IP Library Granted Patent US 7,792,406
Granted Patent B2
US 7,792,406 · App. 11/098,306 · Granted Sep 7, 2010

Polymer-inorganic particle composites

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Quick Facts
Patent No.
US 7,792,406
App. No.
11/098,306
Granted
Sep 7, 2010
Kind
B2
Abstract

Inorganic particle/polymer composites are described that involve chemical bonding between the elements of the composite. In some embodiments, the composite composition includes a polymer having side groups chemically bonded to inorganic particles. Furthermore, the composite composition can include chemically bonded inorganic particles and ordered copolymers. Various electrical optical and electro-optical devices can be formed from the composites.

Claims (24)

1. A structure comprising an optical substrate having a planar surface, and a composite localized within boundaries along the planar surface within a first localized domain covering only a portion of the planar surface, the composite comprising inorganic particles bonded to a polymer to form a crosslinked polymer network, the polymer comprising an organic polymer, a polysiloxane polymers or mixtures thereof, the inorganic particles comprising elemental silicon, elemental metal, a metal/metalloid oxide, a metal/metalloid nitride, a metal/metalloid carbide or a metal/metalloid sulfide.

2. The structure of claim 1 wherein the substrate is a fiber.

3. The structure of claim 1 wherein the inorganic particles have an average particle size less than about 100 nm.

4. The structure of claim 1 wherein the inorganic particles have an average particle size less than about 50 nm.

5. The structure of claim 1 wherein effectively no inorganic particles have a diameter greater than about 4 times the average diameter.

6. The structure of claim 1 wherein at least about 95 percent of the particles have a diameter greater than about 40 percent of the average diameter and less than about 160 percent of the average diameter.

7. The structure of claim 1 wherein the structure comprises an optical device.

8. The structure of claim 7 wherein the composite has an index-of-refraction at least about 1.8.

9. The structure of claim 7 wherein the composite has an index-of-refraction of no more than about 1.5.

10. The structure of claim 7 wherein the optical device comprises a photonic crystal.

11. The structure of claim 1 wherein the composite comprises at least about 5 weight percent of the inorganic particles.

12. The structure of claim 1 wherein the composite comprises at least about 25 weight percent inorganic particles.

13. The structure of claim 1 wherein the composite is a film on the substrate surface within the localized boundaries.

14. The structure of claim 1 wherein the composite is a self-assembled material.

15. A field emission device comprising a structure of claim 1 .

16. A field effect transistor comprising a structure of claim 1 .

17. The structure of claim 1 wherein the polymer is bonded through terminal groups of a polymer chain.

18. The structure of claim 1 wherein the polymer is bonded through side chains of the polymer.

19. A structure comprising a surface and a composite localized within boundaries on the surface, the composite comprising inorganic particles bonded to a polymer, wherein at least about 95 percent of the particles have a diameter greater than about 40percent of the average diameter and less than about 160 percent of the average diameter.

20. The structure of claim 19 wherein the inorganic particles have an average particle size less than about 100 nm.

21. The structure of claim 19 wherein the structure comprises an optical device.

22. A structure comprising an optical substrate having a polymer surface, and a composite localized within boundaries along the planar surface within a first localized domain covering only a portion of the planar surface, the composite comprising inorganic particles bonded to a polymer to form a crosslinked polymer network, the polymer comprising an organic polymer, a polysiloxane polymers or mixtures thereof, further comprising a second localized domain distinct from the first localized domain wherein the second localized domain has a composition different from the composite wherein the first localized domain forms a first functional component and the second localized domain forms a second functional component.

23. The structure of claim 22 wherein at least about 95 percent of the particles have a diameter greater than about 40 percent of the average diameter and less than about 160 percent of the average diameter.

24. The structure of claim 22 wherein the composition comprises a polymer and inorganic particles having an average particle size of no more than about 100 nm.