摘要:
The present application provides a display substrate, a manufacturing method thereof, and a display apparatus. The display substrate of the present invention includes a base substrate, a display unit provided on the base substrate, a color filter layer provided on the display unit, a planarization layer provided on a surface of the color filter layer distal to the display unit, and a plurality of first electrodes and a plurality of second electrodes provided in the planarization layer. The planarization layer includes a first planarization layer and a second planarization layer, the plurality of first electrode are embedded in the first planarization layer, and the plurality of second electrodes are embedded in the second planarization layer.
摘要:
A display panel, a method for fabricating the same and a display device are disclosed. The display panel includes a top emission AMOLED display sub-panel, a normally-white mode reflective display sub-panel provided on the top emission AMOLED display sub-panel, and a switching element configured to turn on the top emission AMOLED display sub-panel and turn off the normally-white mode reflective display sub-panel according to a received first instruction, and turn on the normally-white mode reflective display sub-panel and turn off the top emission AMOLED display sub-panel according to a received second instruction.
摘要:
Disclosed are an organic thin film transistor and a method for preparing the same, an array substrate and a display device. An organic semiconductor layer of the organic thin film transistor is formed on an anisotropic insulating layer, this guarantees that the organic semiconductor layer has a crystallization direction with a high degree of order and the organic semiconductor layer has a specific alignment, thus carrier mobility can be improved, so that the performance of the organic thin film transistor can be upgraded. Moreover, the process of preparing the insulating layer has advantages of simple process, large area and low cost, etc., and the thickness of the anisotropic insulating layer manufactured is small; since there exists no mechanical friction, there exists no badness caused by particles generated by friction.
摘要:
According to the present disclosure, there is provided a package structure for a flexible organic light emitting diode (OLED) device, which may include: a flexible substrate, arranged to support the OLED device; a packaging layer, provided on the flexible substrate; the OLED device, provided on the packaging layer; and a waterproof and oxygenproof transparent thin film, covering the OLED device.
摘要:
The present disclosure provides a wavelength converting unit-containing substrate, wherein an additional bank is provided on a bank between adjacent sub-pixel regions for different colors. Further, an auxiliary bank may be provided between the additional bank and the bank. The present disclosure also provides a method for manufacturing the wavelength converting unit-containing substrate and a display panel comprising the wavelength converting unit-containing substrate.
摘要:
The present application discloses a display panel, and a manufacturing method thereof, and a display device, which belong to the field of display technologies. The display panel includes a substrate, and a pixel defining layer and a light-emitting device which are disposed on the substrate. In the light-emitting device, a central region of the light-emitting layer covers a first electrode, and a peripheral region of the light-emitting layer is staggered from the first electrode.
摘要:
A display panel having a base substrate, a light emitting layer on a side of the base substrate, and a wavelength converting layer on a side of light emitting layer away from the base substrate is provided.The light emitting layer includes light emitting units and a first pixel defining layer defining the plurality of light emitting units, the wavelength converting layer includes wavelength converting units and a second pixel defining layer defining the wavelength converting units, each of the of wavelength converting units converts a wavelength of a light emitted by at least one of the light emitting units, wherein in a direction perpendicular to the base substrate, the second pixel defining layer has a thickness twice or more that of the first pixel defining layer. A method for manufacturing the display panel and a display device are also provided.
摘要:
A counter substrate is provided. The counter substrate includes a bank layer on a base substrate and defining a plurality of bank apertures; a quantum dots material layer on the base substrate, the quantum dots material layer including a plurality of quantum dots blocks respectively in at least some of the plurality of bank apertures; and a support layer on a side of the quantum dots material layer and the bank layer away from the base substrate. The support layer includes one or more support portions, orthographic projections of which on the base substrate adjacent to a periphery of an orthographic projection of a respective one of the plurality of bank apertures on the base substrate. An orthographic projection of the bank layer on the base substrate at least partially overlaps with an orthographic projection of the support layer on the base substrate.
摘要:
The present application discloses a display panel, and a manufacturing method thereof, and a display device, which belong to the field of display technologies. The display panel includes a substrate, and a pixel defining layer and a light-emitting device which are disposed on the substrate. In the light-emitting device, a central region of the light-emitting layer covers a first electrode, and a peripheral region of the light-emitting layer is staggered from the first electrode.
摘要:
The present disclosure relates to a display device, an electronic device and a device mounting member. The display device includes: a first display module having a first backplane; a second display module having a second backplane located on an opposite side of the first backplane; a first heat sink located between the first backplane and the second backplane; and a second heat sink connected to the first heat sink in thermal conduction.