Claims
- 1. A composition comprising a silicone derivatized macromolecule selected from the group consisting of dendrimers and hyperbranched polymers supported on a particulate support or a separation membrane.
- 2. The composition as claimed in claim 1 wherein said silicone derivatized macromolecule is a silicone derivatized dendrimer prepared from a dendrimer of Generation 1-Generation n.
- 3. The composition as claimed in claim 2 wherein said silicone derivatized dendrimer is prepared from an amidoamine dendrimer, Generation III, having 32 amine functionalities on the exterior.
- 4. The composition as claimed in claim 3 wherein 75% of the 32 amine sites are silicone and 25% are NH—(R═H).
- 5. The composition as claimed in claim 3 wherein 4 of the 32 amine sites are silicone and the rest are CH2CH2C(═O)—(C2)3—OH.
- 6. The composition as claimed in claim 3 wherein 4 of the 32 amine sites are silicone and the rest are R═CH2CH2 C(═O)—OBu.
- 7. The composition as claimed in claim 1, wherein said particulate support is selected from the group consisting of silica and silica gel.
- 8. A method of creating a silicone derivatized macromolecule supported on a particulate support or a separation membrane comprising:
providing a multi-functional macromolecule with at least one functional group; adding to said macromolecule an organo silicon compound; to form a silicone derivatized macromolecule, and bonding said silicone derivatized macromolecule to a particulate support or a separation membrane.
- 9. A method as claimed in claim 8 wherein said functional group is NH2.
- 10. A method as claimed in claim 9 wherein said organosilicon compound is
- 11. A composition comprising silicone derivatized macromolecules selected from the group consisting of dendrimers and hyperbranched polymers combined with chiral ligands.
- 12. The composition as claimed in claim 11, wherein said chiral ligands are selected from the group consisting of any chiral system with a suitable functionalized grouping for incorporation into said chemistry.
- 13. The composition as claimed in claim 11 wherein said silicone derivatized macromolecule is a silicon derivatized dendrimer prepared from a dendrimer of Generation 1-Generation n.
- 14. The composition as claimed in claim 13 wherein said silicone derivatized dendrimer is prepared from an amidoamine dendrimer, Generation III, having 32 amine functionalities on the exterior.
- 15. The composition as claimed in claim 13 wherein 75% of the 32 amine sites are silicone and 25% are NH—(R═H).
- 16. The composition as claimed in claim 13 wherein 4 of the 32 amine sites are silicone and the rest are CH2CH2C(═O)—(—CH2)3—OH.
- 17. The composition as claimed in claim 13 wherein 4 of the 32 amine sites are silicone and the rest are R═CH2CH2 C(═O)—Bu.
- 18. The composition as claimed in claim 11, wherein said silicone derivatized macromolecule combined with chiral ligands is bonded to a particulate support or separation membrane.
- 19. A method for creating silicone derivatized macromolecules combined with chiral ligands comprising:
providing a multi-functional macromolecule with at least one functional group; adding to said macromolecule an organanosilicon compound to form a silicone derivatized macromolecule having a non-alkylated structure, and adding to said silicone derivatized macromolecule a chiral ligand to form an alkylated structure.
- 20. A method as claimed in claim 19 wherein said functional group is NH2.
- 21. A method as claimed in claim 20 wherein said organosilicon compound
- 22. A method as claimed in claim 19 further including the step of bonding said alkylated structure to a particulate support or separation membrane.
- 23. A composition comprising:
a silicone derivatized macromolecule that is designed as a chelating agent, supported on a particulate support or separation membrane with chelated metals.
- 24. The composition as claimed in claim 23, wherein said chelated metal is formed from metal compounds selected from the group consisting of CuSO4H2PtCl6.
- 25. The composition as claimed in claim 23 wherein said silicone derivatized macromolecule is a silicone derivatized dendrimer prepared from a dendrimer of Generation 1-Generation n.
- 26. The composition as claimed in claim 23 wherein said silicone derivatized dendrimer is prepared from an amidoamine dendrimer, Generation III, having 32 amine functionalities on the exterior.
- 27. The composition as claimed in claim 26 wherein 75% of the 32 amine sites are silicone and 25% are NH—(R═H).
- 28. The composition as claimed in claim 26 wherein 4 of the 32 amine sites are silicone and the rest are CH2CH2C(═O)—(CH2)3—OH.
- 29. The composition as claimed in claim 26 wherein 4 of the 32 amine sites are silicone and the rest are R═CH2CH2C(═O)—OBu.
- 30. The composition as claimed in claim 23, wherein said particulate support is selected from the group consisting of silica and silica gel.
- 31. A method of creating a silicone derivatized macromolecule supported on a particulate support or separation membrane with chelated metals comprising:
providing a multi-functional macromolecule with at least one functional group, adding to said macromolecule an organosilicon compound to form a silicone derivatized dendrimer, bonding said silicone derivatized macromolecule to a particulate support or separation membrane to form a silicone derivatized dendrimer supported on a particulate support or separation membrane, treating said silicone derivatized dendrimer supported on a particulate support or separation membrane with a metal compound.
- 32. A method as claimed in claim 31 wherein said metal compound is selected from the group consisting of Cu, Zn, Pt, Pd, Ag, Au and Fe compounds.
- 33. A method as claimed in claim 31 wherein said functional group is NH2.
- 34. A method as claimed in claim 33 wherein said organosilicon compound is
- 35. A method of using the composition of claim as a chelating agent comprising combining said composition with a metal compound.
- 36. A method of using the composition of claim 1 in HPLC comprising packing a chromatographic column with a silicone derivatized macromolecule on a particulate support and passing a mixture or solution therethrough.
- 37. A method of using the composition of claim 1 in a purification process comprising passing a liquid to be purified through a bed of particles of silicone derivatized macromolecule on a particulate support or through a silicone derivatized macromolecule on a separation membrane.
- 38. A method of using the composition of claim 1 in personal care formulations comprising combining particles of a silicone derivatized macromolecule on a particulate support with other personal care formulation ingredients.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. provisional applications Serial No. 60/221,863, filed Jul. 28, 2000 and Serial No. 60/254,748, filed Dec. 11, 2000.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60221863 |
Jul 2000 |
US |
|
60254748 |
Dec 2000 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09916128 |
Jul 2001 |
US |
Child |
10368915 |
Feb 2003 |
US |