Claims
- 1. A solid catalyst comprising:
a microporous framework defined by nanocages; and an inorganic compound in at least one of the nanocages, wherein said inorganic compound is a product formed by a reaction of a second inorganic molecule that has a kinetic diameter smaller than the kinetic diameter of the inorganic compound.
- 2. The solid catalyst of claim 1, wherein the kinetic diameter of the second inorganic molecule is less than the largest linear dimension of windows for accessing the nanocages but the kinetic diameter of the inorganic compound is greater than the largest linear dimension of said windows.
- 3. The solid catalyst of claim 2, wherein the solid catalyst is a crystalline silicoaluminophosphate molecular sieve.
- 4. The solid catalyst of claim 3, wherein the crystalline silicoaluminophosphate molecular sieve is SAPO-18, SAPO-34, or a mixture thereof.
- 5. The solid catalyst of claim 4, wherein the second inorganic molecule is selected from the group consisting of PH3, SiH4, Si2H6, and B2H6.
- 6. The solid catalyst of claim 4, wherein the inorganic compound is selected from the group consisting of phosphoric acid, boric acid, silica, a product of the hydrolysis of PH3, a product of the hydrolysis of SiH4, a product of the hydrolysis of Si2H6, a product of the hydrolysis of B2H6, a product of the oxidation of PH3, a product of the oxidation of SiH4, a product of the oxidation of Si2H6 and a product of the oxidation of B2H6.
- 7. A solid catalyst comprising:
a microporous framework defined by nanocages; and an inorganic compound in at least one of the nanocages, wherein said inorganic compound is a product formed by a reaction of a second inorganic molecule that has a kinetic diameter smaller than the kinetic diameter of the inorganic compound and wherein said at least one of the nanocages has been modified by reaction with the inorganic compound.
- 8. The solid catalyst of claim 7, wherein the kinetic diameter of the second inorganic molecule is less than the largest linear dimension of windows for accessing the nanocages but the kinetic diameter of the inorganic compound is greater than the largest linear dimension of said windows.
- 9. The solid catalyst of claim 8, wherein the solid catalyst is a crystalline silicoaluminophosphate molecular sieve.
- 10. The solid catalyst of claim 9, wherein the crystalline silicoaluminophosphate molecular sieve is SAPO-18, SAPO-34, or a mixture thereof.
- 11. The solid catalyst of claim 10, wherein the second inorganic molecule is selected from the group consisting of PH3, SiH4, Si2H6, and B2H6.
- 12. The solid catalyst of claim 10, wherein the inorganic compound is selected from the group consisting of phosphoric acid, boric acid, silica, a product of the hydrolysis of PH3, a product of the hydrolysis of SiH4, a product of the hydrolysis of Si2H6, a product of the hydrolysis of B2H6, a product of the oxidation of PH3, a product of the oxidation of SiH4, a product of the oxidation of Si2H6 and a product of the oxidation of B2H6.
- 13. A method for converting an organic starting material including at least one oxygenate to olefins, the method comprising:
contacting a feed comprising said organic starting material including at least one oxygenate with the catalyst of claim 3, 4, 5, 6, 9, 10, 11 or 12.
- 14. The method of claim 13, wherein said organic starting material comprises methanol.
RELATED APPLICATION DATA
[0001] This application claims priority to U.S. Provisional Application serial No. 60/285,463, filed Apr. 20, 2001, and to U.S. Provisional Application serial No. 60/311,324, filed on Aug. 10, 2001, the disclosures of which are incorporated by reference herein.
RIGHTS OF FEDERAL GOVERNMENT
[0002] This work was supported by Department of Energy grant no. DE-FG03-93ER14354 and National Science Foundation grant no. CHE-9996109. The Federal Government may have certain rights in this invention.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60285463 |
Apr 2001 |
US |
|
60311324 |
Aug 2001 |
US |