IP Library Granted Patent US 10,717,878
Granted Patent B2
US 10,717,878 · App. 16/070,662 · Granted Jul 21, 2020

Anti-reflection coating composition and anti-reflection film utilizing same

Inventors: Seung Hun Lee (Daegu, KR); Seung Hyun Lee (Daegu, KR); Gyeong Guk Ham (Daegu, KR)
Assignee: YOUNG CHANG CHEMICAL CO., LTD
C09D5/006C03C1/00C03C17/02C03C17/30C09D5/00C09D7/61C09D183/06C03C2217/732C03C2217/78C03C2218/11
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Quick Facts
Patent No.
US 10,717,878
App. No.
16/070,662
Granted
Jul 21, 2020
Kind
B2
Abstract

The present invention relates to an anti-reflective coating solution composition and an anti-reflective coating film using the same. More particularly, an anti-reflective coating solution composition is provided, which has a low refractive index to thus improve transmittance and can also increase abrasion resistance to thus maintain an anti-reflective effect for a long period of time, whereby an anti-reflective coating film for improving solar cell module efficiency can be formed, and thus can be applied not only to a solar cell module glass but also to glass in a variety of fields.

Claims (17)

1. An anti-reflective coating solution composition, comprising:

a compound represented by Chemical Formula 1 below;

a water-soluble organic solvent; and

water:

in Chemical Formula 1, X is an integer selected from among 15 to 25,

R 1 is CH 3 ,

R 2 is OCH 3 ,

R 3 is CH 3 , and

R 4 is CH 3 ,

wherein the anti-reflective coating solution composition comprises, based on a total weight of the composition, 5 to 30 wt % of the compound represented by Chemical Formula 1, 54 to 86 wt % of the water-soluble organic solvent, and a remainder of the water.

2. The anti-reflective coating solution composition of claim 1 , further comprising an acid catalyst and a nonionic surfactant.

3. The anti-reflective coating solution composition of claim 1 , wherein the water-soluble organic solvent is at least one selected from the group consisting of methyl alcohol, ethyl alcohol, benzyl alcohol, isopropyl alcohol, isoamyl alcohol, pentyl alcohol, isobutyl alcohol, butyl alcohol, cetyl alcohol, lauryl alcohol, nonyl alcohol, undecyl alcohol, propylene glycol monomethyl ether, and propylene glycol monomethyl ether acetate.

4. The anti-reflective coating solution composition of claim 2 , wherein the acid catalyst is at least one selected from the group consisting of sulfuric acid, hydrochloric acid, sodium nitrate, potassium nitrate, nitric acid, acetic acid, potassium chromate, nitrous acid, perchloric acid, phosphoric acid, and acetic acid.

5. The anti-reflective coating solution composition of claim 2 , wherein the nonionic surfactant is at least one selected from the group consisting of polyoxyethylene alkyl phenyl ether, polyoxyethylene alkylether, polyoxyethylene glycol fatty acid ester, an oxypropylene-oxyethylene block copolymer, polyoxyethylene glycol, polyoxyethylene alkylamine ether, polyoxyalkylene glycol monoalkyl ether, polyoxyalkylene styrenated phenyl ether, and polyoxyalkylene alkylether.

6. The anti-reflective coating solution composition of claim 1 , wherein the anti-reflective coating solution composition further comprises, based on the total weight of the composition, 0.5 to 1 wt % of an acid catalyst and 1 to 4 wt % of a nonionic surfactant.

7. The anti-reflective coating solution composition of claim 1 , wherein the anti-reflective coating solution composition is used for a solar cell module glass.

8. An anti-reflective coating film, manufactured by coating at least one surface of a solar cell module glass with the anti-reflective coating solution composition of claim 1 and then performing curing.

Assignments (2)
CHANGE OF NAME Recorded Jul 14, 2023
From: YOUNG CHANG CHEMICAL CO., LTD
To: YCCHEM CO., LTD.
Reel/Frame 064276/0151 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2018
From: LEE, SEUNG HUN; LEE, SEUNG HYUN; HAM, GYEONG GUK
To: YOUNG CHANG CHEMICAL CO., LTD.
Reel/Frame 046559/0982 →
Priority Claims (1)
KR 10-2016-0006083 · Jan 18, 2016 · national
Continuity (1)
Related Publication 20180319994A1 · Nov 8, 2018