Claims
- 1. A composite material comprising:
a host matrix, and a plurality of magneto-optic nanoparticles within the host matrix.
- 2. The composite material according to claim 1, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one coating layer.
- 3. The composite material according to claim 2, wherein at least one of said plurality of magneto-optic nanoparticles comprises a halogenated outer coating layer.
- 4. The composite material according to claim 1, wherein said host matrix comprises at least one polymer.
- 5. The composite material according to claim 1, wherein the plurality of magneto-optic nanoparticles are distributed within said host matrix such that the composite exhibits magneto-optic properties.
- 6. The composite material according to claim 1, wherein said host matrix is chosen from halogenated elastomers, perhalogenated elastomers, halogenated plastics, and perhalogenated plastics.
- 7. The composite material according to claim 1, wherein said host matrix comprises at least one entity chosen from polymers, copolymers, and terpolymers comprising at least one halogenated monomer chosen from monomers of one of the following formulas:
- 8. The composite material according to claim 7, wherein at least one of R1, R2, R3, R4, and R5 is at least partially fluorinated.
- 9. The composite material according to claim 7, wherein at least one of R1, R2, R3, R4, and R5 is completely fluorinated.
- 10. The composite material according to claim 7, wherein at least one of R1, R2, R3, R4, and R5 is chosen from C1-C10, linear and branched, saturated and unsaturated, hydrocarbon-based chains.
- 11. The composite material according to claim 1, wherein said host matrix comprises at least one polymer condensation product of at least one of the following monomeric reactions:
- 12. The composite material according to claim 1, wherein said host matrix comprises at least one material chosen from halogenated polycarbonates, halogenated cyclic olefin polymers, halogenated cyclic olefin copolymers, halogenated polycyclic polymers, halogenated polyimides, halogenated polyether ether ketones, halogenated epoxy resins, and halogenated polysulfones.
- 13. The composite material according to claim 1, wherein said host matrix comprises a combination of two or more different fluoropolymer materials.
- 14. The composite material according to claim 1, wherein said polymer host matrix further comprises at least one halogenated polymer comprising at least one functional group chosen from phosphinates, phosphates, carboxylates, silanes, siloxanes, and sulfides.
- 15. The composite material according to claim 14, wherein the at least one functional group is chosen from POOH, POSH, PSSH, OH, SO3H, SO3R, SO4R, COOH, NH2, NHR, NR2, CONH2, and NH—NH2, wherein R is chosen from linear and branched hydrocarbon-based chains, capable of forming at least one carbon-based ring, being saturated or unsaturated; alkylenes, siloxanes, silanes, ethers, polyethers, thioethers, silylenes, and silazanes.
- 16. The composite material according to claim 1, wherein said host matrix comprises at least one material chosen from homopolymers and copolymers of monomeric units chosen from vinyl, acrylate, methacrylate, vinyl aromatic, vinyl ester, alpha beta unsaturated acid ester, unsaturated carboxylic acid ester, vinyl chloride, vinylidene chloride, and diene monomers.
- 17. The composite material according to claim 1, wherein said host matrix comprises at least one hydrogen-containing fluoroelastomer.
- 18. The composite material according to claim 1, wherein said host matrix comprises at least one cross-linked halogenated polymer.
- 19. The composite material according to claim 18, wherein said at least one cross-linked halogenated polymer comprises at least one fluorinated polymer.
- 20. The composite material according to claim 1, wherein said host matrix comprises at least one perhalogenated polymer.
- 21. The composite material according to claim 20, wherein the at least one perhalogenated polymer is chosen from perfluorinated polymers.
- 22. The composite material according to claim 1, wherein said host matrix comprises at least one perhalogenated elastomer.
- 23. The composite material according to claim 1, wherein said host matrix comprises at least one hydrogen-containing perfluoroelastomer.
- 24. The composite material according to claim 1, wherein said host matrix comprises at least one hydrogen-containing fluoroplastic.
