摘要:
A substrate for a surface light emitting device in which a transparent electrode, an organic thin film layer, and a cathode electrode are sequentially stacked, the substrate including: a transparent support substrate; and a highly refractive layer that is disposed between the support substrate and the transparent electrode and comprises at least one layer having a refractive index that is equal to or greater than a refractive index of the support substrate, wherein the highly refractive layer comprises a light diffusion unit that diffuses light incident from the transparent electrode and a planarized surface that contacts the transparent electrode. Accordingly, a Haze value of the highly refractive layer is set to be 5% or less, and a diameter of bubbles existing in the highly refractive layer is set to be 1/10th or less of a thickness of the highly refractive layer.
摘要:
A barrier film for an electronic device, the barrier film including a resin film, and a layer-by-layer stack portion including a first inorganic material layer and a second inorganic material layer which are alternately disposed on the resin film, wherein the first inorganic material layer and the second inorganic material layer are oppositely charged.
摘要:
A barrier film for an electronic device, the barrier film including: a resin film; a layer-by-layer stack portion including a tabular inorganic particle layer and a binder layer which are alternately disposed on the resin film and are oppositely charged; and a filling portion that fills a defect portion of the tabular inorganic particle layer wherein the defect portion is a portion of the tabular inorganic particle layer where a tabular inorganic particle of the tabular inorganic particle layer is not present.
摘要:
The present invention provides an organic electroluminescent display panel that is resistant to deterioration by outgas and to light emission problems attributable to mask contact, and a method for manufacturing this panel. The organic electroluminescent display panel includes a substrate, a first display electrode formed on the main face of the substrate and having one or more pixel light-emitting regions, an organic functional layer that is formed on the first display electrode and includes at least one organic material layer, a mask spacer provided near the organic functional layer, and a second display electrode formed on the organic functional layer. The mask spacer is made of the same material as any one of the organic material layers and has a top face located higher than the position of the second display electrode, when measured from the main face of the substrate.
摘要:
An organic electroluminescence display panel without electric leakage among pixels. An organic electroluminescence display panel comprises a plurality of organic electroluminescence elements, each of the elements comprising first and second display electrodes and at least one of organic function layers including an emission layer comprising an organic compound, the function layers being sandwiched and stacked between the first and second display electrodes, and a substrate supporting the plurality of organic electroluminescence elements; wherein the organic function layers include at least one common layer that is formed commonly for the plurality of organic electroluminescence elements and has electron transport properties, and the common layer has a gap filling part extending among the plurality of organic electroluminescence elements.
摘要:
An etching mask includes a pass-through aperture for exposing only a surface to be etched, a protruding periphery portion that protrudes at the periphery of the pass-through aperture, and a recessed portion enclosed by the protruding periphery portion.
摘要:
An organic electroluminescence (EL) display panel comprising a plurality of EL elements arranged through an insulating film, each of said EL elements including a first display electrode, at least one organic functional layer containing a light emitting layer of organic compound and a second display electrode which are successively stacked on a substrate, wherein said insulating film has an OD value of 0.5 or more in a visible light range.
摘要:
A luminescent display device comprises a resin substrate having one and another surfaces, and a transparent electrode, a metal auxiliary electrode disposed to be conductive to the transparent electrode and a luminescent layer composed of an organic compound so that the transparent electrode, the auxiliary electrode and the luminescent layer are laminated in form of layers on the one surface of the resin substrate. The auxiliary electrode has a total stress of {(inner stress)×(film thickness thereof)} of not more than 1.3×105 dyn/cm.
摘要:
In a luminescent display, when a shortcircuit between the transparent electrode 102 and the metal electrode 104 occurs and a defective pixel such as a pixel which does not luminesce or a luminescence-defective pixel is formed, repairing is performed so as to remove only a part B corresponding to the defective part, in the metal electrode 104 corresponding to the region which corresponds to the defective part, and in which the transparent electrode 102 and the metal electrode 104 intersect with each other. Therefore, a current flow between the metal electrode 104 and the transparent electrode 102 which face each other via an organic layer 103 is allowed by the metal electrode 104 in the remaining part A, thereby enabling the pixel and the subsequently scanned pixels to luminesce. The corresponding part of the metal electrode 104 is removed away by irradiating the part with a laser beam.
摘要:
Disclosed is an organic electroluminescent display apparatus that has small panels each constituted by forming light-emitting sections, each comprising an organic electroluminescent layer, a transparent electrode and a metal electrode, on one major surface of the substrate. The transparent electrode has an extending portion formed to continuously extend from one major surface of the substrate to one side surface. The associated transparent electrodes of adjoining small panels are electrically connected via an anisotropic conductive sheet which has a conductivity only in the thickness direction. This design can narrow the non-light emitting area of each joint of the small panels.