IP Library Granted Patent US 9,834,663
Granted Patent B2
US 9,834,663 · App. 14/698,579 · Granted Dec 5, 2017

Composition for forming a transparent coating film including hollow silica particles

Inventors: Ryota Sueyoshi (Kitakyushu, JP); Ryo Muraguchi (Kitakyushu, JP); Masayuki Matsuda (Kitakyushu, JP); Mitsuaki Kumazawa (Kitakyushu, JP); Toshiharu Hirai (Kitakyushu, JP)
Assignee: JGC Catalysts and Chemicals Ltd.
C08K7/26B82Y30/00C01B33/146C01B33/149C09C1/30C09C1/3063C09D7/1266C09D7/1275C09D7/1291C09D133/14C09D183/08B01J21/08C01B33/126C01B33/18C01P2002/88C01P2004/34C01P2004/62C01P2004/64C01P2006/12C01P2006/60C08K9/04Y10T428/265Y10T428/2993Y10T428/2996
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Quick Facts
Patent No.
US 9,834,663
App. No.
14/698,579
Granted
Dec 5, 2017
Kind
B2
Abstract

A composition for forming a transparent coating film including hollow silica microparticles and a binder is provided. The hollow silica microparticles have an average particle diameter of 5 to 300 nm when measured by the dynamic light scattering method, a specific surface area of 50 to 1500 m 2 /g, and an outer shell in which cavities are formed. The microparticles lose weight by 1.0 W % or more at a temperature in the range of from 200° C. to 500° C. when measured by the thermogravimetry (TG). A surface charge (QA) of the hollow silica microparticles contained in the compositions for forming a transparent coating film is in the range from 5 to 20 μeq/g.

Claims (17)

1. A composition for forming a transparent coating film comprising hollow silica microparticles and a binder,

wherein the hollow silica microparticles have an average particle diameter of 5 to 300 nm when measured by the dynamic light scattering method, a specific surface area of 50 to 1500 m 2 /g, and also having an outer shell in which cavities are formed,

wherein the microparticles lose weight by 1.0 W % or more at a temperature in the range of from 200° C. to 500° C. when measured by the thermogravimetry (TG), and

wherein a surface charge (Q A ) of the hollow silica microparticles contained in the compositions for forming a transparent coating film is in the range from 5 to 20 μeq/g.

2. The composition for forming a transparent coating film according to claim 1 , wherein the microparticles have a positive DTA peak when measured by the differential thermogravimetric analysis (DTA) at a temperature in the range from 200° C. to 500° C.

3. The composition for forming a transparent coating film according to claim 1 , wherein the hollow silica microparticles have an organic group directly bonded to a silicon atom on a surface thereof.

4. The composition for forming a transparent coating film according to claim 3 , wherein the organic group is at least one selected from the group consisting of saturated or unsaturated hydrocarbon groups having 1 to 18 carbon atoms and halogenated hydrocarbon groups having 1 to 18 carbon atoms.

5. The composition for forming a transparent coating film according to claim 1 , wherein a concentration (C PA ) of the hollow silica microparticles contained in the composition for forming a transparent coating film is in the range from 0.1 to 20 W %, a concentration (C M ) of the binder as a solid component is in the range from 1 to 50 W %, and a solvent is a polar one.

6. The composition for forming a transparent coating film according to claim 1 , wherein the composition for forming a transparent coating film containing the hollow silica microparticles with the surface charge (Q A ) in the range from 5 to 20 μeq/g also contains metal oxide microparticles with a surface charge (Q B ) in the range from 51 to 150 μeq/g, and

wherein a value of difference between the surface charge (Q B ) of the metal oxide microparticles and the surface charge (Q A ) of the hollow silica microparticles [(Q B )−(Q A )] is in the range from 20 to 100 μeq/g.

7. The composition for forming a transparent coating film according to claim 6 , wherein a concentration (C PA ) of the hollow silica microparticles contained in the composition for forming a transparent coating film is in the range from 0.1 to 20 W %, a concentration (C PB ) of the metal oxide microparticles is in the range from 0.1 to 20 W %, a concentration (C M ) of the binder as a solid component is in the range from 1 to 50 W %, and a solvent is a polar one.

8. The composition for forming a transparent coating film according to claim 2 , wherein the hollow silica microparticles have an organic group directly bonded to a silicon atom on a surface thereof.

9. The composition for forming a transparent coating film according to claim 8 , wherein the organic group is at least one selected from the group consisting of saturated or unsaturated hydrocarbon groups having 1 to 18 carbon atoms and halogenated hydrocarbon groups having 1 to 18 carbon atoms.

10. The composition for forming a transparent coating film according to claim 2 , wherein a concentration (C PA ) of the hollow silica microparticles contained in the composition for forming a transparent coating film is in the range from 0.1 to 20 W %, a concentration (C M ) of the binder as a solid component is in the range from 1 to 50 W %, and a solvent is a polar one.

11. The composition for forming a transparent coating film according to claim 2 , wherein the composition for forming a transparent coating film containing the hollow silica microparticles with the surface charge (Q A ) in the range from 5 to 20 μeq/g also contains metal oxide microparticles with a surface charge (Q B ) in the range from 51 to 150 μeq/g, and

wherein a value of difference between the surface charge (Q B ) of the metal oxide microparticles and the surface charge (Q A ) of the hollow silica microparticles [(Q B )−(Q A )] is in the range from 20 to 100 μeq/g.

12. The composition for forming a transparent coating film according to claim 11 , wherein a concentration (C PA ) of the hollow silica microparticles contained in the composition for forming a transparent coating film is in the range from 0.1 to 20 W %, a concentration (C PB ) of the metal oxide microparticles is in the range from 0.1 to 20 W %, a concentration (C M ) of the binder as a solid component is in the range from 1 to 50 W %, and a solvent is a polar one.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2015
From: SUEYOSHI, RYOTA; MATSUDA, MASAYUKI; KUMAZAWA, MITSUAKI; HIRAI, TOSHIHARU; MURAGUCHI, RYO
To: CATALYSTS & CHEMICALS INDUSTRIES CO., LTD.
Reel/Frame 035758/0988 →
CHANGE OF NAME Recorded Jun 1, 2015
From: CATALYSTS & CHEMICALS INDUSTRIES CO., LTD.
To: JGC CATALYSTS AND CHEMICALS LTD.
Reel/Frame 035759/0110 →
Priority Claims (1)
JP 2005-340617 · Nov 25, 2005 · national
Continuity (3)
Continuation 13352870 · Jan 18, 2012
Division 12085367
Related Publication 20150259512A1 · Sep 17, 2015