IP Library Granted Patent US 7,795,344
Granted Patent B2
US 7,795,344 · App. 11/941,128 · Granted Sep 14, 2010

Nano-particle preparation and applications

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Quick Facts
Patent No.
US 7,795,344
App. No.
11/941,128
Granted
Sep 14, 2010
Kind
B2
Abstract

A nano-particle composition including a poly(alkenylbenzene) core and a poly(conjugated diene), a poly(alkylene), or a poly(alkenylbenzene) surface layer is provided. The nano-particles have a mean average diameter of less than about 100 nm. The nano-particles can be modified via, for example, hydrogenation or functionalization. The nano-particles can be advantageously be incorporated into rubbers, elastomers, and thermoplastics.

Claims (53)

1. A rubber composition comprising:

a. a rubber, and

b. a polymer nano-particle including a crosslinked poly(alkenylbenzene) core and a surface layer including monomer units selected from the group consisting of conjugated dienes, alkylenes, alkenylbenzenes, and mixtures thereof;

wherein the surface layer has a brush-like structure.

2. The composition of claim 1 wherein said rubber is selected from the group consisting of random styrene/butadiene copolymers, butadiene rubber, polyisoprene, nitrile rubber, polyurethane, butyl rubber, EPDM, and mixtures thereof.

3. The composition of claim 1 wherein said polymer nano-particle further includes a functional group selected from the group consisting of carboxylic acid, alcohol, amine, formyl, tin, silicon, silyl ether, and mixtures thereof.

4. The composition of claim 1 wherein said rubber further includes silica or a mixture of silica and carbon black.

5. A thermoplastic elastomer composition comprising:

a. a thermoplastic elastomer; and

b. a polymer nano-particle including a poly(alkenylbenzene) core and a surface layer including monomer units selected from the group consisting of conjugated dienes, alkylenes, alkenylbenzenes, and mixtures thereof;

wherein the surface layer has a brush-like structure.

6. The composition of claim 5 further including an extender to form a gel.

7. The composition of claim 5 wherein said thermoplastic elastomer is selected from the group consisting of SEPS, SEBS, SEPE, SEBE, EEBE, EEPE polypropylene, polyethylene, polystyrene, and mixtures thereof.

8. A rubber composition comprising:

a. rubber;

b. silica; and

c. a polymer nano-particle including a crosslinked poly(alkenylbenzene) core and a surface layer including monomer units selected from the group consisting of conjugated dienes, alkylenes, alkenylbenzenes, and mixtures thereof,

wherein the surface layer has a brush-like structure.

9. The composition of claim 8 wherein said nano-particle is crosslinked.

10. The composition of claim 8 wherein said polymer nano-particle further includes a functional group selected from the group consisting of carboxylic acid, alcohol, amine, formyl, tin, silicon, silyl ether, and mixtures thereof.

11. A tire including the composition of claim 8 .

12. A hard disk drive gasket composition comprising:

a. a rubber;

b. a polyalkylene; and

c. a polymer nano-particle including a crosslinked poly(alkenylbenzene) core and a surface layer including monomer units selected from the group consisting of conjugated dienes, alkylenes, alkenylbenzenes, and mixtures thereof,

wherein the surface layer has a brush-like structure.

13. The composition of claim 12 wherein said rubber is selected from the group consisting of random styrene/butadiene copolymers, butadiene rubber, polyisoprene, nitrile rubber, polyurethane, butyl rubber, EPDM, and mixtures thereof.

14. The composition of claim 12 wherein said polymer nano-particle further includes a functional group selected from the group consisting of carboxylic acids, alcohols, amines, formyl, tin, silica, and mixtures thereof.

15. A vulcanizable elastomeric composition comprising:

a rubber;

a nano-particle composition;

a reinforcing filler comprised of silica or a mixture of silica and carbon black;

a curing agent comprising an effective amount of sulfur to achieve sufficient cure;

wherein the nanoparticle composition comprises diblock polymer chains aggregated into micelle structures, the diblock polymer chains including a first end block and a second end block, the polymer chains being crosslinked with poly(alkenylbenzene) cross-linking agent;

wherein the nanoparticles include (i) a surface layer comprising the second end blocks of the polymer chains and (ii) a core comprising the first end blocks of the polymer chains, the first end blocks of the polymer chains being cross-linked with the poly(alkenylbenzene) cross-linking agent;

wherein the first end block comprises vinyl-substituted aromatic hydrocarbon on monomer units, and the second end block comprises conjugated dienes, alkylenes, alkenylbenzenes, and mixtures thereof,

wherein the surface layer has a brush-like structure.

16. The composition of claim 15 wherein said rubber is selected from the group consisting of random styrene/butadiene copolymers, butadiene rubber, polyisoprene, nitrile rubber, polyurethane, butyl rubber, EPDM, and mixtures thereof.

17. The composition of claim 15 wherein said nano-particle composition further comprises:

a functional group selected from the group consisting of carboxylic acid, alcohol, amine, formyl, tin, silicon, silyl ether, and mixtures thereof.

18. An engine mount comprised of the composition of claim 15 .

19. A tire including the composition of claim 15 .

20. The rubber composition of claim 1 wherein the surface layer is selected from the group consisting of alkylenes or alkenylbenzenes, and mixtures thereof, and a mixture of alkylenes and/or alkenylbenzenes with conjugated dienes.

21. The rubber composition of claim 3 , wherein the functional group is contributed from a functional initiator.

22. A composition comprising:

a. a polymer matrix;

b. nano-particles comprising diblock polymer chains aggregated into micelle structures, the diblock polymer chains including a first end block and a second end block the polymer chains being crosslinked with poly(alkenylbenzene) cross-linking agent;

wherein the nanoparticles include (i) a surface layer comprising the second end blocks of the polymer chains and (ii) a core comprising the first end blocks of the polymer chains, the first end blocks of the polymer chains being cross-linked with the poly(alkenylbenzene) cross-linking agent;

wherein the first end block comprises vinyl-substituted aromatic hydrocarbon on monomer units,

wherein the surface layer has a brush-like structure.

23. The composition of claim 22 , wherein the second end block comprises monomer units selected from the group consisting alkylenes, alkenylbenzenes, and mixtures thereof, and a mixture of alkylenes and/or alkenylbenzenes with conjugated dienes.

24. The composition of claim 22 , wherein the second end block comprises conjugated diene monomer units.

25. The composition of claim 22 , wherein the surface layer further comprises a functional group, the functional group selected from the group consisting of carboxylic acid, alcohol, amine, formyl, tin, silicon, silyl ether, and mixtures thereof.

Assignments (3)
CHANGE OF NAME Recorded Mar 8, 2017
From: BRIDGESTONE/FIRESTONE NORTH AMERICAN TIRE, LLC
To: BRIDGESTONE FIRESTONE NORTH AMERICAN TIRE, LLC
Reel/Frame 041909/0244 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2017
From: BRIDGESTONE CORPORATION
To: BRIDGESTONE/FIRESTONE NORTH AMERICAN TIRE, LLC
Reel/Frame 041474/0760 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2010
From: WANG, XIAORONG; LIN, CHENCHY JEFFREY; HALL, JAMES; WARREN, SANDRA; KROM, JAMES; KONDO, HAJIME; MORITA, KOICHI
To: BRIDGESTONE CORPORATION
Reel/Frame 024815/0294 →