Optical laminated body and organic electroluminescence display device using same
Abstract
There is provided an optical laminate capable of being suitably applied even to an organic EL display apparatus that is extremely thin and is bendable or foldable. An optical laminate according to an embodiment of the present invention is used for an organic electroluminescence display apparatus. The optical laminate includes in this order: a surface protective layer; a polarizer; and an optical compensation layer. The surface protective layer is flexible, has a function of substituting for a cover glass for an organic electroluminescence display apparatus, and functions as a protective layer for the polarizer.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An optical laminate to be used for an organic electroluminescence display apparatus, comprising, in this order:
a surface protective layer; a polarizer; and an optical compensation layer, wherein the surface protective layer is flexible, has a function of substituting for a cover glass for an organic electroluminescence display apparatus, and functions as a protective layer for the polarizer.
2 . The optical laminate according to claim 1 , wherein the surface protective layer is formed of a single resin film.
3 . The optical laminate according to claim 1 , wherein the surface protective layer includes a hard coat layer and a resin film in the stated order from a surface side.
4 . The optical laminate according to claim 1 ,
wherein the surface protective layer has such bendability as to allow the optical laminate to be bent 200,000 times with a radius of curvature of 3 mm or less, and wherein a viewer side surface of the surface protective layer has a pencil hardness of 2H or more and such scratch resistance that the viewer side surface is free of occurrence of a flaw when rubbed 300 times back and forth with a load of 1,000 g.
5 . The optical laminate according to claim 1 ,
wherein the optical compensation layer is formed of a retardation film, wherein an in-plane retardation Re(550) of the retardation film is from 100 nm to 180 nm and satisfies a relationship of Re(450)<Re(550)<Re(650), and wherein an angle formed between a slow axis of the retardation film and an absorption axis of the polarizer is from 35° to 55°.
6 . The optical laminate according to claim 1 , further comprising a conductive layer on an opposite side of the optical compensation layer to the polarizer.
7 . The optical laminate according to claim 2 , wherein the single resin film is formed of a resin selected from the group consisting of a (meth)acrylic resin having a lactone ring structure, a polyamid-based resin, a polyimide-based resin, a polycarbonate-based resin and the combination thereof.
8 . The optical laminate according to claim 3 , wherein the resin film is formed of a resin selected from the group consisting of a (meth)acrylic resin having a lactone ring structure, a polyamid-based resin, a polyimide-based resin, a polycarbonate-based resin and the combination thereof.
9 . An organic electroluminescence display apparatus, comprising the optical laminate of claim 1 on a viewer side, wherein the surface protective layer of the laminate is arranged on the viewer side.
10 . The organic electroluminescence display apparatus according to claim 9 , wherein at least part of the organic electroluminescence display apparatus is bendable with a radius of curvature of 10 mm or less.Join the waitlist — get patent alerts
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