Organic electroluminescent display panel and display apparatus
10205121 ยท 2019-02-12
Assignee
Inventors
- Young Suk Song (Beijing, CN)
- Seong Yeol Yoo (Beijing, CN)
- Seung Jin Choi (Beijing, CN)
- Hee Cheol Kim (Beijing, CN)
Cpc classification
H10K59/38
ELECTRICITY
H10K59/1315
ELECTRICITY
International classification
Abstract
The present invention discloses an organic electroluminescent display panel, comprising: a base substrate; a top-emitting type organic electroluminescent structure located on the base substrate, the organic electroluminescent structure comprising an anode, a light emitting layer and a cathode arranged in this order from the base substrate; and a packaging film covering the organic electroluminescent structure; the organic electroluminescent display panel further comprises a secondary electrode provided on the packaging film and electrically connected with the cathode through a via hole penetrating through the packaging film. Since the secondary electrode is additionally provided on the packaging film and is electrically connected with the cathode through the via hole penetrating through the packaging film, the secondary electrode electrically connected with the cathode can increase an equivalent thickness of the cathode and thus reduce the resistance of the cathode, which can avoid the problem of large voltage drop due to large resistance of the cathode when a thinner metal is used as the cathode, thereby can avoid damage of the organic electroluminescent display panel due to the larger voltage drop.
Claims
1. An organic electroluminescent display panel, comprising: a base substrate; a top-emitting type organic electroluminescent structure disposed on the base substrate, the organic electroluminescent structure comprising an anode, a light emitting layer and a cathode arranged in this order from the base substrate; and a packaging film covering the organic electroluminescent structure; wherein, the organic electroluminescent display panel further comprises a secondary electrode provided on the packaging film and electrically connected with the cathode through a via hole penetrating through the packaging film; wherein the secondary electrode is a substantially continuous layer structure and covers continuously both in the via hole and on the entire packaging film, and wherein the organic electroluminescent display panel further comprises a second substrate located above the secondary electrode.
2. The organic electroluminescent display panel according to claim 1, further comprising a packing layer provided on the packaging film, the secondary electrode being provided on the packing layer; wherein the secondary electrode is electrically connected with the cathode through a via hole penetrating through the packing layer and the packaging film.
3. The organic electroluminescent display panel according to claim 2, further comprising a pixel defining layer located between the base substrate and the cathode and defining respective pixel regions of the display panel; an orthographic projection of the via hole penetrating through the packing layer and the packaging film, which is projected in a direction perpendicular to the base substrate, falls within a region where the pixel defining layer is located.
4. The organic electroluminescent display panel according to claim 3, wherein the pixel defining layer is located between the anode and the light emitting layer, or between the cathode and the light emitting layer.
5. The organic electroluminescent display panel according to claim 4, wherein when the light emitting layer is located over the pixel defining layer, a pattern of the light emitting layer has a hollowed-out region at a position corresponding to the via hole penetrating through the packing layer and the packaging film.
6. The organic electroluminescent display panel according to claim 5, wherein the packing layer is a color filter layer including filters of at least three different colors.
7. The organic electroluminescent display panel according to claim 4, wherein the packing layer is a color filter layer including filters of at least three different colors.
8. The organic electroluminescent display panel according to claim 3, wherein the packing layer is a color filter layer including filters of at least three different colors.
9. The organic electroluminescent display panel according to claim 2, wherein a surface of the packing layer contacting the secondary electrode comprises a convex-concave structure consisting of a plurality of convexes and concaves arranged in an array.
10. The organic electroluminescent display panel according to claim 2, wherein the packing layer is a color filter layer including filters of at least three different colors.
11. The organic electroluminescent display panel according to claim 10, wherein a surface of the color filter layer contacting the secondary electrode comprises a convex-concave structure consisting of a plurality of convexes and concaves arranged in an array.
12. The organic electroluminescent display panel according to claim 11, wherein the convex-concave structure consists of a plurality of spherical segments protruding towards the secondary electrode.
13. The organic electroluminescent display panel according to claim 12, wherein the respective spherical segments have the same depth and bottom surfaces of the respective the spherical segments have the same radius.
14. The organic electroluminescent display panel according to claim 13, wherein a ratio of the depth of the spherical segment to the radius of the bottom surface of the spherical segment is 0.026?0.268: 1.
15. The organic electroluminescent display panel according to claim 2, wherein the cathode is formed through a vapor deposition process.
16. The organic electroluminescent display panel according to claim 2, wherein the secondary electrode is formed through a magnetron sputtering process.
17. The organic electroluminescent display panel according to claim 2, wherein the secondary electrode and the cathode are made of the same material.
18. The organic electroluminescent display panel according to claim 2, wherein the packing layer is made of organic resin material.
19. A display apparatus, wherein comprising the organic electroluminescent display panel according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS OF THE INVENTION
(5) Specific embodiments of the organic electroluminescent display panel and the display apparatus according to the present invention will be described hereinafter in detail in conjunction with the attached drawings.
(6) Shapes and thicknesses of respective film layers shown in the drawings are not scaled to the real proportion, and positional relationships of the respective film layers may be varied and some film layers may be omitted. Thus, the drawings are intended to only illustrate exemplary embodiments of the present invention, but not to limit the present invention.
