Abstract:
A method of manufacturing an array substrate includes: forming a first functional layer comprising a plurality of array substrate areas and connection areas between adjacent array substrate areas; forming a plurality of conductive portions within each of the array substrate areas, the plurality of conductive portions extending from a corresponding one of the array substrate areas to a corresponding one of the connection areas and terminals of the plurality of conductive portions being in connection with capacitor lines within the corresponding one of the connection areas such that two capacitor lines between two adjacent array substrate areas face each other and are formed into a first capacitor element; forming a plurality of second functional layers on the first functional layer formed with the plurality of conductive portions and the capacitor lines, for forming a plurality of array substrates; and performing a cutting process at the connection areas between adjacent array substrates and removing the capacitor lines between the adjacent array substrates so as to form a plurality of separate array substrates. The present disclosure further provides an array substrate manufactured by the method.
Abstract:
The disclosure provides an ink-jet ink for color filter and a method for preparing the same, as well as a method for preparing of a color filter. The ink-jet ink for color filter comprising, by weight, 10 to 50 parts of aqueous nano pigment dispersion and 51 to 95 parts of a cold curing component.
Abstract:
The present disclosure provides a pixel unit, a display substrate, a display panel, and a display device. The pixel unit includes a slit electrode having a slit. The pixel unit includes at least two sub-pixels corresponding to different colors, each of the pixels includes n domain areas arranged along a first direction, n is a positive integer greater than or equal to 2, extension directions of the slits of the slit electrodes in any two adjacent domain areas in the n domain areas of the pixel unit are different, an acute angle between an extension direction of the slit in each domain area and a second direction is a predetermined angle, the predetermined angle is greater than or equal to 30° and less than 45°, and the second direction intersects with the first direction.
Abstract:
The present disclosure provides a display substrate, including: a wiring mounting region. The wiring mounting region includes first wires and second wires, each of the first wires intersecting with one or more of the second wires, thereby defining one or more intersectional regions; and a semiconductor pattern between the first wire and the one or more second wires, the semiconductor pattern having at least one cross-sectional width covering at least a portion of at least one of the intersectional regions.
Abstract:
The embodiments of the invention provide a polymerizable oligomer and a photoresist composition including the polymerizable oligomer, wherein the polymerizable oligomer contains a polymerizable double bond and a hydrophilic group.
Abstract:
Embodiments of the present invention provide a preparation method of a patterned film, a display substrate and a display device, avoiding falling off of a film layer occurring in the process of peeling off a photoresist layer. The preparation method of the patterned film comprises: forming a preset film layer on a surface of a preset substrate; covering the preset film layer with an isolation layer; forming a photoresist layer on a surface of the isolation layer and forming a pattern of the isolation layer with a patterning process; then removing the preset film layer which is not covered by the pattern of the isolation layer, peeling off the photoresist layer and removing the remaining, isolation layer to form a pattern of the preset film layer.
Abstract:
Provided is a photosensitive alkali-soluble resin comprising a compound of formula (I), a method of preparing the same, and a color photosensitive resist containing the same, wherein n1, n2, R1, R2 and R3 are defined as herein. The photosensitive alkali-soluble resin is prepared by: copolymerizing ethylene oxide with α-hydroxyalkyl phenyl ketone to obtain the first intermediate product, followed by copolymerizing the first intermediate product with a copolymerization product of glycerin acrylate, styrene, and maleic anhydride to obtain the second intermediate product, and oxidizing the second intermediate product to produce the photosensitive alkali-soluble resin.
Abstract:
The present disclosure provides an array substrate, manufacturing method thereof and a display device. A method of manufacturing an array substrate includes: sequentially forming a common electrode line, a first insulating layer, a pixel electrode, and a second insulating layer, and forming a via that is in communication with the common electrode line. The method further comprises, after forming the via, forming a common electrode that covers the via through a patterning process, wherein the patterning process includes etching a portion of the via covered with the common electrode to form an isolated region. The isolated region includes a region at an inner side of a first edge of the via. The first edge is an edge of the via adjacent to or stacked with the pixel electrode. The via further includes a second edge that is neither adjacent to nor stacked with the pixel electrode.
Abstract:
Disclosed are a color filter substrate and the manufacturing method thereof. The color filter substrate comprises: a substrate (1); a black matrix (3) and a color pixel layer (4, 5, 6) formed on the substrate (1); and a transparent thermally conductive layer (2) disposed between the substrate (1) and the black matrix (3) and between the substrate (1) and the color pixel layer (4, 5, 6).
Abstract:
A manufacturing method and template of color filters belong to the field of liquid crystal display. The manufacturing method comprises: forming a black matrix (2) on a substrate (1), a pixel region being formed around the black matrix (2); forming pixel resin layers (3, 4, 5) on the substrate (1) on which the black matrix is formed; boxing the template with the substrate on which the pixel resin layers are formed, the template being located above the substrate (1), and a plurality of columnar hollow protrusions (13) being arranged at a part of a template body (12), corresponding to the pixel region, of the template; subjecting the boxed substrate to heat treatment, taking off the template so as to form a hole (11) in the pixel resin layer; and forming, through a patterning process, a pattern of the pixel resin layer on the substrate on which the hole (11) is provided. Therefore, the aperture and the opening area can be accurately controlled when providing an opening on the pixel region of the color filter.