Claims
- 1. A carbon nanotube product, comprising:
a metallic catalytic particle comprising:
Co and Mo in a ratio of one part Co to at least two or more parts of Mo, and a support material, and wherein the Co, Mo and support material are combined to have a particulate form; and a solid carbon product deposited on the metallic catalytic particle, at least 80% of the solid carbon product comprising single-walled carbon nanotubes:
- 2. The carbon nanotube product of claim 1 wherein the support material of the metallic catalytic particle is selected from the group consisting of silica, MCM-41, alumina, MgO, ZrO2, aluminum-stabilized magnesium oxide, and molecular sieve zeolites.
- 3. The carbon nanotube product of claim 1 wherein the metallic catalytic particle comprises from about 1% to about 20% by weight of Co and Mo.
- 4. The carbon nanotube product of claim 1 wherein at least 88% of the solid carbon product is single-walled carbon nanotubes.
- 5. The carbon nanotube product of claim 11wherein at least 94% of the solid carbon product is single-walled carbon nanotubes.
- 6. A carbon nanotube product, comprising:
a metallic catalytic particle comprising:
Co and Mo in a ratio of one part Co to at least two or more parts of Mo, and a silica support material, wherein the Co, Mo and silica support material are combined to have a particulate form; and a solid carbon product deposited on the metallic catalytic particle, at least 80% of the solid carbon product comprising single-walled carbon nanotubes.
- 7. The carbon nanotube product of claim 6 wherein the metallic catalytic particle comprises from about 1% to about 20% by weight of Co and Mo.
- 8. The carbon nanotube product of claim 6 wherein at least 88% of the solid carbon product is single-walled carbon nanotubes.
- 9. The carbon nanotube product of claim 6 wherein at least 94% of the solid carbon product is single-walled carbon nanotubes.
- 10. A carbon nanotube product, comprising:
a metallic catalytic particle, comprising:
at least one of Ru, Rh, Pd, Ir, Pt, at least one Group VIP metal, and a support material, combined to have a particulate form; and a solid carbon product deposited on the metallic catalytic particle, at least 80% of the solid carbon product comprising single-walled carbon nanotubes.
- 11. The carbon nanotube product of claim 10 wherein the at least one Group VIb metal of the metallic catalytic particle is selected from the group consisting of Cr, Mo and W.
- 12. The carbon nanotube product of claim 10 wherein the support material of the metallic catalytic particle is selected from the group consisting of silica, MCM-41, alumina, MgO, ZrO2, aluminum-stabilized magnesium oxide, and molecular sieve zeolites.
- 13. The carbon nanotube product of claim 10 wherein at least 88% of the solid carbon product is single-walled carbon nanotubes.
- 14. The carbon nanotube product of claim 10 wherein at least 94% of the solid carbon product is single-walled carbon nanotubes.
- 15. A carbon nanotube product produced by the method comprising:
contacting, in a reactor cell, metallic catalytic particles comprising
Co and Mo in a ratio of one part of Co to at least two or more parts of Mo with a carbon-containing gas at a temperature sufficient to selectively produce single-walled carbon nanotubes as at least about 80% of a solid carbon product disposed on the metallic catalytic particles, the metallic catalytic particles and solid carbon product forming the carbon nanotube product.
- 16. The carbon nanotube product of claim 15 wherein the metallic catalytic particles further comprise a Group VIII metal selected from the group consisting of Ni, Ru, Rh, Pd, Ir, Pt, and mixtures thereof.
- 17. The carbon nanotube product of claim 15 wherein the metallic catalytic particles further comprise a Group VIb metal selected from the group consisting of Cr, W, and mixtures thereof.
- 18. The carbon nanotube product of claim 15 wherein the metallic catalytic particles further comprise a Group VIII metal selected from the group consisting of Ni, Ru, Rh, Pd, Ir, and Pt, and mixtures thereof, and a Group VIb metal selected from the group consisting of Cr, and W, and mixtures thereof.
- 19. The carbon nanotube product of claim 15 wherein the metallic catalytic particles further comprise a support upon which the Co and Mo are deposited.
- 20. The carbon nanotube product of claim 19 wherein the support is selected from the group consisting of silica, MCM-41, alumina, MgO, ZrO2, aluminum-stabilized magnesium oxide, and molecular sieve zeolites.
- 21. The carbon nanotube product of claim 15 wherein the metallic catalytic particles comprise from about 1% to about 20% by weight of Co and Mo.
- 22. The carbon nanotube product of claim 15 wherein the carbon-containing gas is selected from the group consisting of saturated hydrocarbons, aliphatic hydrocarbons, oxygenated hydrocarbons, aromatic hydrocarbons, carbon monoxide, and mixtures thereof.
- 23. The carbon nanotube product of claim 15 wherein the carbon-containing gas further comprises a diluent gas.
- 24. The carbon nanotube product of claim 15 wherein the temperature is in the range of from about 650° C. to about 850° C.
