H10K71/18

Light to heat conversion layer and method for manufacturing the same, and donor sheet using the same

A light to heat conversion layer which has visible light permeability, excellent near infrared absorption characteristics, and which can improve the transfer accuracy of an organic electroluminescent element using laser irradiation; and a donor sheet using the light to heat conversion layer. The light to heat conversion layer contains near infrared absorption particles and a binder component. The near infrared absorption particles are composite tungsten oxide microparticles wherein if the value for the XRD peak intensity of the face of a silicon powder standard sample (manufactured by NIST, 640c) is defined as 1, the value for the ratio of XRD peak top intensity is at least 0.13, and the light transmissivity is at least 45%.

Microstructures array and method of manufacturing the same and micro light emitting diode and method of manufacturing the same and display device

Disclosed are a method of manufacturing a microstructure array that includes preparing a mold having a concave micro pattern array in which a plurality of concave micro patterns are arranged, preparing a perovskite precursor solution including a perovskite precursor and a hydrophilic polymer, coating the perovskite precursor solution on a substrate, disposing the mold on the perovskite precursor solution to confine the perovskite precursor solution in the plurality of concave micro patterns, obtaining a composite of perovskite nanocrystals and the hydrophilic polymer from the perovskite precursor solution in the plurality of concave micro patterns, and, and removing the mold to form a microstructure array in which a plurality of microstructures including a composite of the perovskite nanocrystals and the hydrophilic polymer are arranged, a microstructure array, a micro light emitting diode including the same, and a manufacturing method thereof, and a display device.

HEATER FOR THERMAL EVAPORATOR
20220399502 · 2022-12-15 ·

A heater for an evaporator includes a heating wire and a support, and the heating wire includes a tunnel part that surrounds an outer surface of a container in which an organic material is accommodated and is coiled in a cylindrical shape, a flange part that is connected to an upper end of the tunnel part and has a spiral structure in which a radius increases in a plane direction, a first straight part extending downward from a lower end of the tunnel part, and a second straight part extending downward from a distal end of the flange part, and the support includes a ring part that supports a lower surface of the flange part, and a plurality of bars extending downward form the ring part.

Method of manufacturing display device including a formation process of a conductive film and laser curing the conductive film and manufacturing device for display device

A method of manufacturing a display device includes: providing a first substrate, a second substrate, and a plurality of connection lines, wherein the first substrate has a base substrate, wherein the second substrate faces the first substrate, and wherein the plurality of connection lines are disposed between the base substrate and the second substrate; grinding a side surface of the base substrate, a side surface of the second substrate, and side surfaces of the plurality of connection lines; and simultaneously transferring a conductive film and laser-curing the conductive film, wherein the conductive film is transferred to the ground side surface of the base substrate, the ground side surface of the second substrate, and the ground side surfaces of the plurality of connection lines.

APPARATUS FOR MANUFACTURING DISPLAY DEVICE

An apparatus for manufacturing a display device includes: a support to mount a display substrate having a pixel area; a multi-layered film disposed above the display substrate and including a light-transmissive base layer and a source layer disposed on the base layer facing the pixel area and including an organic material; and a laser device spaced apart from the multi-layered film to radiate a laser beam toward the multi-layered film. The source layer is capable of absorbing the laser beam.

Display substrate and method for manufacturing the same, and display apparatus

A method for manufacturing a display substrate includes: providing a base, the base having a non-display area that includes a binding area; forming a light-emitting functional layer and an encapsulating layer successively on a side of the base, an orthographic projection of the encapsulating layer on the base not overlapping with the binding area; and forming a touch structure on a surface of encapsulating layer away from the base, the touch structure including a first part that is in contact with the encapsulating layer, and a material of the first part including a conductive material. Forming the first part includes: forming the first part by a nanoimprint process.

Organic electroluminescent device

The present invention relates to organic electroluminescent devices, the emitting layer thereof containing a blend of a luminescent material having a narrow singlet-triplet gap and a fluorescent emission material having high steric shielding.

Compound, light-emitting lifetime lengthening agent, use of n-type compound, film and light-emitting device

A light-emitting device having a light-emitting layer containing a delayed fluorescence emitter and an n-type compound has an extended lifetime and high performance. A compound having a triazine ring substituted by a spiro aromatic group can be used as the n-type compound.

APPARATUS AND METHOD TO DELIVER ORGANIC MATERIAL VIA ORGANIC VAPOR JET PRINTING (OVJP)
20220333230 · 2022-10-20 ·

Embodiments of the disclosed subject matter provide an apparatus having a device with a micronozzle array disposed on a micro-fabricated fluidic die. The device may include a first gas distribution plate and a second opposing plate, where the micro-fabricated fluidic die is disposed between the first gas distribution plate and the second opposing plate, wherein the first gas distribution plate is irreversibly joined to the micronozzle array with a seal that is gas-tight, and where the first gas distribution plate includes a plurality of sealed flow paths. A manifold may be reversibly joined to the first gas distribution plate, where the micro-fabricated fluidic die and the first gas distribution plate and the second opposing plate are disposed between the manifold. A thermally conductive plate may have at least one window that provides a clearance fit for the device across a range of motion relative to the thermally conductive plate.

PRODUCTION METHOD FOR PATTERNED ORGANIC FILM, PRODUCTION APPARATUS FOR PATTERNED ORGANIC FILM, ORGANIC SEMICONDUCTOR DEVICE PRODUCED BY SAME, AND INTEGRATED CIRCUIT INCLUDING ORGANIC SEMICONDUCTOR DEVICE

A method for producing a patterned organic film includes: forming a hydrophobic organic film on a hydrophilic and non-water-soluble first substrate using a coating method, pressing the organic film formed on the first substrate against a convex portion of a stamp having the convex portion and a concave portion, transferring the organic film to the convex portion by applying water or an aqueous solution to an interface between the first substrate and the organic film, and pressing the organic film transferred to the convex portion against a second substrate to transfer the organic film to the second substrate to obtain a patterned organic film, wherein at least one of the organic film and the second substrate is an organic semiconductor.