- 25. The composite material according to claim 1, wherein said host matrix comprises at least one hydrogen-containing perfluorothermoplastic.
- 26. The composite material according to claim 1, wherein said host matrix comprises a blend of at least one material chosen from halogenated, fluorinated, and perfluorinated polymers.
- 27. The composite material according to claim 1, wherein said host matrix comprises at least one entity chosen from poly[2,2-bistrifluoromethyl-4,5-difluoro-1,3-dioxole-co-tetrafluoroethylene], poly[2,2-bisperfluoroalkyl-4,5-difluoro-1,3-dioxole-co-tetrafluoroethylene], poly[2,3-(perfluoroalkenyl)perfluorotetrahydrofuran], and poly[2,2,4-trifluoro-5-trifluoromethoxy-1,3-dioxole-co-tetrafluoroethylene].
- 28. The composite material according to claim 1, wherein said host matrix comprises at least one entity chosen from poly(pentafluorostyrene), fluorinated polyimide, fluorinated polymethylmethacrylates, and polyfluoroacrylates.
- 29. The composite material according to claim 1, wherein said host matrix comprises polyfluorostyrene.
- 30. The composite material according to claim 1, wherein said host matrix comprises fluorinated polycarbonates.
- 31. The composite material according to claim 1, wherein said host matrix comprises at least one perfluoro-polycyclic polymer.
- 32. The composite material according to claim 1, wherein said host matrix comprises at least one fluorinated cyclic olefin polymer.
- 33. The composite material according to claim 1, wherein said host matrix comprises at least one fluorinated copolymer of cyclic olefins.
- 34. The composite material according to claim 1, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one material having Verdet coefficient equal to or greater than 0.2 degree/mT·μm.
- 35. The composite material according to claim 34, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one material chosen from transition metal elements, rare-earth metal elements, the actinide element uranium, group VA elements, semiconductor materials, and group IVA elements in a form chosen from ions, alloys, compounds, composites, complexes, chromophores, dyes, and polymers.
- 36. The composite material according to claim 35, wherein the at least one material is chosen from YVO4, TbPO4, HoYbBiIG, (Cd,Mn,Hg)Te, MnAs, Y2.82 Ce0.18Fe5O12, Bi-substituted iron garnet, yttrium iron garnet, terbium gallium garnet, lithium niobate, and paramagnetic rare-earth ions.
- 37. The composite material according to claim 36, wherein the paramagnetic rare-earth ions are chosen from Tb+3, Y+3, and Ce+3.
- 38. The composition material according to claim 1, wherein at least one of the plurality of magneto-optic nanoparticles has a Faraday effect.
- 39. The composite material according to claim 35, wherein the semiconductor materials are chosen from Si, PbS, Ge, GaP, GaAs, InP, InAs, InSb, PbSe, and PbTe.
- 40. The composite material according to claim 35, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one material chosen from precious metals and alloys thereof.
- 41. The composite material according to claim 40, wherein the precious metals are Ag.
- 42. The composite material according to claim 1, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one material having an index of refraction ranging from about 1 to about 5.
- 43. The composite material according to claim 42, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one material having an index of refraction ranging from about 1.5 to about 4.5.
- 44. The composite material according to claim 35, Wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one material chosen from dye nanoparticles.
- 45. The composite material according to claim 35, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one material chosen from lithium niobate, non-linear optical chromophores, and organic dyes.
- 46. The composite material according to claim 35, wherein at least one of said plurality of magneto-optic nanoparticles further comprises at least one material chosen from paramagnetic, ferromagnetic, antiferromagnetic, ferromagnetic, and diamagnetic materials.
- 47. The composite material according to claim 1, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one polymer.
