of an OLED device on the first base substrate.11. The method of claim 10, wherein the first auxiliary electrode is formed on the first base substrate through an ink-jet printing process or a transfer printing process.12. The method of claim 10, wherein the material of the second auxiliary electrode comprises a conductive alloy.13. The method of claim 10, wherein the organic conductive polymer comprises at least one of polyacetylene, polythiophene, polypyrrole, polyaniline, polyphenylene, or polydiacetylene.14. The method of claim 10, wherein the material of the second auxiliary electrode comprises at least one of silver, aluminum, copper, gold, or molybdenum.15. A method for fabricating an organic light emitting diode (OLED) display panel, comprising:fabricating an OLED array substrate, the OLED array substrate comprising a second base substrate and an OLED device on the second base substrate; the OLED device comprising a first electrode, a transparent second electrode, and a light emitting layer between the first electrode and the transparent second electrode, wherein the second transparent electrode is on a light emitting surface of the OLED array substrate;fabricating an encapsulating cover plate by using the method of claim 10; andaligning the OLED array substrate and the encapsulating cover plate to form a cell, such that the second auxiliary electrode of the encapsulating cover plate is electrically coupled to the transparent second electrode of the OLED device.16. The method of claim 15, wherein after the OLED array substrate and the encapsulating cover plate are aligned to form the cell, an orthographic projection of the first auxiliary electrode on the second base substrate does not overlap an orthographic projection of the light emitting layer on the second base substrate.17. The encapsulating cover plate of claim 1, wherein the organic conductive polymer comprises polyphenylene vinylene.18. The method of claim 10, wherein the organic conductive polymer comprises polyphenylene vinylene.
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