IP Library Granted Patent US 12,204,127
Granted Patent B2
US 12,204,127 · App. 17/599,332 · Granted Jan 21, 2025

Optical laminate

Inventors: Na Young Shin (Daejeon, KR); Kyun Il Rah (Daejeon, KR); Jin Seok Byun (Daejeon, KR); Yeong Rae Chang (Daejeon, KR); Kyung Moon Ko (Daejeon, KR)
Assignee: LG CHEM, LTD.
G02B5/305B32B27/205B32B27/308B32B2250/03B32B2264/2032B32B2264/301B32B2307/42B32B2307/71B32B2307/732
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Quick Facts
Patent No.
US 12,204,127
App. No.
17/599,332
Granted
Jan 21, 2025
Kind
B2
Abstract

An optical laminate or a reddening-resistant layer. The optical laminate that does not cause a reddening phenomenon even when driven or maintained under extremely harsh conditions (e.g., very high temperature conditions), or a reddening-resistant layer applied thereto.

Claims (40)

1. An optical laminate, comprising:

an optical functional layer; and

a reddening-resistant layer formed on at least one surface of the optical functional layer, wherein the reddening-resistant layer is a void-containing layer or a laminate comprising the void-containing layer, wherein the void-containing layer comprises a binder and hollow particles, and wherein the hollow particles have a D10 particle diameter of 25 nm to 50 nm, a D50 particle diameter of 50 nm to 95 nm and a D90 particle diameter of 100 nm to 200 nm in a weight cumulative curve of particle size distribution;

wherein the reddening-resistant layer satisfies Equation 4:

H L ≤0.9 ×H P ,  [Equation 4]

wherein, H L is a thermal diffusivity of a laminate of a polymer film and the reddening-resistant layer formed on one surface of the polymer film, and H P is a thermal diffusivity of the polymer film.

2. The optical laminate according to claim 1 , wherein the optical functional layer is a polarizing layer or a retardation layer.

3. The optical laminate according to claim 1 , wherein the optical functional layer is an iodine-based polarizing layer.

4. The optical laminate according to claim 1 , wherein the reddening-resistant layer comprises a surface having a surface area ratio of 0.02 or more as measured by an atomic force microscope.

5. The optical laminate according to claim 1 , wherein the reddening-resistant layer has reflectance of 2% or more for light having a wavelength of 800 nm to 1300 nm.

6. The optical laminate according to claim 1 , wherein the reddening-resistant layer exhibits at least one peak within a scattering vector range of 0.06 nm −1 to 0.209 nm −1 in a log value graph of scattering intensity of small angle X-ray scattering.

7. The optical laminate according to claim 1 , wherein a refractive index of the reddening-resistant layer satisfies Equation 6:

n

(

λ

)

=

A

+

B

λ

2

+

C

λ

4

.

[

Equation

6

]

wherein, n(λ) is the refractive index of the reddening-resistant layer at a wavelength of λ, λ is a wavelength in a range of 300 nm to 1800 nm, A is 1.5 or less, B is 0 to 0.01, and C is 0 to 0.001.

8. The optical laminate according to claim 1 , wherein the binder comprises a polymer derived from a polyfunctional acrylate having 2 to 10 polymerizable functional groups.

9. The optical laminate according to claim 1 , wherein the void-containing layer does not comprise solid particles.

10. The optical laminate according to claim 1 , wherein the reddening-resistant layer has a thickness of 200 nm or more.

11. The optical laminate according to claim 1 , wherein the reddening-resistant layer does not form a surface of an outermost layer of the optical laminate.

12. The optical laminate according to claim 1 , wherein a distance between the reddening-resistant layer and the optical functional layer is 90 μm or less.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2025
From: LG CHEM LTD.
To: SHANJIN OPTOELECTRONICS (SUZHOU) CO., LTD.
Reel/Frame 070629/0273 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2021
From: SHIN, NA YOUNG; RAH, KYUN IL; BYUN, JIN SEOK; CHANG, YEONG RAE; KO, KYUNG MOON
To: LG CHEM, LTD.
Reel/Frame 057627/0578 →
Priority Claims (1)
KR 10-2019-0037450 · Mar 29, 2019 · national
Continuity (1)
Related Publication 20220196898A1 · Jun 23, 2022
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