WOLED DISPLAY PANEL AND DISPLAY DEVICE
20190013370 ยท 2019-01-10
Inventors
Cpc classification
H10K50/8428
ELECTRICITY
H10K59/38
ELECTRICITY
H10K59/351
ELECTRICITY
H10K59/8723
ELECTRICITY
International classification
Abstract
The present disclosure discloses a white organic light emitting diode (WOLED) display panel, which comprises a thin film transistor (TFT) array substrate and a color filter layer and a light emitting structure layer sequentially disposed on the TFT array substrate, wherein the light emitting structure layer comprises an anode layer, a pixel defining layer, a white organic light emitting layer and a cathode layer that are sequentially disposed, wherein the pixel defining layer comprises pixel opening portions and pixel spacing portions for spacing adjacent two of the pixel opening portions, and wherein a protruding insulating post spacer is disposed on each of the pixel spacing portions, and a protruding bend portion is formed in a part of the white organic light emitting layer corresponding to and covering the post spacer. The present disclosure also discloses a display device comprising the WOLED display panel as above.
Claims
1. A white organic light emitting diode (WOLED) display panel, comprising: a thin film transistor (TFT) array substrate; and a color filter layer and a light emitting structure layer sequentially disposed on the TFT array substrate, wherein the light emitting structure layer comprises an anode layer, a pixel defining layer, a white organic light emitting layer and a cathode layer that are sequentially disposed, wherein the pixel defining layer comprises pixel opening portions and pixel spacing portions for spacing adjacent two of the pixel opening portions, and wherein a protruding insulating post spacer is disposed on each of the pixel spacing portions, and a protruding bend portion is formed in a part of the white organic light emitting layer corresponding to and covering the post spacer.
2. The WOLED display panel of claim 1, wherein the post spacer has a trapezoid-shaped cross-section, and has an angle not less than 60? between a side surface and a bottom surface of the post spacer.
3. The WOLED display panel of claim 1, wherein the post spacer has a rectangle-shaped or an inverted trapezoid-shaped cross-section.
4. The WOLED display panel of claim 1, wherein each of the pixel opening portions has a length H1, and each of the post spacers has a length H2, and wherein H1 ?H2.
5. The WOLED display panel of claim 1, wherein a top of each of the pixel spacing portions has a width D1, and each of the post spacers has a width D2, and wherein
6. The WOLED display panel of claim 1, wherein the white organic light emitting layer comprises a first common layer for transporting holes, a blue emissive layer, a green emissive layer, a red emissive layer and a second common layer for transporting electrons that are sequentially disposed.
7. The WOLED display panel of claim 6, wherein an intermediate layer is further disposed between the blue emissive layer and the green emissive layer, and has a function of transporting electrons and holes.
8. The WOLED display panel of claim 1, wherein a red sub-pixel, a green sub-pixel, a blue sub-pixel and a white sub-pixel are disposed in the light emitting structure layer, wherein each of the pixel opening portions corresponds to one of the sub-pixels, and wherein a red photoresist, a green photoresist, a blue photoresist and a transparent unit are disposed in the color filter layer corresponding to the red sub-pixel, the green sub-pixel, blue sub-pixel and white sub-pixel, respectively.
9. The WOLED display panel of claim 8, wherein the anode layer comprises a plurality of anodes, each of the anodes corresponding to one of the sub-pixels, and wherein the cathode layer is integrally successive to cover all sub-pixels, and all of the sub-pixels commonly use the cathode layer.
10. A display device, comprising: a driving unit; and a white organic light emitting diode (WOLED) display panel supplied with a driving signal from the driving unit to display images, wherein the WOLED display panel comprises: a thin film transistor (TFT) array substrate; and a color filter layer and a light emitting structure layer sequentially disposed on the TFT array substrate, wherein the light emitting structure layer comprises an anode layer, a pixel defining layer, a white organic light emitting layer and a cathode layer that are sequentially disposed, wherein the pixel defining layer comprises pixel opening portions and pixel spacing portions for spacing adjacent two of the pixel opening portions, and wherein a protruding insulating post spacer is disposed on each of the pixel spacing portions, and a protruding bend portion is formed in a part of the white organic light emitting layer corresponding to and covering the post spacer.
11. The display device of claim 10, wherein the post spacer has a trapezoid-shaped cross-section, and has an angle not less than 60? between a side surface and a bottom surface of the post spacer.
12. The display device of claim 10, wherein the post spacer has a rectangle-shaped or an inverted trapezoid-shaped cross-section.
13. The display device of claim 10, wherein each of the pixel opening portions has a length H1, each of the post spacers has a length H2, and wherein H1?H2.
14. The display device of claim 10, wherein a top of each of the pixel spacing portions has a width D1, each of the post spacers has a width D2, and wherein
15. The display device of claim 10, wherein the white organic light emitting layer comprises a first common layer for transporting holes, a blue emissive layer, a green emissive layer, a red emissive layer and a second common layer for transporting electrons that are sequentially disposed.
