Claims
- 1. A catalytically active composition of matter of the following approximate general formula:
- 2. A catalyst according to claim 1, in which the exfoliated transition metal dichalcogenide is comprised of group IVB, VB, VIB elements.
- 3. A catalyst according to claim 1, in which the exfoliated transition metal dichalcogenide is comprised of group VIB elements molybdenum or tungsten.
- 4. A catalyst according to claim 1, in which the support material is comprised of naturally occurring minerals.
- 5. A catalyst according to claim 4, in which the support material is comprised of naturally occurring clay.
- 6. A catalyst according to claim 5, in which the clay is a bohemite type clay.
- 7. A catalyst according to claim 1, in which the support material is comprised of carbon.
- 8. A catalyst according to claim 1, in which the support material is synthesized.
- 9. A catalyst according to claim 8, in which the support material is comprised of synthetic zeolite.
- 10. A process for the preparation of a catalytically active composite according to claim 1, the process comprising the following steps:
a) coating a selected catalyst support material (S) with active catalytic materials in the form of exfoliated sheets of transition metal dichalcogenides, preferably exfoliated sheets of molybdenum and/or tungsten metal sulfides (M1), with or without inclusions of promoter materials (P1), b) drying the coating in a manner that forms an adhesive bond between the coating and the surface of the support, c) filling the pores of the support with additional materials (M2) and optionally materials (P2).
- 11. A process according to claim 10 where the steps are conducted in the following sequence:
step a) followed by step b) followed by step c).
- 12. The process of claim 1 where the sequence of said steps a) and b) are repeated prior to said step c)
- 13. The process of claim 11 where said step c) is repeated.
- 14. A process according to claim 10, where said materials (M1) and (P1) of step a) are applied sequentially with said step b) being inserted between each application.
- 15. A process according to claim 10, where the materials (M2) and (P2) of step c) are applied sequentially and a heat treatment is inserted between each application.
- 16. A process according to claim 10, where the support material (S) of step a) is an uncoated powder.
- 17. A process according to claim 10, where the support material (S) of step a) is precipitated from a solution as part of step a).
- 18. A process according to claim 10, where the support material (S) of step a) is formed from a precursor included between sheets of material (M1) as part of step a).
- 19. A method for forming an exfoliated transition metal coated support material said method comprising the following steps:
c) including a support precursor between sheets of the exfoliated material d) heating the combined materials in a manner, and in an atmosphere, that converts the precursor to the desired support material without chemically altering the exfoliated transition metal dichalcogenide.
- 20. A method according to claim 19, where the said precursor is comprised of carbon.
- 21. A method according to claim 19, where oxygen is substantially eliminated from the atmosphere.
RELATED REFERENCES
[0001] Reference is hereby made to commonly assigned provisional U.S. Patent application METHODS FOR PRODUCING AN IMPROVED SUPPORTED CATALYST, Ser. No. 60/345055, filed Jan. 4, 2002, the benefit of which is hereby claimed and the disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60345055 |
Jan 2002 |
US |