(7)
(8) In the organic electroluminescent display panel provided by the present invention, because the secondary electrode 8 is additionally provided on the packaging film 3 and is electrically connected with the cathode 6 through the via hole A penetrating through the packaging film 3, the secondary electrode 8 electrically connected with the cathode 6 can increase an equivalent thickness of the cathode 6 and thus reduce the resistance of the cathode 6, which can avoid the problem of larger voltage drop due to the larger resistance of the cathode 6 when a thinner metal is used as the cathode 6, thereby can avoid damage of the organic electroluminescent display panel due to the larger voltage drop.
(9) As shown in
(10)
(11) With the configuration of the above embodiment, the packing layer 7, the packaging film 3 and the cathode 6 are arranged between the secondary electrode 8 and the light emitting layer 5, the light emitting layer 5 will not be damaged even if the secondary electrode 8 is manufactured by using transparent conductive oxides, for example, indium tin oxide (ITO) or the like, through a magnetron sputtering process; meanwhile, the ITO film has a good light transmittance, a thicker ITO film can be made to ensure that the secondary electrode 8 has a smaller resistance, and thus to ensure that the cathode 6 electrically connected with the secondary electrode 8 has a smaller resistance, thereby avoiding the problem of larger voltage drop due to the larger resistance of the cathode 6, thereby avoiding damage of the display panel due to the larger voltage drop.
(12) According to one embodiment, in order to avoid light mixing among respective pixel regions of the display panel, the organic electroluminescent display panel may also, as shown in
(13) Oxygen or water from external environment may pass through the via hole A penetrating through the packing layer 7 and the packaging film 3 and pollute the light emitting layer 5 in the respective pixel regions, thereby affecting normal display of the display panel. In order to avoid occurrence of such a problem, as shown in
(14) The via holes A penetrating through the packing layer 7 and the packaging film 3 may be provided directly above all portions of the pixel defining layer 9, or directly above some portions of the pixel defining layer 9, which is not limited herein.
(15) Specifically, as shown in
(16) According to one embodiment, when the pixel defining layer 9 is located between the anode 4 and the light emitting layer 5, that is, the light emitting layer 5 is located over the pixel defining layer 9, as shown in
(17) In the existing organic electroluminescent display device with the configuration shown in
(18) Specifically, as shown in
(19) Of course, the second substrate may be provided above the organic electroluminescent display device shown in
(20) According to one embodiment of the present invention, as shown in
(21) Specifically, as shown in
(22) Preferably, in the organic electroluminescent display panel according to one embodiment of the present invention, shapes of respective spherical segments may be formed to be the same. As shown in
(23) Further, as shown in
(24) Of course, even if the packing layer 7 is not used as a color filter layer, a surface of the packing layer 7 contacting the secondary electrode 8, may be provided thereon with a convex-concave structure consisting of a plurality of convexes and concaves arranged in an array, as described above, so as to enhance the display brightness of the display panel.
(25) Further, as shown in
(26) Specific embodiment of a method for manufacturing the above organic electroluminescent display panel according to the present invention will be described hereafter in detail.
(27) Taking the organic electroluminescent display panel shown in
(28) 1. forming a pattern of the thin film transistor 11 on the base substrate 1, as shown in
(29) 2. forming an insulating layer on the base substrate 1 formed with the pattern of the thin film transistor 11 thereon, and forming a via hole in the insulating layer above a drain of the thin film transistor 11, as shown in
(30) 3. forming a pattern of the anode 4 on the insulating layer formed with the via hole therein, as shown in
(31) 4. forming a pattern of the pixel defining layer 9 on the base substrate 1 formed with the pattern of the anode 4 thereon, as shown in
(32) 5. forming a pattern of the light emitting layer 5 on the base substrate 1 formed with the pattern of the pixel defining layer 9 thereon, as shown in
(33) 6. forming the cathode 6 on the base substrate 1 formed with the pattern of the light emitting layer 5 thereon, as shown in
(34) 7. forming the packaging film 3 on the cathode 6, as shown in
(35) 8. forming a pattern of the color filter layer on the packaging film 3, as shown in
(36) 9. performing an embossing process on the pattern of the color filter layer so as to form a convex-concave structure consisting of a plurality of convexes and concaves in an array, as shown in
(37) 10. etching portions of the packaging film 3 which are not covered by the color filter layer so as to form the via hole A penetrating through the color filter layer and the packaging film 3, as shown in
(38) 11. forming, by using a magnetron sputtering process, a layer of ITO film, as the secondary electrode 8, on the base substrate 1 with the via hole A penetrating through the color filter layer and the packaging film 3. The secondary electrode 8 is electrically connected with the cathode 6 via the via hole, as shown in
(39) On basis of the same inventive concept, embodiments of the present invention also provide a display apparatus, comprising the above organic electroluminescent display panel according to the above embodiments. The display apparatus may be any product or part having a display function, such as a mobile phone, a tablet computer, a TV, a display, a laptop, a digital photo frame, a navigator, or the like.
(40) With the organic electroluminescent display panel and display apparatus provided according to embodiments of the present invention, because the secondary electrode is additionally provided on the packaging film and is electrically connected with the cathode through the via hole penetrating through the packaging film, the secondary electrode electrically connected with the cathode can increase an equivalent thickness of the cathode and thus reduce the resistance of the cathode, which can avoid the problem of larger voltage drop due to the larger resistance of the cathode when a thinner metal is used as the cathode, thereby can avoid damage of the organic electroluminescent display panel and thus the display apparatus due to the larger voltage drop.
(41) It is apparent that the person skilled in the art may make various changes and modifications to these embodiments without departing from the principles and spirit of the disclosure, and thus, if these changes and modifications fall within the scope of claims and equivalent thereof of the present invention, the present invention is also intended to include these changes and modifications therein.