- 48. The composite material according to claim 47, wherein said at least one polymer comprises at least one functional group chosen from POOH, POSH, PSSH, OH, SO3H, SO3R, SO4R, COOH, NH2, NHR, NR2, CONH2, and NH—NH2, wherein R is chosen from linear and branched hydrocarbon-based chains, capable of forming at least one carbon-based ring, being saturated or unsaturated, alkylenes, siloxanes, silanes, ethers, polyethers, thioethers, silylenes, and silazanes.
- 49. The composite material according to claim 47, wherein said at least one polymer is chosen from homopolymers and copolymers of monomeric units chosen from vinyl, acrylic, vinyl aromatic, vinyl esters, alpha beta unsaturated acid esters, unsaturated carboxylic acid esters, vinyl chloride, vinylidene chloride, and diene monomers.
- 50. The composite material according to claim 1, wherein a majority of said plurality of magneto-optic nanoparticles has a major dimension of less than about 50 nm.
- 51. The composite material according to claim 1, wherein said plurality of magneto-optic nanoparticles further comprises a first group of nanoparticles comprising at least one active material of a first type and at least a second group of nanoparticles comprising at least one active material of a second type different from the first type.
- 52. The composite material according to claim 3, wherein the halogenated outer coating layer comprises at least one halogen chosen from fluorine, chlorine, and bromine.
- 53. The composite material according to claim 3, wherein the halogenated outer coating layer comprises at least one material chosen from halogenated polyphosphates, halogenated phosphates, halogenated phosphinates, halogenated dithiophosphinates, halogenated pyrophosphates, halogenated alkyl titanates, halogenated alkyl zirconates, halogenated silanes, halogenated alcohols, halogenated amines, halogenated carboxylates, halogenated amides, halogenated sulfates, halogenated esters, halogenated acid chloride, halogenated acetylacetonate, halogenated thiols, and halogenated alkylcyanide.
- 54. The composite material according to claim 52, wherein the halogenated outer coating layer is fluorinated.
- 55. The composite material according to claim 3, wherein at least one of said plurality of magneto-optic nanoparticles further comprises at least one inner coating disposed beneath the halogenated outer coating layer, wherein the at least one inner coating is a passivation layer.
- 56. The composite material according to claim 3, wherein the halogenated outer coating layer comprises at least one material that reacts with and neutralizes at least one radical group on at least one of the plurality of magnetic-optic nanoparticles.
- 57. The composite material according to claim 56, wherein the at least one radical group is chosen from OH and esters.
- 58. The composite material according to claim 35, wherein the at least one of said plurality of magneto-optic nanoparticles further comprises at least one material chosen from lithium niobate, barium titinate, proustite, yttrium aluminate, rutile, and ziroconate and their counterparts doped with an ion chosen from rare-earth and transition metal ions.
- 59. The composite material according to claim 1, wherein the concentration of the said plurality of magneto-optic nanoparticles ranges from about 10 volume % to about 95 volume % of the composite material.
- 60. The composite material according to claim 1, wherein the index of refraction of the composite material ranges from about 1 to about 5.
- 61. An optical device comprising at least one composite material, comprising:
a host matrix, and a plurality of magneto-optic nanoparticles within the host matrix.
- 62. The optical device according to claim 61, wherein the optical device is chosen from optical rotators, optical isolators, optical circulators, optical modulators, waveguides, and amplifiers.
- 63. The optical device according to claim 62, wherein the optical rotators are chosen from Faraday rotators.
- 64. The optical device according to claim 61, wherein at least one of the plurality of magneto-optic nanoparticles comprises at least one material having a Faraday effect.
- 65. The optical device according to claim 61, wherein at least one of the plurality of magneto-optic nanoparticles comprises a halogenated outer coating layer.
- 66. The optical device according to claim 61, wherein the host matrix comprises at least one material chosen from halogenated elastomers, perhalogenated elastomers, halogenated plastics, and perhalogenated plastics.