16. The display device of claim 15, wherein an intermediate layer is further disposed between the blue emissive layer and the green emissive layer, and has a function of transporting electrons and holes.
17. The display device of claim 10, wherein a red sub-pixel, a green sub-pixel, a blue sub-pixel and a white sub-pixel are disposed in the light emitting structure layer, wherein each of the pixel opening portions corresponds to one of the sub-pixels, and wherein a red photoresist, a green photoresist, a blue photoresist and a transparent unit are disposed in the color filter layer corresponding to the red sub-pixel, the green sub-pixel, blue sub-pixel and white sub-pixel, respectively.
18. The display device of claim 17, wherein the anode layer comprises a plurality of anodes, each of the anodes corresponding to one of the sub-pixels, and wherein the cathode layer is integrally successive to cover all sub-pixels, such that the all sub-pixels commonly use the cathode layer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
[0025] In order for the purpose, technical solutions and advantages of the present disclosure to be more apparent, detailed description of exemplary embodiments of the present disclosure will be explained in detail below in conjunction with the accompanied drawings. Examples of the preferred implementations are illustrated in the drawings. The implementations of the present disclosure shown in the drawings and described according to the drawings are only exemplary, and the present disclosure is not limited to the implementations.
[0026] Here, it should be noted that the drawings only shows structures and/or process steps closely related to solutions according to the present disclosure, and other details that have little related to the present disclosure are omitted, in order to avoid obscuring the present disclosure due to unnecessary details.
[0027] The present embodiment firstly provides a white organic light emitting (WOLED) display panel, and as show in
[0028] The light emitting structure layer 3 includes an anode layer 31, a pixel defining layer 32, a white organic light emitting layer 33 and a cathode layer 34 that are sequentially disposed. The pixel defining layer 32 includes pixel opening portions 321 and pixel spacing portions 322 for spacing adjacent two of the pixel opening portions 321. Particularly, a red sub-pixel 3R, a green sub-pixel 3G, a blue sub-pixel 3B and a white sub-pixel 3W are disposed in the light emitting structure layer 3, and each of the pixel opening portions 321 corresponds to one of the red sub-pixel 3R, the green sub-pixel 3G, the blue sub-pixel 3B and the white sub-pixel 3W.
[0029] In the color filter layer 2, a red photoresist 2R is disposed corresponding to the red sub-pixel 3R, a green photoresist 2G is disposed corresponding to the green sub-pixel 3G, a blue photoresist 2B is disposed corresponding to the blue sub-pixel 3B, and a transparent unit 2W is disposed corresponding to the white sub-pixel 3W. In the present embodiment, the color filter layer 2 further includes a flat layer 21 covering the red photoresist 2R, the green photoresist 2G, the blue photoresist 2B and the transparent unit 2W. The flat layer 21 is formed of a transparent organic material, and thus, the flat layer 21 can be completely filled into the transparent unit 2W, without using other transparent materials to fill a position corresponding to the transparent unit 2W.
[0030] As shown in
[0031] In the present embodiment, as shown in
[0032] Referring to
[0033] As shown in
[0034] A length of the PS 35 should be not less than a length of the pixel opening portion 321, and a width of the PS 35 is preferably not less than half a width of the pixel spacing portion 322. In particular, as shown in
preferably, the width D2 is disposed to be equal to the width D1. The width of the PS 35 is longer, the conduction path of the transverse leakage current is longer, and the leakage current is smaller.
[0035] The present embodiment further provides a display device, and as shown in
[0036] As above, the present disclosure provides a WOLED display panel, in which a convex insulating post spacer is disposed between two adjacent pixels, and a convex bent portion is formed in a portion of the organic light emitting layer corresponding to and covering the post spacer, so that the transverse travel path of holes is increased, the leakage current between the two adjacent pixels is reduced, the leakage phenomena is effectively reduced, and the display quality of the display panel is improved.
[0037] It is to be noted that, in this context, relationship terms such as first and second are used only to distinguish an entity or an operation from another entity or operation without necessarily requiring or implying the actual relationship or sequence between the entities or operations. Moreover, the terms such as includes, including, comprise, comprising or any other variant thereof are intended to encompass a non-exclusive inclusion, such that a process, method, article, or device including a series of elements not only includes those elements, but also includes other elements that are not explicitly listed or are inherent elements of such process, method, article, or equipment. In the absence of more restrictions, an element defined by the description of including one of do not preclude the presence of additional elements in the process, method, article, or device that includes the elements.
[0038] The above mentioned is just detailed implements of the present disclosure, and it should be noted that many amendments and modifications can be made in the present disclosure to those skilled in the art without departing from the principle of the present disclosure, and should be regarded as the scope of protection of the present disclosure.