OLED DISPLAY PANEL AND DISPLAY DEVICE
20230096411 ยท 2023-03-30
Inventors
Cpc classification
H10K59/38
ELECTRICITY
H10K59/8791
ELECTRICITY
H10K50/865
ELECTRICITY
International classification
H10K50/86
ELECTRICITY
Abstract
Disclosed are an OLED display panel and a display device. The OLED display panel includes a substrate, a plurality of light emitting components arranged in an array, and a light resistance structure between the light emitting components. The light resistance structure prevents the reflected light of the emergent light from the light emitting components, from emitting out from one side of the substrate between the light emitting components.
Claims
1. An Organic Light Emitting Diode, OLED, display panel, comprising: a substrate; a plurality of light emitting components arranged in an array on the substrate; and light resistance structures between the plurality of light emitting components on the substrate; wherein respective one of the plurality of light resistance structures prevents a reflected light of an emergent light from adjacent light emitting components, from emitting out from a side of the substrate between the adjacent light emitting components.
2. The OLED display panel according to claim 1, wherein each of the plurality of light emitting components comprises a color film and a light emitting structure disposed in that order on the substrate; wherein the light resistance structure comprises a color resist between color films of the adjacent light emitting components, and the color resist absorbs emergent light from the adjacent light emitting components.
3. The OLED display panel according to claim 2, wherein the color resist is different from the color films of the adjacent light emitting components in color.
4. The OLED display panel according to claim 2, wherein in a case that two adjacent light emitting components are respectively a first light emitting component and a second light emitting component: the light resistance structure comprises a first color resist and a second color resist between the first light emitting component and the second light emitting component; wherein the first color resist and a color film of the first light emitting component have a same color and are prepared in a same layer; and the second color resist and a color film of the second light emitting component have a same color and are prepared in a same layer.
5. The OLED display panel according to claim 4, wherein the first color resist and the second color resist are disposed in stack.
6. The OLED display panel according to claim 4, wherein the first color resist is between the second color resist and the color film of the second light emitting component; and the second color resist is between the first color resist and the color film of the first light emitting component.
7. The OLED display panel according to claim 6, wherein each of the light emitting components further comprises a source-drain electrode layer between the substrate and the color film, wherein the source-drain electrode layer comprises a data line; wherein data lines of the first light emitting component and the second light emitting component are parallel and adjacent to each other; and a boundary line between the first color resist and the second color resist is spaced from a data line of the first light emitting component and a data line of the second light emitting component by a same distance.
8. The OLED display panel according to claim 1, wherein each of the plurality of light emitting components comprises a source-drain electrode layer and a light emitting structure disposed in that order on the substrate; wherein the light resistance structure comprises a black light absorbing structure between source-drain electrode layers of the adjacent light emitting components.
9. The OLED display panel according to claim 8, wherein the source-drain electrode layer comprises a data line; and in a case that two adjacent light emitting components are respectively a third light emitting component and a fourth light emitting component: data lines of the third light emitting component and the fourth light emitting component are parallel and adjacent to each other; and the black light absorbing structure comprises a light absorbing element between a data line of the third light emitting component and a data line of the fourth light emitting component.
10. The OLED display panel according to claim 1, wherein the light resistance structure comprises a pixel defining structure between the adjacent light emitting components; wherein the pixel defining structure is made of a light absorbing material.
11. The OLED display panel according to claim 1, wherein each of the plurality of light emitting components comprises an anode, a light emitting layer, and a cathode disposed in that order on the substrate; wherein cathodes of the plurality of light emitting components constitute a common and integral electrode layer; and the light resistance structure comprises a first opening in the integral electrode layer; wherein a projection of the first opening on the substrate is located in a projection of a part between the adjacent light emitting components on the substrate.
12. The OLED display panel according to claim 11, further comprising; a pixel defining structure between the adjacent light emitting components; wherein the light resistance structure comprises a second opening in the pixel defining structure; wherein a projection of the second opening on the substrate covers a projection of the first opening on the substrate.
