Display panel and manufacturing method therefor, and display device
A display panel includes a pixel defining layer and light-emitting layers. The pixel defining layer includes pixel channels each of which includes first pixel regions, second pixel regions and third pixel regions arranged alternately. An extension direction of the first pixel region intersects with extension directions of the second pixel region and third pixel region. The first pixel regions are configured to bear ink of a printed functional layer material, and the second pixel regions and the third pixel regions are configured to bear ink drained from the first pixel regions. Inclination angles of the second pixel region and the third pixel region are complementary in a first direction. The light-emitting layers are in the pixel channels. Light-emitting layers in adjacent pixel channels have different colors, and light-emitting layers in different pixel regions of one pixel channel have the same color.
1 . A display panel, comprising:
a pixel defining layer on a base substrate, wherein the pixel defining layer comprises a plurality of pixel channels, and each of the plurality of pixel channels comprises first pixel regions, second pixel regions and third pixel regions arranged alternately; a shape of an orthographic projection of each of the first pixel region, the second pixel region and the third pixel region on the base substrate is substantially a parallelogram, an extension direction of the first pixel region intersects with extension directions of the second pixel region and third pixel region; the first pixel regions are configured to bear ink of a printed functional layer material, and the second pixel regions and the third pixel regions are configured to bear ink drained from the first pixel regions; the functional layer material comprises a light-emitting layer material; one first pixel region is disposed between adjacent second pixel region and third pixel region, inclination angles of the second pixel region and the third pixel region are complementary in a first direction, and the first direction is the extension direction of the first pixel region; and
light-emitting layers in the pixel channels, wherein light-emitting layers in adjacent pixel channels have colors different from each other, and light-emitting layers in the first pixel regions of one pixel channel have a same color as light-emitting layers in the second pixel regions and the third pixel regions of the one pixel channel.
2 . The display panel of claim 1 , wherein the first pixel regions are alternately arranged on two extension lines in the first direction in the pixel channel.
3 . The display panel of claim 1 , wherein the second pixel region and the third pixel region communicating with one same first pixel region in the pixel channel are symmetrically arranged with respect to the one same first pixel region; and the second pixel region is disposed in a second direction, and the third pixel region is disposed in a third direction.
4 . The display panel of claim 3 , wherein an angle between the first direction and the second direction is in a range of 150˜170°, or an angle between the first direction and the third direction is in a range of 10˜30°.
5 . The display panel of claim 1 , wherein the first pixel region, the second pixel region, and the third pixel region are approximately same in area, and an error in the areas of the first pixel region and the second pixel region, and an error in the areas of the first pixel region and the third pixel region are less than or equal to 10%.
6 . The display panel of claim 1 , further comprising:
anodes at the first pixel region, the second pixel region, and the third pixel region;
wherein the anodes are located on a side of the pixel defining layer close to the base substrate, and two opposite edges of the anode are covered with the pixel defining layer.
7 . The display panel of claim 1 , further comprising:
drainage structures disposed at bottom surfaces corresponding to junction positions among the first pixel region, the second pixel region, and the third pixel region;
wherein the drainage structures are configured to drain the ink in the first pixel region to the second pixel region or the third pixel region.
8 . The display panel of claim 7 , wherein a material of the drainage structures is a lyophilic material.
9 . The display panel of claim 8 , wherein the second pixel region and the third pixel region are distributed with more lyophilic material than the first pixel region at the bottom surfaces corresponding to the junction positions.
10 . The display panel of claim 7 , further comprising:
flow guiding structures disposed on side walls of the pixel defining layer corresponding to the junction positions;
wherein the flow guiding structures are configured to prevent the ink from overflowing into other pixel channels in a process that the ink flows from the first pixel region to the second pixel region or the third pixel region.
11 . The display panel of claim 10 , wherein a material of the flow guiding structures is a lyophobic material.
12 . The display panel of claim 10 , wherein the flow guiding structures are 0.8˜1.2 um in height.
13 . The display panel of claim 1 , wherein centers of the first pixel regions are alternately arranged on two extension lines in the first direction in the pixel channel.
14 . A display device, comprising the display panel of claim 1 .
15 . A manufacturing method for the display panel of claim 1 , comprising: forming the patterned pixel defining layer on the base substrate, wherein the pixel defining layer comprises the plurality of pixel channels, and each pixel channel comprises the first pixel regions, the second pixel regions and the third pixel regions arranged alternately; the extension direction of the first pixel region intersects with extension directions of the second pixel region and the third pixel region; one first pixel region is disposed between adjacent second pixel region and third pixel region, and inclination angles of the second pixel region and the third pixel region are complementary in the first direction; and printing a light-emitting material solution in the first pixel regions of the pixel channel in an ink-jet printing manner, and draining the light-emitting material solution from the first pixel regions to the second pixel regions and the third pixel regions to form the light-emitting layers.
16 . The method of claim 15 , wherein said printing the light-emitting material solution in the first pixel regions of the pixel channel comprises:
printing the light-emitting material solution in the first pixel regions on one extension line in the first direction in one pixel channel; and then printing the light-emitting material solution in the first pixel regions on another extension line in the first direction in the one pixel channel.