IP Library Patent Application 11233042
Patent Application
App. No. 11/233,042

Optical compensation film, elliptical polarizing plate and liquid crystal display

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Patent No.
US None
App. No.
11/233,042
Abstract

An optical compensation film and an elliptical polarizing plate, for realizing a liquid crystal display improved in gray-scale inversion, having a wider viewing angle property and being excellent in industrial production is provided. An embodiment of the optical compensation film is characterized in that a liquid crystal composition capable of expressing a biaxial nematic phase has a twisted hybrid alignment. Another embodiment includes a transparent substrate, a first optically anisotropic layer and a second optically anisotropic layer in an arbitrary order, and is characterized in that the first optically anisotropic layer is formed by a liquid crystal composition capable of expressing a biaxial nematic phase, and the second optically anisotropic layer is formed by monoaxial liquid crystalline molecules.

Claims (18)

1 . An optical compensation film comprising an optically anisotropic layer containing a liquid crystal composition capable of expressing a biaxial nematic phase, wherein the liquid crystal composition in the optically anisotropic layer is in a state where a hybrid alignment and a twisted alignment are provided.

2 . An optical compensation film comprising an optically anisotropic layer containing a liquid crystal composition capable of expressing a biaxial nematic phase, wherein the optically anisotropic layer is formed by fixing the biaxial nematic phase in which a twisted alignment is provided to a hybrid alignment.

3 . The optical compensation film according to claim 1 , wherein the liquid crystal composition has refractive indexes nx, ny and nz in a decreasing order of three axes thereof, an angle of an axis of nx to a planar direction of the optical compensation film scarcely changes in a thickness direction of the optically anisotropic layer, and an angle of an axis of nz to the planar direction changes in the thickness direction.

4 . The optical compensation film according to claim 1 , wherein the twisted alignment has a twist angle of less than 10°.

5 . The optical compensation film according to claim 1 , wherein the liquid crystal composition comprises: a liquid crystal compound capable of expressing a rod-shape liquid crystal phase; and a liquid crystal compound capable of expressing a discotic liquid crystal phase.

6 . The optical compensation film according to claim 1 , wherein the liquid crystal composition comprises: an optically active compound; and a liquid crystal compound capable of expressing a biaxial nematic phase, the optical compensation film further comprises: a substrate; and an alignment film between the substrate and the optically anisotropoc layer, and the optically anisotropic layer is formed by: stacking a layer containing the liquid crystal composition; and expressing and fixing the biaxial nematic phase.

7 . An optical compensation film comprising: a transparent substrate; a first optically anisotropic layer; and a second optically anisotropic layer in an arbitrary order, wherein the first optically anisotropic layer contains a liquid crystal composition capable of expressing a biaxial nematic phase, and the second optically anisotropic layer contains a monoaxial liquid crystalline molecule.

8 . The optical compensation film according to claim 7 , wherein the biaxial nematic phase expressed in the first optically anisotropic layer has a principal axis inclined to a surface of the transparent substrate.

9 . The optical compensation film according to claim 8 , wherein an inclination angle of the principal axis to the surface of the transparent substrate changes unidirectionally according to a distance to the surface of the transparent substrate.

10 . The optical compensation film according to claim 7 , wherein the monoaxial liquid crystalline molecule has an optical axis thereof inclined to a surface of the transparent substrate, and an inclination angle of the optical axis changes unidirectionally according to a distance to the surface of the transparent substrate.

11 . The optical compensation film according to claim 7 , wherein the first optically anisotropic layer, the transparent substrate and the second optically anisotropic layer are stacked in this order.

12 . The optical compensation film according to claim 7 , wherein the transparent substrate, the first optically anisotropic layer, and the second optically anisotropic layer are stacked in this order.

13 . The optical compensation film according to claim 7 , wherein the first optically anisotropic layer contains a rod-shape liquid crystalline molecule.

14 . The optical compensation film according to claim 7 , wherein the first optically anisotropic layer contains a discotic liquid crystalline molecule.

15 . An elliptical polarizing plate comprises: a transparent substrate; an optical compensation film according to claim 1; and a polarizing film.

16 . An elliptical polarizing plate comprising: at least an optical compensation film according to claim 7; a polarizing film; and a transparent protective film, wherein the second optically anisotropic layer is stacked in a position closer to the polarizing film than the first optically anisotropic layer.

17 . A liquid crystal display comprising: a liquid crystal cell of TN mode; and two polarizing elements positioned on both sides of the liquid crystal cell, wherein the two polarizing elements each comprises an elliptical polarizing plate according to claim 16 .

18 . A liquid crystal display comprising an optical compensation film according to claim 1.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2007
From: FUJIFILM HOLDINGS CORPORATION (FORMERLY FUJI PHOTO FILM CO., LTD.)
To: FUJIFILM CORPORATION
Reel/Frame 018904/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2005
From: TASAKA, TOMOKI
To: FUJI PHOTO FILM CO., LTD.
Reel/Frame 017028/0545 →