- 25. The carbon nanotube product of claim 15 wherein the metallic catalytic particles are substantially continuously fed into a stream of the carbon-containing gas.
- 26. The carbon nanotube product of claim 15 wherein the carbon-containing gas is fed into the reactor cell having the metallic catalytic particles disposed therein.
- 27. The carbon nanotube product of claim 15 wherein the temperature is in a range of from about 700° C. to about 850° C.
- 28. The carbon nanotube product of claim 15 wherein the temperature is in a range of from about 500° C. to about 1200° C.
- 29. A carbon nanotube product produced by the method comprising:
contacting, in a reactor cell, metallic catalytic particles comprising
Co and Mo in a ratio of one part of Co to at least two or more parts of Mo with a carbon-containing gas at a temperature sufficient to selectively produce single-walled carbon nanotubes as at least about 94% of a solid carbon product produced disposed on the metallic catalytic particles, the metallic catalytic particles and solid carbon product forming the carbon nanotube product.
- 30. The carbon nanotube product of claim 29 wherein the metallic catalytic particles further comprise a support selected from the group consisting of silica, MCM-41, alumina, MgO, aluminum-stabilized magnesium oxide, ZrO2 and molecular sieve zeolites.
- 31. The carbon nanotube product of claim 29 wherein the carbon-containing gas is selected from the group consisting of saturated hydrocarbons, aliphatic hydrocarbons, oxygenated hydrocarbons, aromatic hydrocarbons, carbon monoxide, and mixtures thereof.
- 32. The carbon nanotube product of claim 29 wherein the temperature is in the range of from about 700° C. to about 850° C.
- 33. The carbon nanotube product of claim 29 wherein the temperature is in a range of from about 500° C. to about 1200° C.
- 34. The carbon nanotube product of claim 29 wherein the metallic catalytic particles are substantially continuously fed into a stream of the carbon-containing gas.
- 35. The carbon nanotube product of claim 29 wherein the carbon-containing gas is fed into the reactor cell having the metallic catalytic particles disposed therein.
- 36. A carbon nanotube product produced by the method comprising:
contacting, in a reactor cell, metallic catalytic particles comprising
a support and Co and Mo in a ratio of one part of Co to at least two or more parts of Mo with a carbon-containing gas at a temperature sufficient to selectively produce single-walled carbon nanotubes in a solid carbon product disposed on the metallic catalytic particles, the metallic catalytic particles and solid carbon product forming the carbon nanotube product.
- 37. The carbon nanotube product of claim 36 wherein the support is selected from the group consisting of silica, MCM-41, alumina, MgO, aluminum-stabilized magnesium oxide, ZrO2 and molecular sieve zeolites.
- 38. The carbon nanotube product of claim 36 wherein the carbon-containing gas is selected from the group consisting of saturated hydrocarbons, aliphatic hydrocarbons, oxygenated hydrocarbons, aromatic hydrocarbons, carbon monoxide, and mixtures thereof.
- 39. The carbon nanotube product of claim 36 wherein the metallic catalytic particles are substantially continuously fed into a stream of the carbon-containing gas.
- 40. The carbon nanotube product of claim 36 wherein the carbon-containing gas is fed into the reactor cell having the metallic catalytic particles disposed therein.
- 41. A carbon nanotube product produced by the method comprising:
contacting, in a reactor cell, metallic catalytic particles comprising
at least one Group VIII metal, excluding iron, and at least one Group VIb metal, with a carbon-containing gas at a temperature sufficient to catalytically produce a solid carbon product comprising carbon nanotubes, wherein the carbon nanotubes are primarily single-walled carbon nanotubes and wherein the solid carbon product is disposed on the metallic catalytic particles, the metallic catalytic particles and solid carbon product forming the carbon nanotube product.
- 42. The carbon nanotube product of claim 41 wherein the at least one Group VIII metal is selected from the group consisting of Co, Ni, Ru, Rh, Pd, Ir, and Pt, and mixtures thereof.
- 43. The carbon nanotube product of claim 41 wherein the at least one Group VIb metal is selected from the group consisting of Cr, Mo, and W, and mixtures thereof.
- 44. The carbon nanotube product of claim 41 wherein the metallic catalytic particles further comprise a support upon which the Group VIII metal and Group VIb metal are deposited.
- 45. The carbon nanotube product of claim 44 wherein the support is selected from the group consisting of silica, MCM-41, alumina, MgO, aluminum-stabilized magnesium oxide, ZrO2 and molecular sieve zeolites.
- 46. The carbon nanotube product of claim 41 wherein the carbon-containing gas is selected from the group consisting of saturated hydrocarbons, aliphatic hydrocarbons, oxygenated hydrocarbons, aromatic hydrocarbons, carbon monoxide, and mixtures thereof.
- 47. The carbon nanotube product of claim 41 wherein the temperature is in the range of from about 650° C. to about 850° C.
- 48. The carbon nanotube product of claim 41 wherein the temperature is in a range of from about 500° C. to about 1200° C.
