Claims
- 1. A catalyst composition, comprising:
Co and Mo disposed on a support material wherein the majority of the Mo occurs as dispersed Mo oxide clusters and the majority of the Co occurs in a CoMoO4-like phase with the Co therein primarily in an octahedral configuration, and wherein the CoMoO4-like phase occurs substantially disposed upon the dispersed Mo oxide clusters.
- 2. The catalyst composition of claim 1 wherein the support material is silica.
- 3. The catalyst composition of claim 1 wherein the molar ratio of Co:Mo is less than 3:4.
- 4. A method of preferentially forming single walled carbon nanotubes having a particular diameter, comprising:
providing a catalyst comprising:
Co and Mo disposed on a support material wherein the majority of the Mo occurs as dispersed Mo oxide clusters and the majority of the Co occurs in a CoMoO4-like phase with the Co therein primarily in an octahedral configuration, and wherein the CoMoO4-like phase occurs substantially disposed upon the dispersed Mo oxide clusters; and exposing the catalyst in a reactor to a carbon-containing gas at a temperature between about 700° C. and about 800° C. and maintaining a CO2 concentration in the reactor below a threshold CO2 concentration above which the conversion of ionic Co to metallic Co is inhibited, wherein the majority of the single walled carbon nanotubes thus formed have a diameter between about 0.7 nm to about 0.9 nm.
- 5. The method of claim 4 wherein in the step of providing a catalyst, the support material is silica.
- 6. The method of claim 4 wherein in the step of exposing the catalyst to a carbon-containing gas, the reactor has a pressure therein between about 1 atm and 7 atm.
- 7. The method of claim 4 wherein in the step of exposing the catalyst to a carbon-containing gas, the threshold CO2 concentration in the reactor is 1%.
- 8. The method of claim 4 wherein in the step of exposing the catalyst to a carbon-containing gas, the carbon-containing gas is CO.
- 9. The method of claim 4 comprising the additional step of reducing the catalyst by exposing the catalyst to a heated hydrogen gas.
- 10. A method of preferentially forming single walled carbon nanotubes having a particular diameter, comprising:
providing a catalyst comprising:
Co and Mo disposed on a support material wherein the majority of the Mo occurs as dispersed Mo oxide clusters and the majority of the Co occurs in a CoMoO4-like phase with the Co therein primarily in an octahedral configuration, and wherein the CoMoO4-like phase occurs substantially disposed upon the dispersed Mo oxide clusters; and exposing the catalyst in a reactor to a carbon-containing gas at a temperature between about 800° C. and about 900° C. and maintaining a CO2 concentration in the reactor below a threshold CO2 concentration above which the conversion of ionic Co to metallic Co is inhibited, wherein the majority of the single walled carbon nanotubes thus formed have a diameter between about 0.9 nm to about 1.2 nm.
- 11. The method of claim 10 wherein in the step of providing a catalyst, the support material is silica.
- 12. The method of claim 10 wherein in the step of exposing the catalyst to a carbon-containing gas, the reactor has a pressure therein between about 1 atm and 7 atm.
- 13. The method of claim 10 wherein in the step of exposing the catalyst to a carbon-containing gas, the threshold CO2 concentration in the reactor is 1%.
- 14. The method of claim 10 wherein in the step of exposing the catalyst to a carbon-containing gas, the carbon containing gas is CO.
- 15. The method of claim 10 comprising the additional step of reducing the catalyst by exposing the catalyst to a heated hydrogen gas.
- 16. A method of preferentially forming single walled carbon nanotubes having a particular diameter, comprising:
providing a catalyst comprising:
Co and Mo disposed on a support material wherein the majority of the Mo occurs as dispersed Mo oxide clusters and the majority of the Co occurs in a CoMoO4-like phase with the Co therein primarily in an octahedral configuration, and wherein the CoMoO4-like phase occurs substantially disposed upon the dispersed Mo oxide clusters; and exposing the catalyst in a reactor to a carbon-containing gas at a temperature between about 900° C. and about 1,000° C. and maintaining a CO2 concentration in the reactor below a threshold CO2 concentration above which the conversion of ionic Co to metallic Co is inhibited, wherein the majority of the single walled carbon nanotubes thus formed have a diameter between about 1.3 nm to about 1.7 nm.
- 17. The method of claim 16 wherein in the step of providing a catalyst, the support material is silica.
- 18. The method of claim 16 wherein in the step of exposing the catalyst to a carbon-containing gas, the reactor has a pressure therein between about 1 atm and 7 atm.
- 19. The method of claim 16 wherein in the step of exposing the catalyst to a carbon-containing gas, the threshold CO2 concentration in the reactor is 1%.
- 20. The method of claim 16 wherein in the step of exposing the catalyst to a carbon-containing gas, the carbon-containing gas is CO.
- 21. The method of claim 16 comprising the additional step of reducing the catalyst by exposing the catalyst to a heated hydrogen gas.
RELATED REFERENCES
[0001] The present application claims the benefit of the filing date of U.S. Provisional Application 60/307,208 filed on Jul. 23, 2001, the specification and drawings of which are expressly incorporated by reference herein in their entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60307208 |
Jul 2001 |
US |