- 67. The optical device according to claim 66, wherein the host matrix comprises at least one material chosen from hydrogen-containing perfluoroelastomers, hydrogen-containing fluoroplastics, perfluorothermoplastics, blend of at least two different fluoropolymer materials, poly[2,2-bistrifluoromethyl-4,5-difluoro-1,3-dioxole-co-tetrafluoroethylene], poly[2,2-bisperfluoroalkyl-4,5-difluoro-1,3-dioxole-co-tetrafluoroethylene], poly[2,3-(perfluoroalkenyl)perfluorotetrahydrofuran, poly[2,2,4-trifluoro-5-trifluoromethoxy-1,3-dioxole-co-tetrafluoroethylene], poly(pentafluorostyrene), fluorinated polyimides, fluorinated polymethylmethacrylate, polyfluoroacrylates, polyfluorostyrene, fluorinated polycarbonates, perfluoro-polycyclic polymers, fluorinated cyclic olefin polymers, and fluorinated copolymers of cyclic olefins.
- 68. The optical device according to claim 61, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one polymer.
- 69. The optical device according to claim 65, wherein the halogenated outer coating layer comprises at least one halogen chosen from fluorine, chlorine, and bromine.
- 70. The optical device according to claim 65, wherein the halogenated outer coating layer comprises at least one material chosen from halogenated polyphosphates, halogenated phosphates, halogenated phosphinates, halogenated dithiophosphinates, halogenated pyrophosphates, halogenated alkyl titanates, halogenated alkyl zirconates, halogenated silanes, halogenated alcohols, halogenated amines, halogenated carboxylates, halogenated amides, halogenated sulfates, halogenated esters, halogenated acid chloride, halogenated acetylacetonate, halogenated thiols, and halogenated alkylcyanide.
- 71. The optical device according to claim 65, wherein at least one of said plurality of magneto-optic nanoparticles further comprises at least one inner coating disposed beneath the halogenated outer layer coating layer, wherein the at least one inner coating comprises a passivation layer.
- 72. The optical device according to claim 61, wherein a majority of said plurality of magneto-optic nanoparticles has a major dimension of less than about 50 nm.
- 73. The optical device according to claim 61, wherein at least one of the plurality of magneto-optic nanoparticles comprises at least one material having a Verdet coefficient equal to or greater than 0.2 degree/mT·μm.
- 74. A thin-film magneto-optic article comprising at least one composite material, comprising:
a host matrix, and a plurality of magneto-optic nanoparticles within the host matrix.
- 75. The thin-film magneto-optic article according to claim 74, wherein at least one of the plurality of magneto-optic nanoparticles comprises at least one material having a Faraday effect.
- 76. The thin-film magneto-optic article according to claim 74, wherein at least one of the plurality of magneto-optic nanoparticles comprises a halogenated outer coating layer.
- 77. The thin-film magneto-optic article according to claim 74, wherein the host matrix comprises at least one material chosen from halogenated elastomers, perhalogenated elastomers, halogenated plastics, and perhalogenated plastics.
- 78. The thin-film magneto-optic article according to claim 77, wherein the host matrix comprises at least one material chosen from hydrogen-containing perfluoroelastomers, hydrogen-containing fluoroplastics, perfluorothermoplastics, blend of at least two different fluoropolymer materials, poly[2,2-bistrifluoromethyl-4,5-difluoro-1,3-dioxole-co-tetrafluoroethylene], poly[2,2-bisperfluoroalkyl-4,5-difluoro-1,3-dioxole-co-tetrafluoroethylene], poly[2,3-(perfluoroalkenyl)perfluorotetrahydrofuran, poly[2,2,4-trifluoro-5-trifluoromethoxy-1,3-dioxole-co-tetrafluoroethylene], poly(pentafluorostyrene), fluorinated polyimides, fluorinated polymethylmethacrylate, polyfluoroacrylates, polyfluorostyrene, fluorinated polycarbonates, perfluoro-polycyclic polymers, fluorinated cyclic olefin polymers, and fluorinated copolymers of cyclic olefins.