13. The OLED display panel according to claim 11, wherein each of the light emitting components further comprises a source-drain electrode layer between the substrate and the anode, wherein the source-drain electrode layer comprises a data line; wherein in a case that two adjacent light emitting components are respectively a fifth light emitting component and a sixth light emitting component: data lines of the fifth light emitting component and the sixth light emitting component are parallel and adjacent to each other; and the first opening is formed between the fifth light emitting component and the sixth light emitting component; and a width of the first opening is greater than a distance from a data line of the fifth light emitting component to a data line of the sixth light emitting component.
14. A display device, comprising an OLED display panel, wherein the OLED display comprises: a substrate; a plurality of light emitting components arranged in an array on the substrate; and light resistance structures between the plurality of light emitting components on the substrate; wherein respective one of the plurality of light resistance structures prevents a reflected light of an emergent light from adjacent light emitting components, from emitting out from a side of the substrate between the adjacent light emitting components.
15. The display device according to claim 14, wherein each of the plurality of light emitting components comprises a color film and a light emitting structure disposed in that order on the substrate; wherein the light resistance structure comprises a color resist between color films of the adjacent light emitting components, and the color resist absorbs emergent light from the adjacent light emitting components.
16. The display device according to claim 14, wherein each of the plurality of light emitting components comprises a source-drain electrode layer and a light emitting structure disposed in that order on the substrate; wherein the light resistance structure comprises a black light absorbing structure between source-drain electrode layers of the adjacent light emitting components.
17. The display device according to claim 14, wherein the light resistance structure comprises a pixel defining structure between the adjacent light emitting components; wherein the pixel defining structure is made of a light absorbing material.
18. The display device according to claim 14, wherein each of the plurality of light emitting components comprises an anode, a light emitting layer, and a cathode disposed in that order on the substrate; wherein cathodes of the plurality of light emitting components constitute a common and integral electrode layer; and the light resistance structure comprises a first opening in the integral electrode layer; wherein a projection of the first opening on the substrate is located in a projection of a part between the adjacent light emitting components on the substrate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] The technical solutions in the embodiments of the present disclosure will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only a part of the embodiments of the present disclosure, but not all the embodiments. On the basis of the embodiments of the present disclosure, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the protection scope of the present disclosure.
[0027] As shown in
[0028] Based on the above OLED display panel, one side of the substrate 1 serves as a display light emitting side, the light resistance structure is arranged between the light emitting areas 2, and can prevent, reflected light of the emergent light from the light emitting areas 2, from emitting out from the one side of the substrate 1 between the light emitting areas 2. Therefore, light leakage of the OLED display panel can be avoided, and a display effect of the OLED display panel is improved.
[0029] Optionally, in a specific embodiment provided by the present disclosure, as shown in
[0030] In the related art, as shown in
[0031] Optionally, in a specific embodiment provided by the present disclosure, as shown in
[0032] Exemplarily, in a specific embodiment provided by the present disclosure, the color resist is different from the color films of the adjacent light emitting areas in color. Emergent light from the light emitting areas 2 is reflected by the source-drain electrode layer to a position between the adjacent light emitting areas 2, then runs into the color resist 41 and is absorbed by the color resist 41, so that the phenomenon of light leakage can be avoided.
[0033] Exemplarily, in a specific embodiment provided by the present disclosure, if two adjacent light emitting areas 2 are respectively referred as a first light emitting area 21 and a second light emitting area 22, the light resistance structure may include a first color resist 411 and a second color resist 412 between the first light emitting area 21 and the second light emitting area 22. The first color resist 411 and a color film 31 of the first light emitting area 21 have a same color and are prepared in a same layer, and the second color resist 412 and a color film 31 of the second light emitting area 22 have a same color and are prepared in a same layer.
