IP Library Patent Application 14380728
Patent Application
App. No. 14/380,728

PROCESS FOR THE PRODUCTION OF LOW STRESS AND OPTICAL QUALITY FILM FOR USE IN OPTO-ELECTRONIC DEVICES

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Quick Facts
Patent No.
US None
App. No.
14/380,728
Abstract

The present invention relates to a film with low an optical retardation and thus low stress birefringence which contains at least one layer containing at least one polycarbonate or co-polycarbonate and which, on account of its optical properties, is suitable for use in opto-electronic devices, e.g. in displays and touch panels, as well as to a process for the production of such films and to the use thereof.

Claims (30)

1 . Coated film comprising a base film comprising at least one layer comprising at least one poly- or copolycarbonate, wherein the base film has

an optical retardation of less than 100 nm and

a matte side having a surface roughness of from 200 nm to 20 μm and

another side having a surface roughness of less than 200 nm and

a coating on the matte side whereby a surface of said coating has a surface roughness of less than 200 nm.

2 . Coated film according to claim 1 , wherein the coating comprises nanoparticles.

3 . Coated film according to claim 1 , wherein the difference of the refractive indices of the base film and the coating at a wavelength of 550 nm is less than 0.04, optionally by 0.02, or optionally by 0.015.

4 . Coated film according to claim 1 , wherein the base film has an optical retardation of less than 50 nm, optionally of less than 10 nm

5 . Coated film according to claim 1 , wherein the poly- or copolycarbonate in the base film has a glass transition temperature T g of equal to or more than 140° C., optionally of more than 175° C.

6 . Coated film according to claim 1 , wherein poly- or copolycarbonate containing units prepared from one or more dihydroxydiphenylcycloalkanes of formula (Ia) as dihydroxyaryl

compounds comprises

wherein

R 1 and R 2 independently of one another represent hydrogen, halogen, optionally chlorine or bromine, C 1 -C 8 -alkyl, C 5 -C 6 -cycloalkyl, C 6 -C 10 aryl, optionally phenyl, and C 7 -C 12 -aralkyl, optionally phenyl-C 1 -C 4 -alkyl, optionally benzyl,

m represents an integer from 4 to 7, optionally 4 or 5,

R 3 and R 4 , which can be chosen individually for each X, independently of one another represent hydrogen or C 1 -C 6 -alkyl and

X represents carbon,

with the proviso that, on at least one atom X, optionally on one or two atom(s) X, optionally on only one atom X, R 3 and R 4 simultaneously represent alkyl.

7 . Coated film according to claim 6 , wherein

the units prepared from one or more dihydroxydiphenylcycloalkanes of formula (Ia) are units prepared from one or more dihydroxydiphenylcycloalkanes of formula (Ia-1) to (Ia-3)

wherein R 1 and R 2 independently of one another represent hydrogen, halogen, optionally chlorine or bromine, C 1 -C 8 -alkyl, C 5 -C 6 -cycloalkyl, C 6 -C 10 -aryl, optionally phenyl, and C 7 -C 12 -aralkyl, optionally phenyl-C 1 -C 4 -alkyl, optionally benzyl, optionally hydrogen.

8 . Coated film according to claim 6 , wherein the poly- or copoly-carbonate containing units prepared from one or more dihydroxydiphenylcycloalkanes of formula (Ia) is a poly- or copoly-carbonate containing units prepared from 1,1-bis-(4-hydroxyphenyl)-3,3,5-trimethyl-cyclohexane, optionally a copolycarbonate containing units prepared from 1,1-bis-(4-hydroxyphenyl)-3,3,5-trimethyl-cyclohexane as dihydroxydiphenylcycloalkanes of formula (Ia) and 2,2-bis-(4-hydroxyphenyl)-propane as a further dihydroxyaryl compound.

9 . Coated film according to claim 1 , wherein the coating is a coating produced from a radiation-curable coating composition comprising nanoparticles, optionally from an acrylate-based radiation-curable coating composition containing nanoparticles.

10 . Process for producing a coated film according to claim 1 , comprising

producing a base film having at least one layer containing at least one poly- or copoly-carbonate, the base film having an optical retardation of less than 100 nm, a matte side having a surface roughness of from 200 nm to 20 μm and another side having a surface roughness of less than 200 nm by extrusion or co-extrusion by extruding or co-extruding a plastics melt and then calendering said melt between two rollers, of which one roller has a steel surface and the other roller has an elastic surface,

coating the base film so produced on the matte side with a coating composition and the coating having a roughness of less than 200 nm after drying and optional additional curing.

11 . Process according to claim 10 , wherein coating is carried out using a radiation-curable coating composition comprising nanoparticles, optionally a radiation-curable coating composition comprising one or more acrylates, wherein curing by radiation is further carried out after application of the coating composition and drying.

12 . Process according to claim 10 , wherein the roller having an elastic surface is a roller having a rubber surface.

13 . A coated film according to claim 1 capable of being used in an opto-electronic device.

14 . A coated film according to claim 1 capable of being used in one or more displays and/or touch panels.

15 . Opto-electronic device, optionally a display or touch panel, comprising at least one coated film according to claim 1 .

Assignments (4)
CHANGE OF NAME Recorded Apr 7, 2016
From: BAYER MATERIALSCIENCE AG
To: COVESTRO DEUTSCHLAND AG
Reel/Frame 038376/0427 →
CHANGE OF NAME Recorded Mar 21, 2016
From: BAYER MATERIALSCIENCE AG
To: COVESTRO DEUTSCHLAND AG
Reel/Frame 038188/0408 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2016
From: BAYER INTELLECTUAL PROPERTY GMBH
To: BAYER MATERIALSCIENCE AG
Reel/Frame 038056/0732 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2014
From: SCHMIDT, AXEL, DR.; HON KEONG PHOON, RAYMOND; SCHEIBNER, DANIEL; WANG, ZHENG
To: BAYER INTELLECTUAL PROPERTY GMBH
Reel/Frame 034549/0172 →