- 79. The thin-film magneto-optic article according to claim 74, wherein at least one of said plurality of magneto-optic nanoparticles comprises at least one polymer.
- 80. The thin-film magneto-optic article according to claim 76, wherein the halogenated outer coating layer comprises at least one halogen chosen from fluorine, chlorine, and bromine.
- 81. The thin-film magneto-optic article according to claim 76, wherein the halogenated outer coating layer comprises at least one material chosen from halogenated polyphosphates, halogenated phosphates, halogenated phosphinates, halogenated dithiophosphinates, halogenated pyrophosphates, halogenated alkyl titanates, halogenated alkyl zirconates, halogenated silanes, halogenated alcohols, halogenated amines, halogenated carboxylates, halogenated amides, halogenated sulfates, halogenated esters, halogenated acid chloride, halogenated acetylacetonate, halogenated thiols, and halogenated alkylcyanide.
- 82. The thin-film magneto-optic article according to claim 76, wherein at least one of said plurality of magneto-optic nanoparticles further comprises at least one inner coating disposed beneath the halogenated outer layer coating layer, wherein the at least one inner coating comprises a passivation layer.
- 83. The thin-film magneto-optic article according to claim 74, wherein a majority of said plurality of magneto-optic nanoparticles has a major dimension of less than about 50 nm.
- 84. The thin-film magneto-optic article according to claim 74, wherein at least one of the plurality of magneto-optic nanoparticles comprises at least one material having a Verdet coefficient equal to or greater than 0.2 degree/mT·μm.
- 85. A process of forming a magneto-optic composite material, comprising:
coating a majority of a plurality of magneto-optic nanoparticles with a halogenated outer layer; and dispersing the plurality of coated magneto-optic nanoparticles into a host matrix material.
- 86. The process according to claim 85, wherein the host matrix material comprises at least one polymer.
- 87. The process according to claim 86, wherein the host matrix material comprises at least one halogenated polymer.
- 88. The process according to claim 85, further comprising forming at least one passivation layer on a majority of the magneto-topic nanoparticles prior to coating each of the plurality of nanoparticles with a halogenated outer layer.
- 89. The process according to claim 85, wherein coating a majority of the magneto-optic nanoparticles further comprises:
forming the plurality of magneto-optic nanoparticles in the presence of a halogen-containing coating material, and forming the halogenated outer layer on a majority of the magneto-optic nanoparticles in situ.
- 90. The process according to claim 85, wherein coating a majority of the magneto-optic nanoparticles further comprises dispersing the magneto-optic nanoparticles into a solution comprising a halogen-containing coating material.
- 91. The process according to claim 85, wherein coating the magneto-optic nanoparticles further comprises;
placing the magneto-optic nanoparticles into a solvent comprising materials for forming the halogenated outer layer; and performing a chemical replacement reaction to substitute the halogenated outer layer for a preexisting coating on a majority of the plurality of magneto-optic nanoparticles.
- 92. The process according to claim 85, wherein the dispersing comprises:
co-dissolving the magneto-optic nanoparticles and the host matrix material in a solvent to form a solution; spin coating the solution onto a substrate; and evaporating the solvent from the solution.
- 93. The process according to claim 85, wherein the host matrix material is a monomer host matrix.
- 94. The process according to claim 93, further comprising polymerizing the monomer after dispersing the magneto-optic nanoparticles in the host matrix material.
- 95. A composite material comprising:
a halogenated polymer host matrix;- and a plurality of magneto-optic nanoparticles within the halogenated polymer host matrix.
- 96. An optical component comprising:
a host matrix; and a plurality of magneto-optic nanoparticles within the host matrix.
- 97. The optical component according to claim 96, wherein the optical component is an integrated optical component.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of priority under 35 U.S.C. § 119(e) to U.S. Provisional Application Nos. 60/364,043 and 60/364,132 filed Mar. 15, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60364043 |
Mar 2002 |
US |
|
60364132 |
Mar 2002 |
US |