[0034] Specifically, the first color resist 411 and the color film 31 of the first light emitting area 21 have a same color, and the second color resist 412 and the color film 31 of the second light emitting area 22 have a same color. Further, emergent light from the first light emitting area 21 is absorbed by the second color resist 412, and emergent light from the second light emitting area 22 is absorbed by the first color resist 411. Therefore, emergent lights from the adjacent first light emitting area 21 and second light emitting area 22 are absorbed in the area between the first light emitting area 21 and the second light emitting area 22 (dotted lines with arrows in
[0035] Optionally, in a specific embodiment provided by the present disclosure, as shown in
[0036] Optionally, in a specific embodiment provided by the present disclosure, as shown in
[0037] Specifically, in a specific embodiment provided by the present disclosure, the first color resist 411 and the second color resist 412 may be substantially same in size.
[0038] Exemplarily, in a specific embodiment provided by the present disclosure, as shown in
[0039] Specifically, in a specific embodiment provided by the present disclosure, the OLED display panel of the present disclosure adopting an RGBW pixel arrangement mode is taken as an example, as shown in
[0040] Optionally, in a specific embodiment provided in the present disclosure, the light resistance structure may include a black light absorbing structure between the source-drain electrode layers of the adjacent light emitting areas 2. Specifically, when emergent light from the light emitting areas is reflected toward the substrate between the adjacent light emitting areas, the emergent light runs into the black light absorbing structure and is absorbed, so that the phenomenon of light leakage can be avoided.
[0041] Exemplarily, in a specific embodiment provided by the present disclosure, as shown in
[0042] Exemplarily, in a specific embodiment provided by the present disclosure, the OLED display panel of the present disclosure adopting an RGBW pixel arrangement mode is taken as an example, as shown in
[0043] Optionally, in a specific embodiment provided by the present disclosure, as shown in
[0044] Exemplarily, in a specific embodiment provided by the present disclosure, the OLED display panel of the present disclosure adopting an RGBW pixel arrangement mode is taken as an example, as shown in
[0045] Optionally, in a specific embodiment provided by the present disclosure, as shown in
[0046] Exemplarily, in a specific embodiment provided by the present disclosure, as shown in
[0047] Exemplarily, in a specific embodiment provided by the present disclosure, each light emitting area 2 includes a source-drain electrode layer between the substrate 1 and the anode 321, and the source-drain electrode layer includes a data line 33. As shown in
[0048] Exemplarily, in a specific embodiment provided by the present disclosure, the OLED display panel of the present disclosure adopting an RGBW pixel arrangement mode is taken as an example, as shown in
[0049] Specifically, the OLED display panel of the present disclosure takes one side of the substrate as a display light emitting side and is a bottom emitting OLED. Exemplarily, the OLED display panel can be either in an RGBW pixel arrangement mode or an RGB pixel arrangement mode. Moreover, the color display of the OLED display panel can be implemented by either a white light OLED+color film, or a monochrome OLED light emitting (red OLED+green OLED+blue OLED), which is not limited in the present disclosure.
[0050] In addition, the light resistance structure in the embodiments provided by the present disclosure may include one or more of the color resist 41 in
[0051] On the basis of the same inventive concept, an embodiment of the present disclosure further provides a display device, the display device including any one of the above OLED display panels. The display device can be applied to any product or component with a display function, such as a mobile phone, a tablet personal computer, a television, a display, a notebook computer, a digital photo frame and a navigator. Since the principle of the display device for solving the problem is similar to that of the above display panel, the implementation of the display device can refer to the implementation of the above display panel, and repeated descriptions are omitted.
[0052] Obviously, those skilled in the art can make various modifications and variations to the embodiments of the present disclosure without departing from the spirit and scope of the present disclosure. In this way, if these modifications and variations of the present disclosure fall within the scope of the claims of the present disclosure and their equivalent art, the present disclosure also intends to include these modifications and variations.