- 49. The carbon nanotube product of claim 41 wherein single-walled carbon nanotubes comprise at least about 60% of the carbon nanotubes in the solid carbon product.
- 50. The carbon nanotube product of claim 41 wherein single-walled carbon nanotubes comprise at least about 80% of the carbon nanotubes in the solid carbon product.
- 51. The carbon nanotube product of claim 41 wherein the metallic catalytic particles are substantially continuously fed into a stream of the carbon-containing gas.
- 52. The carbon nanotube product of claim 41 wherein the carbon, containing gas is fed into the reactor cell having the metallic catalytic particles disposed therein.
- 53. A carbon nanotube product produced by the method, comprising:
contacting, in a reactor cell, metallic catalytic particles comprising
at least one Group VIII metal, and at least one Group VIb metal, with a carbon-containing gas at a temperature sufficient to catalytically produce a solid carbon product comprising carbon nanotubes, wherein the carbon nanotubes of the solid carbon product are primarily single-walled carbon nanotubes and wherein the metallic catalytic particles are substantially continuously fed into a stream of the carbon-containing gas, and wherein the solid carbon product is disposed on the metallic catalytic particles, the metallic catalytic particles and solid carbon product forming the carbon nanotube product.
- 54. The carbon nanotube product of claim 53 wherein the Group VIII metal is selected from the group consisting of Co, Ni, Ru, Rh, Pd, Ir, Pt, and mixtures thereof.
- 55. The carbon nanotube product of claim 53 wherein the Group VIb metal is selected from the group consisting of Cr, Mo, W, and mixtures thereof.
- 56. The carbon nanotube product of claim 53 wherein the metallic catalytic particles further comprise a support selected from the group consisting of silica, MCM-41, alumina, MgO, aluminum-stabilized magnesium oxide, ZrO2 and molecular sieve zeolites.
- 57. The carbon nanotube product of claim 53 wherein the carbon-containing gas is selected from the group consisting of saturated hydrocarbons, aliphatic hydrocarbons, oxygenated hydrocarbons, aromatic hydrocarbons, carbon monoxide, and mixtures thereof.
- 58. The carbon nanotube product of claim 53 wherein the temperature is in the range of from about 700° C. to about 850° C.
- 59. The carbon nanotube product of claim 53 wherein the temperature is in a range of from about 500° C. to about 1200° C.
- 60. The carbon nanotube product of claim 53 wherein single-walled carbon nanotubes comprise at least about 60% of the carbon nanotubes of the solid carbon product.
- 61. The carbon nanotube product of claim 53 wherein single-walled carbon nanotubes comprise at least about 80% of the carbon nanotubes of the solid carbon product.
- 62. A carbon nanotube product produced by the method, comprising:
contacting, in a reactor cell, metallic catalytic particles comprising
Co and Mo with a carbon-containing gas at a temperature sufficient to catalytically produce a solid carbon product comprising carbon nanotubes, wherein the carbon nanotubes are primarily single-walled carbon nanotubes, wherein the metallic catalytic particles are substantially continuously fed into a stream of the carbon-containing gas, and wherein the solid carbon product is disposed on the metallic catalytic particles, the metallic catalytic particles and solid carbon product forming the carbon nanotube product.
- 63. The carbon nanotube product of claim 62 wherein the metallic catalytic particles further comprise a support selected from the group consisting of silica, MCM-41, alumina, MgO, aluminum-stabilized magnesium oxide, ZrO2 and molecular sieve zeolites.
- 64. The carbon nanotube product of claim 62 wherein the carbon-containing gas is selected from the group consisting of saturated hydrocarbons, aliphatic hydrocarbons, oxygenated hydrocarbons, aromatic hydrocarbons, carbon monoxide, and mixtures thereof.
- 65. The carbon nanotube product of claim 62 wherein the temperature is in the range of from about 700° C. to about 850° C.
- 66. The carbon nanotube product of claim 62 wherein the temperature is in a range of from about 500° C. to about 1200° C.
- 67. The carbon nanotube product of claim 62 wherein single-walled carbon nanotubes comprise at least about 60% of the carbon nanotubes of the solid carbon product.
- 68. The carbon nanotube product of claim 62 wherein single-walled carbon nanotubes comprise at least about 80% of the carbon nanotubes of the solid carbon product.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application is a continuation of U.S. Ser. No. 09/998,615, filed Nov. 19, 2001, which is a continuation of U.S. Ser. No. 09/389,553, filed Sep. 3, 1999, now U.S. Pat. No. 6,333,016, which claims the benefit of U.S. Provisional Application Serial No. 60/137,206, filed Jun. 2, 1999, each of which are hereby expressly incorporated by reference herein in their entireties.
Provisional Applications (1)
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Number |
Date |
Country |
|
60137206 |
Jun 1999 |
US |
Continuations (2)
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Number |
Date |
Country |
Parent |
09988553 |
Nov 2001 |
US |
Child |
10423687 |
Apr 2003 |
US |
Parent |
09389553 |
Sep 1999 |
US |
Child |
09988553 |
Nov 2001 |
US |